1 4593 162 NATURAL GENETIC VARIATION IN A MULTIGENERATIONAL PHENOTYPE IN C. ELEGANS. ALTHOUGH HEREDITY MOSTLY RELIES ON THE TRANSMISSION OF DNA SEQUENCE, ADDITIONAL MOLECULAR AND CELLULAR FEATURES ARE HERITABLE ACROSS SEVERAL GENERATIONS. IN THE NEMATODE CAENORHABDITIS ELEGANS, INSIGHTS INTO SUCH UNCONVENTIONAL INHERITANCE RESULT FROM TWO LINES OF WORK. FIRST, THE MORTAL GERMLINE (MRT) PHENOTYPE WAS DEFINED AS A MULTIGENERATIONAL PHENOTYPE WHEREBY A SELFING LINEAGE BECOMES STERILE AFTER SEVERAL GENERATIONS, IMPLYING MULTIGENERATIONAL MEMORY [1, 2]. SECOND, CERTAIN RNAI EFFECTS ARE HERITABLE OVER SEVERAL GENERATIONS IN THE ABSENCE OF THE INITIAL TRIGGER [3-5]. BOTH LINES OF WORK CONVERGED WHEN THE SUBSET OF MRT MUTANTS THAT ARE HEAT SENSITIVE WERE FOUND TO CLOSELY CORRESPOND TO MUTANTS DEFECTIVE IN THE RNAI-INHERITANCE MACHINERY, INCLUDING HISTONE MODIFIERS [6-9]. HERE, WE REPORT THE SURPRISING FINDING THAT SEVERAL C. ELEGANS WILD ISOLATES DISPLAY A HEAT-SENSITIVE MORTAL GERMLINE PHENOTYPE IN LABORATORY CONDITIONS: UPON CHRONIC EXPOSURE TO HIGHER TEMPERATURES, SUCH AS 25 DEGREES C, LINES REPRODUCIBLY BECOME STERILE AFTER SEVERAL GENERATIONS. THIS PHENOMENON IS REVERSIBLE, AS IT CAN BE SUPPRESSED BY TEMPERATURE ALTERNATIONS AT EACH GENERATION, SUGGESTING A NON-GENETIC BASIS FOR THE STERILITY. WE TESTED WHETHER NATURAL VARIATION IN THE TEMPERATURE-INDUCED MRT PHENOTYPE WAS OF GENETIC NATURE BY BUILDING RECOMBINANT INBRED LINES BETWEEN THE ISOLATES MY10 (MRT) AND JU1395 (NON-MRT). USING BULK SEGREGANT ANALYSIS, WE DETECTED TWO QUANTITATIVE TRAIT LOCI. AFTER FURTHER RECOMBINANT MAPPING AND GENOME EDITING, WE IDENTIFIED THE MAJOR CAUSAL LOCUS AS A POLYMORPHISM IN THE SET-24 GENE, ENCODING A SET- AND SPK-DOMAIN PROTEIN. WE CONCLUDE THAT C. ELEGANS NATURAL POPULATIONS MAY HARBOR NATURAL GENETIC VARIATION IN EPIGENETIC INHERITANCE PHENOMENA. 2018 2 3970 29 LONG-LASTING EPIGENETIC CHANGES IN THE DOPAMINE TRANSPORTER IN ADULT ANIMALS EXPOSED TO AMPHETAMINE DURING EMBRYOGENESIS: INVESTIGATING BEHAVIORAL EFFECTS. THE DOPAMINE TRANSPORTER (DAT) IS AN INTEGRAL MEMBER OF THE DOPAMINERGIC SYSTEM AND IS RESPONSIBLE FOR THE RELEASE AND REUPTAKE OF DOPAMINE FROM THE SYNAPTIC SPACE INTO THE DOPAMINERGIC NEURONS. DAT IS ALSO THE MAJOR TARGET OF AMPHETAMINE (AMPH). THE EFFECTS OF AMPH ON DAT HAVE BEEN INTENSIVELY STUDIED; HOWEVER, THE MECHANISMS UNDERLYING THE LONG-TERM EFFECTS CAUSED BY EMBRYONAL EXPOSURE TO ADDICTIVE DOSES OF AMPH REMAIN LARGELY UNEXPLORED. AS IN MAMMALS, IN THE NEMATODE C. ELEGANS AMPH CAUSES CHANGES IN LOCOMOTION WHICH ARE LARGELY MEDIATED BY THE C. ELEGANS DAT HOMOLOGUE, DAT-1. HERE, WE SHOW THAT CHRONIC EMBRYONIC EXPOSURES TO AMPH ALTER THE EXPRESSION OF DAT-1 IN ADULT C. ELEGANS VIA LONG-LASTING EPIGENETIC MODIFICATIONS. THESE CHANGES ARE CORRELATED WITH AN ENHANCED BEHAVIORAL RESPONSE TO AMPH IN ADULT ANIMALS. IMPORTANTLY, PHARMACOLOGICAL AND GENETIC INTERVENTION DIRECTED AT PREVENTING THE AMPH-INDUCED EPIGENETIC MODIFICATIONS OCCURRING DURING EMBRYOGENESIS INHIBITED THE LONG-LASTING BEHAVIORAL EFFECTS OBSERVED IN ADULT ANIMALS. BECAUSE MANY COMPONENTS OF THE DOPAMINERGIC SYSTEM, AS WELL AS EPIGENETIC MECHANISMS, ARE HIGHLY CONSERVED BETWEEN C. ELEGANS AND MAMMALS, THESE RESULTS COULD BE CRITICAL FOR OUR UNDERSTANDING OF HOW DRUGS OF ABUSE INITIATE PREDISPOSITION TO ADDICTION. 2023 3 711 39 C. ELEGANS SUP-46, AN HNRNPM FAMILY RNA-BINDING PROTEIN THAT PREVENTS PATERNALLY-MEDIATED EPIGENETIC STERILITY. BACKGROUND: IN ADDITION TO DNA, GAMETES CONTRIBUTE EPIGENETIC INFORMATION IN THE FORM OF HISTONES AND NON-CODING RNA. EPIGENETIC PROGRAMS OFTEN RESPOND TO STRESSFUL ENVIRONMENTAL CONDITIONS AND PROVIDE A HERITABLE HISTORY OF ANCESTRAL STRESS THAT ALLOWS FOR ADAPTATION AND PROPAGATION OF THE SPECIES. IN THE NEMATODE C. ELEGANS, DEFECTIVE EPIGENETIC TRANSMISSION OFTEN MANIFESTS AS PROGRESSIVE GERMLINE MORTALITY. WE PREVIOUSLY ISOLATED SUP-46 IN A SCREEN FOR SUPPRESSORS OF THE HEXOSAMINE PATHWAY GENE MUTANT, GNA-2(QA705). IN THIS STUDY, WE EXAMINE THE ROLE OF SUP-46 IN STRESS RESISTANCE AND PROGRESSIVE GERMLINE MORTALITY. RESULTS: WE IDENTIFIED SUP-46 AS AN HNRNPM FAMILY RNA-BINDING PROTEIN, AND UNCOVERED A HIGHLY NOVEL ROLE FOR SUP-46 IN PREVENTING PATERNALLY-MEDIATED PROGRESSIVE GERMLINE MORTALITY FOLLOWING MATING. PROXIMITY BIOTINYLATION PROFILING OF HUMAN HOMOLOGS (HNRNPM, MYEF2) IDENTIFIED PROTEINS OF RIBONUCLEOPROTEIN COMPLEXES PREVIOUSLY SHOWN TO CONTAIN NON-CODING RNA. LIKE HNRNPM AND MYEF2, SUP-46 WAS ASSOCIATED WITH MULTIPLE RNA GRANULES, INCLUDING STRESS GRANULES, AND ALSO FORMED GRANULES ON ACTIVE CHROMATIN. SUP-46 DEPLETION DISRUPTED GERM RNA GRANULES AND CAUSED ECTOPIC SPERM, INCREASED SPERM TRANSCRIPTS, AND CHRONIC HEAT STRESS SENSITIVITY. SUP-46 WAS ALSO REQUIRED FOR RESISTANCE TO ACUTE HEAT STRESS, AND A CONSERVED "MYEF2" MOTIF WAS IDENTIFIED THAT WAS NEEDED FOR STRESS RESISTANCE. CONCLUSIONS: IN MAMMALS, NON-CODING RNA FROM THE SPERM OF STRESSED MALES HAS BEEN SHOWN TO RECAPITULATE PATERNAL STRESS PHENOTYPES IN THE OFFSPRING. OUR RESULTS SUGGEST THAT HNRNPM FAMILY PROTEINS ENABLE STRESS RESISTANCE AND PATERNALLY-MEDIATED EPIGENETIC TRANSMISSION THAT MAY BE CONSERVED ACROSS SPECIES. 2017 4 2819 23 FILARIAL AND WOLBACHIA GENOMICS. FILARIAL NEMATODE PARASITES, THE CAUSATIVE AGENTS FOR A SPECTRUM OF ACUTE AND CHRONIC DISEASES INCLUDING LYMPHATIC FILARIASIS AND RIVER BLINDNESS, THREATEN THE WELL-BEING AND LIVELIHOOD OF HUNDREDS OF MILLIONS OF PEOPLE IN THE DEVELOPING REGIONS OF THE WORLD. THE 2007 PUBLICATION ON A DRAFT ASSEMBLY OF THE 95-MB GENOME OF THE HUMAN FILARIAL PARASITE BRUGIA MALAYI- REPRESENTING THE FIRST HELMINTH PARASITE GENOME TO BE SEQUENCED - HAS BEEN FOLLOWED IN RAPID SUCCESSION BY PROJECTS THAT HAVE RESULTED IN THE GENOME SEQUENCING OF SIX ADDITIONAL FILARIAL SPECIES, SEVEN NONFILARIAL NEMATODE PARASITES OF ANIMALS AND NEARLY 30 PLANT PARASITIC AND FREE-LIVING SPECIES. PARALLEL TO THE GENOMIC SEQUENCING, TRANSCRIPTOMIC AND PROTEOMIC PROJECTS HAVE FACILITATED GENOME ANNOTATION, EXPANDED OUR UNDERSTANDING OF STAGE-ASSOCIATED GENE EXPRESSION AND PROVIDED A FIRST LOOK AT THE ROLE OF EPIGENETIC REGULATION OF FILARIAL GENOMES THROUGH MICRORNAS. THE EXPANSION IN FILARIAL GENOMICS WILL ALSO PROVIDE A SIGNIFICANT ENRICHMENT IN OUR KNOWLEDGE OF THE DIVERSITY AND VARIABILITY IN THE GENOMES OF THE ENDOSYMBIOTIC BACTERIUM WOLBACHIA LEADING TO A BETTER UNDERSTANDING OF THE GENETIC PRINCIPLES THAT GOVERN FILARIAL-WOLBACHIA MUTUALISM. THE GOAL HERE IS TO PROVIDE AN OVERVIEW OF THE TRENDS AND ADVANCES IN FILARIAL AND WOLBACHIA GENOMICS. 2012 5 6125 24 THE EPIGENETIC MECHANISMS OF AMPHETAMINE. AMPHETAMINE (AMPH) IS A PSYCHOSTIMULANT AND THE MOST PRESCRIBED DRUG TO TREAT ATTENTION DEFICIT HYPERACTIVE DISORDER (ADHD). ALTHOUGH THERAPEUTICALLY USED DOSES ARE GENERALLY WELL TOLERATED, NUMEROUS SIDE EFFECTS ARE STILL KNOWN TO OCCUR, SUCH AS JITTERINESS, LOSS OF APPETITE AND PSYCHOSIS. MOREOVER, AMPH IS LIABLE TO BE ABUSED BY USERS LOOKING FOR INCREASED ALERTNESS, WEIGHT LOSS OR ATHLETIC PERFORMANCE. A GROWING BODY OF EVIDENCE INDICATES THAT DRUGS OF ABUSE, INCLUDING AMPH, CONTROL GENE EXPRESSION THROUGH CHROMATIN MODIFICATIONS. HOWEVER, WHILE NUMEROUS STUDIES HAVE INVESTIGATED THE MOLECULAR MECHANISMS OF AMPH ACTION, ONLY A SMALL NUMBER OF STUDIES HAVE EXPLORED CHANGES IN GENE EXPRESSION CAUSED BY AMPH. THIS REVIEW EXAMINES THE EPIGENETIC CHANGES INDUCED BY CHRONIC AND ACUTE TREATMENTS WITH AMPH AND INCLUDES, WHERE RELEVANT, DATA OBTAINED WITH OTHER PSYCHOSTIMULANTS SUCH AS METHAMPHETAMINE AND COCAINE. 2015 6 1346 42 DETECTION OF TRANSGENERATIONAL SPERMATOGENIC INHERITANCE OF ADULT MALE ACQUIRED CNS GENE EXPRESSION CHARACTERISTICS USING A DROSOPHILA SYSTEMS MODEL. AVAILABLE INSTANCES OF INHERITANCE OF EPIGENETIC TRANSGENERATIONAL PHENOTYPE ARE LIMITED TO ENVIRONMENTAL EXPOSURES DURING EMBRYONIC AND ADULT GONADAL DEVELOPMENT. ADULT EXPOSURES CAN ALSO AFFECT GAMETOGENESIS AND THEREBY POTENTIALLY RESULT IN REPROGRAMMING OF THE GERMLINE. ALTHOUGH EXAMPLES OF EPIGENETIC EFFECTS ON GAMETOGENESIS EXIST, IT IS NOTABLE THAT TRANSGENERATIONAL INHERITANCE OF ENVIRONMENT-INDUCED ADULT PHENOTYPE HAS NOT YET BEEN REPORTED. EPIGENETIC CODES ARE CONSIDERED TO BE CRITICAL IN NEURAL PLASTICITY. A DROSOPHILA SYSTEMS MODEL OF PENTYLENETETRAZOLE (PTZ) INDUCED LONG-TERM BRAIN PLASTICITY HAS RECENTLY BEEN DESCRIBED. IN THIS MODEL, CHRONIC PTZ TREATMENT OF ADULT MALES CAUSES ALTERATIONS IN CNS TRANSCRIPTOME. HERE, WE DESCRIBE OUR SEARCH FOR TRANSGENERATIONAL SPERMATOGENIC INHERITANCE OF PTZ INDUCED GENE EXPRESSION PHENOTYPE ACQUIRED BY ADULT DROSOPHILA MALES. WE GENERATED CNS TRANSCRIPTOMIC PROFILES OF F(1) ADULTS AFTER TREATING F(0) ADULT MALES WITH PTZ AND OF F(2) ADULTS RESULTING FROM A CROSS BETWEEN F(1) MALES AND NORMAL FEMALES. SURPRISINGLY, MICROARRAY CLUSTERING SHOWED F(1) MALE PROFILE AS CLOSEST TO F(1) FEMALE AND F(0) MALE PROFILE CLOSEST TO F(2) MALE. DIFFERENTIALLY EXPRESSED GENES IN F(1) MALES, F(1) FEMALES AND F(2) MALES SHOWED SIGNIFICANT OVERLAP WITH THOSE CAUSED BY PTZ. INTERESTINGLY, MICROARRAY EVIDENCE ALSO LED TO THE IDENTIFICATION OF UPREGULATED RRNA IN F(2) MALES. NEXT, WE GENERATED MICROARRAY EXPRESSION PROFILES OF ADULT TESTIS FROM F(0) AND F(1) MALES. FURTHER SURPRISING, CLUSTERING OF CNS AND TESTIS PROFILES AND MATCHING OF DIFFERENTIALLY EXPRESSED GENES IN THEM PROVIDED EVIDENCE OF A SPERMATOGENIC MECHANISM IN THE TRANSGENERATIONAL EFFECT OBSERVED. TO OUR KNOWLEDGE, WE REPORT FOR THE FIRST TIME DETECTION OF TRANSGENERATIONAL SPERMATOGENIC INHERITANCE OF ADULT ACQUIRED SOMATIC GENE EXPRESSION CHARACTERISTIC. THE DROSOPHILA SYSTEMS MODEL OFFERS AN EXCELLENT OPPORTUNITY TO UNDERSTAND THE EPIGENETIC MECHANISMS UNDERLYING THE PHENOMENON. THE FINDING THAT ADULT ACQUIRED TRANSCRIPTOMIC ALTERATION IN SOMA IS SPERMATOGENICALLY INHERITED ACROSS GENERATIONS HAS POTENTIAL IMPLICATIONS IN HUMAN HEALTH AND EVOLUTION. 2009 7 1921 47 ENVIRONMENTAL EPIGENETIC INHERITANCE THROUGH GAMETES AND IMPLICATIONS FOR HUMAN REPRODUCTION. BACKGROUND: TRADITIONAL STUDIES FOCUSED ON DNA AS THE HERITABLE INFORMATION CARRIER THAT PASSES THE PHENOTYPE FROM PARENTS TO OFFSPRING. HOWEVER, INCREASING EVIDENCE SUGGESTS THAT INFORMATION, THAT IS INDEPENDENT OF THE DNA SEQUENCE, TERMED EPIGENETIC INFORMATION, CAN BE INHERITED BETWEEN GENERATIONS. RECENTLY, IN OUR LAB, WE FOUND THAT PREDIABETES IN FATHERS INCREASES THE SUSCEPTIBILITY TO DIABETES IN OFFSPRING THROUGH GAMETIC CYTOSINE METHYLATION CHANGES. PATERNAL PREDIABETES CHANGED OVERALL METHYLATION PATTERNS IN SPERM, AND A LARGE PORTION OF DIFFERENTIALLY METHYLATED LOCI CAN BE TRANSMITTED TO PANCREATIC ISLETS OF OFFSPRING UP TO THE SECOND GENERATION. IN THIS REVIEW, WE SURVEY THE EXTENSIVE EXAMPLES OF ENVIRONMENTALLY INDUCED EPIGENETIC INHERITANCE IN VARIOUS SPECIES, RANGING FROM CAENORHABDITIS ELEGANS TO HUMANS. WE FOCUS MAINLY ON ELUCIDATING THE MOLECULAR BASIS OF ENVIRONMENTAL EPIGENETIC INHERITANCE THROUGH GAMETES, WHICH IS AN EMERGING THEME AND HAS IMPORTANT IMPLICATIONS FOR EXPLAINING THE PREVALENCE OF OBESITY, TYPE 2 DIABETES AND OTHER CHRONIC NON-GENETIC DISEASES, WHICH IS ALSO IMPORTANT FOR UNDERSTANDING THE INFLUENCE OF ENVIRONMENTAL EXPOSURES ON REPRODUCTIVE AND OVERALL HEALTH IN OFFSPRING. METHODS: FOR THIS REVIEW, WE INCLUDED RELEVANT DATA AND INFORMATION OBTAINED THROUGH A PUBMED DATABASE SEARCH FOR ALL ENGLISH LANGUAGE ARTICLES PUBLISHED UP TO AUGUST 2014 WHICH INCLUDED THE TERM 'ENVIRONMENTAL EPIGENETIC INHERITANCE' AND 'TRANSGENERATIONAL EPIGENETIC INHERITANCE'. WE FOCUSED ON RESEARCH PAPERS USING ANIMAL MODELS INCLUDING DROSOPHILA, C. ELEGANS, MOUSE AND RAT. HUMAN DATA WERE ALSO INCLUDED. RESULTS: EVIDENCE FROM ANIMAL MODELS SUGGESTS THAT ENVIRONMENTAL EPIGENETIC INHERITANCE THROUGH GAMETES EXISTS IN VARIOUS SPECIES. EXTENSIVE MOLECULAR EVIDENCE SUGGESTS THAT EPIGENETIC INFORMATION CARRIERS INCLUDING DNA METHYLATION, NON-CODING RNAS AND CHROMATIN PROTEINS IN GAMETES PLAY IMPORTANT ROLES IN THE TRANSMISSION OF PHENOTYPES FROM PARENTS TO OFFSPRING. CONCLUSIONS: GIVEN THE LARGE NUMBER OF EXPERIMENTAL EVIDENCE FROM VARIOUS ORGANISMS, IT IS CLEAR THAT PARENTAL ENVIRONMENTAL ALTERATIONS CAN AFFECT THE PHENOTYPES OF OFFSPRING THROUGH GAMETIC EPIGENETIC ALTERATIONS. THIS MORE RECENT THINKING BASED ON NEW DATA MAY HAVE IMPLICATIONS IN EXPLAINING THE PREVALENCE OF OBESITY, TYPE 2 DIABETES AND OTHER CHRONIC NON-GENETIC DISEASES. THIS ALSO IMPLIES THAT, IN THE NEAR FUTURE, EPIGENETIC FACTORS WHICH ARE HERITABLE SHOULD BE REGARDED IMPORTANT IN DETERMINING THE RISK OF CERTAIN DISEASES. MOREOVER, IDENTIFICATION OF EPIGENETIC MARKERS IN GAMETES (POLAR BODY OR SPERM) MAY HOLD GREAT PROMISE FOR PREDICTING SUSCEPTIBILITY TO AND PREVENTING CERTAIN NON-GENETIC DISEASES IN OFFSPRING, AS WELL AS PROVIDING INDICATIONS ON PARENTAL ENVIRONMENTAL EXPOSURES. 2015 8 5698 44 SIMULATED CLIMATE WARMING AND MITOCHONDRIAL HAPLOGROUP MODULATE TESTICULAR SMALL NON-CODING RNA EXPRESSION IN THE NEOTROPICAL PSEUDOSCORPION, CORDYLOCHERNES SCORPIOIDES. RECENT THEORY SUGGESTS THAT TROPICAL TERRESTRIAL ARTHROPODS ARE AT SIGNIFICANT RISK FROM CLIMATE WARMING. METABOLIC RATE IN SUCH ECTOTHERMIC SPECIES INCREASES EXPONENTIALLY WITH ENVIRONMENTAL TEMPERATURE, AND A SMALL TEMPERATURE INCREASE IN A HOT ENVIRONMENT CAN THEREFORE HAVE A GREATER PHYSIOLOGICAL IMPACT THAN A LARGE TEMPERATURE INCREASE IN A COOL ENVIRONMENT. IN TWO RECENT STUDIES OF THE NEOTROPICAL PSEUDOSCORPION, CORDYLOCHERNES SCORPIOIDES, SIMULATED CLIMATE WARMING SIGNIFICANTLY DECREASED SURVIVAL, BODY SIZE AND LEVEL OF SEXUAL DIMORPHISM. HOWEVER, THESE EFFECTS WERE MINOR COMPARED WITH CATASTROPHIC CONSEQUENCES FOR MALE FERTILITY AND FEMALE FECUNDITY, IDENTIFYING REPRODUCTION AS THE LIFE STAGE MOST VULNERABLE TO CLIMATE WARMING. HERE, WE EXAMINE THE EFFECTS OF CHRONIC HIGH-TEMPERATURE EXPOSURE ON EPIGENETIC REGULATION IN C. SCORPIOIDES IN THE CONTEXT OF NATURALLY OCCURRING VARIATION IN MITOCHONDRIAL DNA. EPIGENETIC MECHANISMS, INCLUDING DNA METHYLATION, HISTONE MODIFICATIONS AND SMALL NON-CODING RNA (SNCRNA) EXPRESSION, ARE PARTICULARLY SENSITIVE TO ENVIRONMENTAL FACTORS SUCH AS TEMPERATURE, WHICH CAN INDUCE CHANGES IN EPIGENETIC STATES AND PHENOTYPES THAT MAY BE HERITABLE ACROSS GENERATIONS. OUR RESULTS INDICATE THAT EXPOSURE OF MALE PSEUDOSCORPIONS TO ELEVATED TEMPERATURE SIGNIFICANTLY ALTERED THE EXPRESSION OF >60 SNCRNAS IN TESTICULAR TISSUE, SPECIFICALLY MICRORNAS AND PIWI-INTERACTING RNAS. MITOCHONDRIAL HAPLOGROUP WAS ALSO A SIGNIFICANT FACTOR INFLUENCING BOTH SNCRNAS AND MITOCHONDRIAL GENE EXPRESSION. THESE FINDINGS DEMONSTRATE THAT CHRONIC HEAT STRESS CAUSES CHANGES IN EPIGENETIC PROFILES THAT MAY ACCOUNT FOR REPRODUCTIVE DYSFUNCTION IN C. SCORPIOIDES MALES. MOREOVER, THROUGH ITS EFFECTS ON EPIGENETIC REGULATION, MITOCHONDRIAL DNA POLYMORPHISM MAY PROVIDE THE POTENTIAL FOR AN ADAPTIVE EVOLUTIONARY RESPONSE TO CLIMATE WARMING. 2018 9 3713 32 INHERITANCE OF ACQUIRED BEHAVIOUR ADAPTATIONS AND BRAIN GENE EXPRESSION IN CHICKENS. BACKGROUND: ENVIRONMENTAL CHALLENGES MAY AFFECT BOTH THE EXPOSED INDIVIDUALS AND THEIR OFFSPRING. WE INVESTIGATED POSSIBLE ADAPTIVE ASPECTS OF SUCH CROSS-GENERATION TRANSMISSIONS, AND HYPOTHESIZED THAT CHRONIC UNPREDICTABLE FOOD ACCESS WOULD CAUSE CHICKENS TO SHOW A MORE CONSERVATIVE FEEDING STRATEGY AND TO BE MORE DOMINANT, AND THAT THESE ADAPTATIONS WOULD BE TRANSMITTED TO THE OFFSPRING. METHODOLOGY/PRINCIPAL FINDINGS: PARENTS WERE RAISED IN AN UNPREDICTABLE (UL) OR IN PREDICTABLE DIURNAL LIGHT RHYTHM (PL, 12:12 H LIGHT:DARK). IN A FORAGING TEST, UL BIRDS PECKED MORE AT FREELY AVAILABLE, RATHER THAN AT HIDDEN AND MORE ATTRACTIVE FOOD, COMPARED TO BIRDS FROM THE PL GROUP. FEMALE OFFSPRING OF UL BIRDS, RAISED IN PREDICTABLE LIGHT CONDITIONS WITHOUT PARENTAL CONTACT, SHOWED A SIMILAR FORAGING BEHAVIOR, DIFFERING FROM OFFSPRING OF PL BIRDS. FURTHERMORE, ADULT OFFSPRING OF UL BIRDS PERFORMED MORE FOOD PECKS IN A DOMINANCE TEST, SHOWED A HIGHER PREFERENCE FOR HIGH ENERGY FOOD, SURVIVED BETTER, AND WERE HEAVIER THAN OFFSPRING OF PL PARENTS. USING CDNA MICROARRAYS, WE FOUND THAT THE DIFFERENTIAL BRAIN GENE EXPRESSION CAUSED BY THE CHALLENGE WAS MIRRORED IN THE OFFSPRING. IN PARTICULAR, SEVERAL IMMUNOGLOBULIN GENES SEEMED TO BE AFFECTED SIMILARLY IN BOTH UL PARENTS AND THEIR OFFSPRING. ESTRADIOL LEVELS WERE SIGNIFICANTLY HIGHER IN EGG YOLK FROM UL BIRDS, SUGGESTING ONE POSSIBLE MECHANISM FOR THESE EFFECTS. CONCLUSIONS/SIGNIFICANCE: OUR FINDINGS SUGGEST THAT UNPREDICTABLE FOOD ACCESS CAUSED SEEMINGLY ADAPTIVE RESPONSES IN FEEDING BEHAVIOR, WHICH MAY HAVE BEEN TRANSMITTED TO THE OFFSPRING BY MEANS OF EPIGENETIC MECHANISMS, INCLUDING REGULATION OF IMMUNE GENES. THIS MAY HAVE PREPARED THE OFFSPRING FOR COPING WITH AN UNPREDICTABLE ENVIRONMENT. 2009 10 947 35 CHRONIC MEHG EXPOSURE MODIFIES THE HISTONE H3K4ME3 EPIGENETIC LANDSCAPE IN CAENORHABDITIS ELEGANS. METHYLMERCURY (MEHG) IS A PERSISTENT ENVIRONMENTAL POLLUTANT THAT OCCURS IN THE FOOD CHAIN, AT OCCUPATIONAL SITES, AND VIA MEDICAL PROCEDURES. EXPOSURE IN HUMANS AND ANIMAL MODELS RESULTS IN RENAL, NEURO, AND REPRODUCTIVE TOXICITIES. IN THIS STUDY, WE DEMONSTRATE THAT CHRONIC EXPOSURE TO MEHG (10MUM) CAUSES EPIGENETIC LANDSCAPE MODIFICATIONS OF HISTONE H3K4 TRIMETHYLATION (H3K4ME3) MARKS IN CAENORHABDITIS ELEGANS USING CHROMATIN IMMUNO-PRECIPITATION SEQUENCING (CHIP-SEQ). THE MODIFICATIONS CORRESPOND TO THE LOCATIONS OF 1467 GENES WITH ENHANCED AND 508 GENES WITH REDUCED SIGNALS. AMONG ENHANCED GENES ARE THOSE ENCODING GLUTATHIONE-S-TRANSFERASES, LIPOCALIN-RELATED PROTEIN AND A CUTICULAR COLLAGEN. CHIP-SEQ ENHANCEMENT OF THESE GENES WAS CONFIRMED WITH INCREASED MRNA EXPRESSION LEVELS REVEALED BY QRT-PCR. FURTHERMORE, WE OBSERVED ENHANCEMENT OF H3K4ME3 MARKS IN THESE GENES IN ANIMALS EXPOSED TO MEHG IN UTERO AND ASSAYED AT L4 STAGE. IN UTERO EXPOSURE ENHANCED MARKS WITHOUT ALTERATIONS IN MRNA EXPRESSION EXCEPT FOR THE LPR-5 GENE. FINALLY, KNOCKDOWN OF LIPOCALIN-RELATED PROTEIN GENE LPR-5, WHICH IS INVOLVED IN INTERCELLULAR SIGNALING, AND CUTICULAR COLLAGEN GENE DPY-7, STRUCTURAL COMPONENT OF THE CUTICLE, BY RNA INTERFERENCE (RNAI) RESULTED IN INCREASED LETHALITY OF ANIMALS AFTER MEHG EXPOSURE. OUR RESULTS PROVIDE NEW DATA ON THE EPIGENETIC LANDSCAPE CHANGES ELICITED BY MEHG EXPOSURE, AS WELL AS DESCRIBE A UNIQUE MODEL FOR STUDYING IN UTERO EFFECTS OF HEAVY METALS. TOGETHER, THESE FINDINGS MAY HELP TO UNDERSTAND THE TOXICOLOGICAL EFFECTS OF MEHG AT THE MOLECULAR LEVEL. 2017 11 865 33 CHRONIC ACRYLAMIDE EXPOSURE IN MALE MICE RESULTS IN ELEVATED DNA DAMAGE IN THE GERMLINE AND HERITABLE INDUCTION OF CYP2E1 IN THE TESTES. ACUTE ACRYLAMIDE EXPOSURE IN MALE RODENTS RESULTS IN REDUCED REPRODUCTIVE PERFORMANCE AND DOMINANT LETHALITY. HOWEVER, THE REPRODUCTIVE EFFECTS OF LOW DOSE CHRONIC EXPOSURE, WHICH BETTER REFLECTS THE NATURE OF HUMAN EXPOSURE, REMAIN FAR LESS CERTAIN. HUMAN DIETARY CONSUMPTION OF ACRYLAMIDE HAS BEEN ESTIMATED AT AN AVERAGE OF 1-4 MICROG/KG BW/DAY. IN ORDER TO SIMULATE THIS EXPOSURE, MALE MICE WERE PROVIDED WITH ACRYLAMIDE (1 MICROG/ML) VIA THEIR DRINKING WATER CONTINUOUSLY FOR SIX MONTHS, WHICH WAS EQUIVALENT TO A HUMAN DOSE OF 10.5 MICROG/ KG BW/DAY. THIS EXPOSURE REGIME INCREASED DNA DAMAGE IN THE SPERMATOZOA, WITHOUT AFFECTING A CONCOMITANT REDUCTION IN OVERALL FERTILITY. THE OFFSPRING OF ACRYLAMIDE TREATED MICE DID NOT HAVE AN INCREASED INCIDENCE OF SKIN PAPILLOMA FORMATION FOLLOWING THE TWO-STAGE TUMOR INDUCTION PROTOCOL. HOWEVER, THE MALE OFFSPRING OF ACRYLAMIDE TREATED FATHERS HAD SIGNIFICANTLY INCREASED LEVELS OF DNA DAMAGE IN THEIR SPERMATOZOA, DESPITE HAVING HAD NO DIRECT TOXICANT EXPOSURE. IT WAS ALSO FOUND THAT THE F0, AND MOST CRUCIALLY, F1 MICE HAD INCREASED LEVELS OF CYP2E1 PROTEIN IN THEIR GERM CELLS. THIS IS SIGNIFICANT AS CYP2E1 IS THE SOLE ENZYME RESPONSIBLE FOR CONVERSION OF ACRYLAMIDE TO ITS HARMFUL METABOLITE GLYCIDAMIDE. THIS ALTERED EXPRESSION MAY BE DUE TO EPIGENETIC ALTERATIONS. ADDITIONALLY, THE F0 AND F1 MICE HAD INCREASED OXIDATIVE ADDUCTS IN THE DNA OF THEIR GERM CELLS, WHICH WAS HYPOTHESIZED TO ARISE AS A BYPRODUCT OF INCREASED CYP2E1 ACTIVITY. THEREFORE, CHRONIC PATERNAL ACRYLAMIDE EXPOSURE IN MICE HAS CONSEQUENCES FOR THEIR OFFSPRING, AND RAISES CONCERNS FOR THE EFFECTS OF ACRYLAMIDE EXPOSURE IN THE HUMAN POPULATION AND THE ACCUMULATED EFFECTS WITH MULTIPLE GENERATIONS OF EXPOSURE. 2016 12 6528 32 TRANSCRIPTIONAL CORRELATES OF CHRONIC ALCOHOL NEUROADAPTATION IN DROSOPHILA LARVAE. WHEN PRESENTED WITH THE CHOICE, DROSOPHILA MELANOGASTER FEMALES WILL OFTEN PREFER TO LAY EGGS ON FOOD CONTAINING A SIGNIFICANT AMOUNT OF ALCOHOL. WHILE, IN SOME CASES, THIS BEHAVIORAL DECISION CAN PROVIDE A SURVIVAL ADVANTAGE TO THE DEVELOPING LARVAE, IT CAN ALSO LEAD TO DEVELOPMENTAL AND COGNITIVE PROBLEMS. ALCOHOL CONSUMPTION CAN AFFECT EXECUTIVE FUNCTIONS, EPISODIC MEMORY, AND OTHER BRAIN FUNCTION CAPACITIES. HOWEVER, IN THE FRUIT FLY, THE INITIAL COGNITIVE EFFECTS OF ALCOHOL CONSUMPTION HAVE BEEN SHOWN TO REVERSE UPON PERSISTENT EXPOSURE TO ALCOHOL. USING AN OLFACTORY CONDITIONING ASSAY WHERE AN ODORANT IS IMPLEMENTED AS A CONDITIONED STIMULUS AND PAIRED WITH A HEAT SHOCK AS AN UNCONDITIONED STIMULUS, A PREVIOUS STUDY HAS SHOWN THAT WHEN EXPOSED TO A SHORT ACUTE DOSE OF ALCOHOL, DROSOPHILA LARVAE CAN NO LONGER LEARN THIS ASSOCIATION. INTERESTINGLY, UPON PROLONGED CHRONIC ALCOHOL EXPOSURE, LARVAE SEEM TO SUCCESSFULLY AVOID THE CONDITIONED STIMULUS JUST AS WELL AS CONTROL ALCOHOL-NAIVE LARVAE, SUGGESTIVE OF ALCOHOL-INDUCED NEUROADAPTATIONS. HOWEVER, THE MECHANISMS BY WHICH DROSOPHILA ADAPT TO THE PRESENCE OF ALCOHOL REMAINS UNKNOWN. IN THIS STUDY, WE EXPLORE THE TRANSCRIPTIONAL CORRELATES OF NEUROADAPTATION IN DROSOPHILA LARVAE EXPOSED TO CHRONIC ALCOHOL TO UNDERSTAND THE GENETIC AND CELLULAR COMPONENTS RESPONSIBLE FOR THIS ADAPTATION. FOR THIS, WE EMPLOYED RNA SEQUENCING TECHNOLOGY TO EVALUATE DIFFERENCES IN GENE EXPRESSION IN THE BRAIN OF LARVAE CHRONICALLY EXPOSED TO ALCOHOL. OUR RESULTS SUGGEST THAT ALCOHOL-INDUCED NEUROADAPTATIONS ARE MODULATED BY A DIVERSE ARRAY OF SYNAPTIC GENES WITHIN THE LARVAL BRAIN THROUGH A SERIES OF EPIGENETIC MODULATORS. 2021 13 4939 32 PATERNAL NICOTINE EXPOSURE IN RATS PRODUCES LONG-LASTING NEUROBEHAVIORAL EFFECTS IN THE OFFSPRING. STUDIES OF INTERGENERATIONAL EFFECTS OF PARENTAL CHEMICAL EXPOSURE HAVE PRINCIPALLY FOCUSED ON MATERNAL EXPOSURE, PARTICULARLY FOR STUDIES OF ADVERSE NEUROBEHAVIORAL CONSEQUENCES ON THE OFFSPRING. MATERNAL NICOTINE EXPOSURE HAS LONG BEEN KNOWN TO CAUSE ADVERSE NEUROBEHAVIORAL EFFECTS ON THE OFFSPRING. HOWEVER, PATERNAL TOXICANT EXPOSURE HAS ALSO BEEN FOUND TO CAUSE NEUROBEHAVIORAL TOXICITY IN THEIR OFFSPRING. RECENT WORK SUGGESTS THAT PATERNAL NICOTINE EXPOSURE CAN HAVE EPIGENETIC EFFECTS, ALTHOUGH IT REMAINS UNCLEAR WHETHER SUCH CHANGES LEAD TO NEUROBEHAVIORAL EFFECTS. IN THE CURRENT STUDY, WE INVESTIGATED THE EFFECTS OF PATERNAL NICOTINE EXPOSURE ON NEUROBEHAVIORAL DEVELOPMENT OF THEIR OFFSPRING. MALE SPRAGUE-DAWLEY RATS WERE EXPOSED TO 0 OR 2 MG/KG/DAY NICOTINE (SC) FOR 56 CONSECUTIVE DAYS WITH TWO CONSECUTIVE 2ML4 OSMOTIC MINIPUMPS. FOLLOWING TREATMENT, THESE MALES WERE MATED WITH DRUG-NAIVE FEMALE RATS. OFFSPRING OF BOTH SEXES WERE TESTED IN A BEHAVIORAL BATTERY TO ASSESS LOCOMOTION, EMOTIONAL FUNCTION AND COGNITION. PATERNAL NICOTINE EXPOSURE DID NOT IMPACT OFFSPRING VIABILITY, HEALTH OR GROWTH. HOWEVER, BEHAVIORAL FUNCTION OF THE OFFSPRING WAS SIGNIFICANTLY ALTERED BY PATERNAL NICOTINE EXPOSURE. MALE OFFSPRING WITH PATERNAL NICOTINE EXPOSURE EXHIBITED LOCOMOTOR HYPERACTIVITY IN THE FIGURE-8 APPARATUS WHEN TESTED DURING ADOLESCENCE. WHEN RETESTED IN ADULTHOOD AND REGARDLESS OF SEX, OFFSPRING OF THE NICOTINE EXPOSED FATHER SHOWED SIGNIFICANTLY REDUCED HABITUATION OF LOCOMOTOR ACTIVITY OVER THE COURSE OF THE SESSION. COMPARED TO CONTROLS, FEMALE OFFSPRING OF NICOTINE-EXPOSED FATHERS SHOWED SIGNIFICANTLY REDUCED RESPONSE LATENCY IN THE RADIAL ARM MAZE TEST. IN ADDITION TO LOCOMOTOR HYPERACTIVITY, THE OFFSPRING OF NICOTINE-EXPOSED FATHERS ALSO SHOWED SIGNIFICANTLY DIMINISHED HABITUATION IN THE NOVEL OBJECT RECOGNITION TEST. THESE RESULTS INDICATE THAT CHRONIC PATERNAL NICOTINE EXPOSURE CAN IMPACT THE BEHAVIOR OF OFFSPRING, PRODUCING LOCOMOTOR HYPERACTIVITY AND IMPAIRED HABITUATION. 2019 14 3632 32 INCORPORATING TRANSGENERATIONAL EPIGENETIC INHERITANCE INTO ECOLOGICAL RISK ASSESSMENT FRAMEWORKS. CHRONIC EXPOSURE TO ENVIRONMENTAL CONTAMINANTS CAN INDUCE HERITABLE "TRANSGENERATIONAL" MODIFICATIONS TO ORGANISMS, POTENTIALLY AFFECTING FUTURE ECOSYSTEM HEALTH AND FUNCTIONALITY. INCORPORATING TRANSGENERATIONAL EPIGENETIC HERITABILITY INTO RISK ASSESSMENT PROCEDURES HAS BEEN PREVIOUSLY SUGGESTED. HOWEVER, A CRITICAL REVIEW OF EXISTING LITERATURE YIELDED NUMEROUS STUDIES CLAIMING TRANSGENERATIONAL IMPACTS, WITH LITTLE COMPELLING EVIDENCE. THEREFORE, CONTAMINANT-INDUCED EPIGENETIC INHERITANCE MAY BE LESS COMMON THAN IS REPORTED IN THE LITERATURE. WE IDENTIFIED A NEED FOR MULTIGENERATION EPIGENETIC STUDIES THAT EXTEND BEYOND WHAT COULD BE DEEMED "DIRECT EXPOSURE" TO F1 AND F2 GAMETES AND ALSO INCLUDE SUBSEQUENT MULTIPLE NONEXPOSED GENERATIONS TO ADEQUATELY EVALUATE TRANSGENERATIONAL RECOVERY TIMES. ALSO, INCREASED EXPERIMENTAL REPLICATION IS REQUIRED TO ACCOUNT FOR THE HIGHLY VARIABLE NATURE OF EPIGENETIC RESPONSES AND APPARENT IRREPRODUCIBILITY OF CURRENT STUDIES. FURTHER, EPIGENETIC END POINTS NEED TO BE CORRELATED WITH OBSERVABLE DETRIMENTAL ORGANISM CHANGES BEFORE A NEED FOR RISK MANAGEMENT CAN BE PROPERLY DETERMINED. WE SUGGEST THAT EPIGENETIC-BASED CONTAMINANT STUDIES INCLUDE CONCENTRATIONS LOWER THAN CURRENT "EC(10-20)" OR "LOWEST OBSERVABLE EFFECT CONCENTRATIONS" FOR THE ORGANISM'S MOST SENSITIVE PHENOTYPIC END POINT, AS HIGHER CONCENTRATIONS ARE LIKELY ALREADY REGULATED. FINALLY, WE PROPOSE A REGULATORY FRAMEWORK AND OPTIMAL EXPERIMENTAL DESIGN THAT ENABLES TRANSGENERATIONAL EPIGENETIC EFFECTS TO BE ASSESSED AND INCORPORATED INTO CONVENTIONAL ECOTOXICOLOGICAL TESTING. 2017 15 968 27 CHRONIC NICOTINE EXPOSURE SYSTEMICALLY ALTERS MICRORNA EXPRESSION PROFILES DURING POST-EMBRYONIC STAGES IN CAENORHABDITIS ELEGANS. TOBACCO SMOKING IS ASSOCIATED WITH MANY DISEASES. ADDICTION IS OF THE MOST NOTORIOUS TOBACCO-RELATED SYNDROME AND IS MAINLY ATTRIBUTED TO NICOTINE. IN THIS STUDY, WE EMPLOYED CAENORHABDITIS ELEGANS AS A BIOLOGICAL MODEL TO SYSTEMICALLY INVESTIGATE THE EFFECT OF CHRONIC NICOTINE EXPOSURE ON MICRORNA (MIRNA) EXPRESSION PROFILE AND THEIR REGULATED BIOCHEMICAL PATHWAYS. NICOTINE TREATMENT (20 MICROM AND 20 MM) WAS LIMITED TO THE POST-EMBRYONIC STAGE FROM L1 TO L4 ( APPROXIMATELY 31 H) PERIOD AFTER WHICH WORMS WERE COLLECTED FOR GENOME-WIDE MIRNA PROFILING. OUR RESULTS SHOW THAT NICOTINE SIGNIFICANTLY ALTERED THE EXPRESSION PATTERNS OF 40 MIRNAS. THE EFFECT WAS PROPORTIONAL TO THE NICOTINE DOSE AND WAS EXPECTED TO HAVE AN ADDITIVE, MORE ROBUST RESPONSE. BASED ON PATHWAY ENRICHMENT ANALYSES COUPLED WITH NICOTINE-INDUCED MIRNA PATTERNS, WE INFERRED THAT MIRNAS AS A SYSTEM MEDIATES "REGULATORY HORMESIS", MANIFESTED IN BIPHASIC BEHAVIORAL AND PHYSIOLOGICAL PHENOTYPES. WE PROPOSED A MODEL WHERE NICOTINE ADDICTION IS MEDIATED BY MIRNAS' REGULATION OF FOS-1 AND IS MAINTAINED BY EPIGENETIC FACTORS. THUS, OUR STUDY OFFERS NEW INSIGHTS FOR A BETTER UNDERSTANDING OF THE SENSITIVITY OF EARLY DEVELOPMENTAL STAGES TO NICOTINE. 2014 16 910 29 CHRONIC EXPOSURE TO ETHANOL OF MALE MICE BEFORE MATING PRODUCES ATTENTION DEFICIT HYPERACTIVITY DISORDER-LIKE PHENOTYPE ALONG WITH EPIGENETIC DYSREGULATION OF DOPAMINE TRANSPORTER EXPRESSION IN MOUSE OFFSPRING. PRECONCEPTION EXPOSURE TO ETOH THROUGH THE PATERNAL ROUTE MAY AFFECT NEUROBEHAVIORAL AND DEVELOPMENTAL FEATURES OF OFFSPRING. THIS STUDY INVESTIGATES THE EFFECTS OF PATERNAL EXPOSURE TO ETOH BEFORE CONCEPTION ON THE HYPERACTIVITY, INATTENTION, AND IMPULSIVITY BEHAVIOR OF MALE OFFSPRING IN MICE. SIRE MICE WERE TREATED WITH ETOH IN A CONCENTRATION RANGE APPROXIMATING HUMAN BINGE DRINKING (0-4 G/KG/DAY ETOH) FOR 7 WEEKS AND MATED WITH UNTREATED FEMALES MICE TO PRODUCE OFFSPRING. ETOH EXPOSURE TO SIRE MICE INDUCED ATTENTION DEFICIT HYPERACTIVITY DISORDER (ADHD)-LIKE HYPERACTIVE, INATTENTIVE, AND IMPULSIVE BEHAVIORS IN OFFSPRING. AS A MECHANISTIC LINK, BOTH PROTEIN AND MRNA EXPRESSION OF DOPAMINE TRANSPORTER (DAT), A KEY DETERMINANT OF ADHD-LIKE PHENOTYPES IN EXPERIMENTAL ANIMALS AND HUMANS, WERE SIGNIFICANTLY DECREASED BY PATERNAL ETOH EXPOSURE IN CEREBRAL CORTEX AND STRIATUM OF OFFSPRING MICE ALONG WITH INCREASED METHYLATION OF A CPG REGION OF THE DAT GENE PROMOTER. THE INCREASE IN METHYLATION OF DAT GENE PROMOTER WAS ALSO OBSERVED IN THE SPERM OF SIRE MICE, SUGGESTING GERMLINE CHANGES IN THE EPIGENETIC METHYLATION SIGNATURE OF DAT GENE BY ETOH EXPOSURE. IN ADDITION, THE EXPRESSION OF TWO KEY REGULATORS OF METHYLATION-DEPENDENT EPIGENETIC REGULATION OF FUNCTIONAL GENE EXPRESSION, NAMELY, MECP2 AND DNMT1, WAS MARKEDLY DECREASED IN OFFSPRING CORTEX AND STRIATUM SIRED BY ETOH-EXPOSED MICE. THESE RESULTS SUGGEST THAT PRECONCEPTIONAL EXPOSURE TO ETOH THROUGH THE PATERNAL ROUTE INDUCES BEHAVIORAL CHANGES IN OFFSPRING, POSSIBLY VIA EPIGENETIC CHANGES IN GENE EXPRESSION, WHICH IS ESSENTIAL FOR THE REGULATION OF ADHD-LIKE BEHAVIORS. 2014 17 3214 35 HEAT STRESS-INDUCED LIFE SPAN EXTENSION IN YEAST. THE YEAST SACCHAROMYCES CEREVISIAE HAS A LIMITED LIFE SPAN THAT CAN BE MEASURED BY THE NUMBER OF TIMES INDIVIDUAL CELLS DIVIDE. SEVERAL GENETIC MANIPULATIONS HAVE BEEN SHOWN TO PROLONG THE YEAST LIFE SPAN. HOWEVER, ENVIRONMENTAL EFFECTS THAT EXTEND LONGEVITY HAVE BEEN LARGELY IGNORED. WE HAVE FOUND THAT MILD, NONLETHAL HEAT STRESS EXTENDED YEAST LIFE SPAN WHEN IT WAS ADMINISTERED TRANSIENTLY EARLY IN LIFE. THE INCREASED LONGEVITY WAS DUE TO A REDUCTION IN THE MORTALITY RATE THAT PERSISTED OVER MANY CELL DIVISIONS (GENERATIONS) BUT WAS NOT PERMANENT. THE GENES RAS1 AND RAS2 WERE NECESSARY TO OBSERVE THIS EFFECT OF HEAT STRESS. THE RAS2 GENE IS CONSISTENTLY REQUIRED FOR MAINTENANCE OF LIFE SPAN WHEN HEAT STRESS IS CHRONIC OR IN ITS EXTENSION WHEN HEAT STRESS IS TRANSIENT OR ABSENT ALTOGETHER. RAS1, ON THE OTHER HAND, APPEARS TO HAVE A ROLE IN SIGNALING LIFE EXTENSION INDUCED BY TRANSIENT, MILD HEAT STRESS, WHICH IS DISTINCT FROM ITS LIFE-SPAN-CURTAILING EFFECT IN THE ABSENCE OF STRESS AND ITS LACK OF INVOLVEMENT IN THE RESPONSE TO CHRONIC HEAT STRESS. THIS DISTINCTION BETWEEN THE RAS GENES MAY BE PARTIALLY RELATED TO THEIR DIFFERENT EFFECTS ON GROWTH-PROMOTING GENES AND STRESS-RESPONSIVE GENES. THE RAS2 MUTATION CLEARLY HINDERED RESUMPTION OF GROWTH AND RECOVERY FROM STRESS, WHILE THE RAS1 MUTATION DID NOT. THE HSP104 GENE, WHICH IS LARGELY RESPONSIBLE FOR INDUCED THERMOTOLERANCE IN YEAST, WAS NECESSARY FOR LIFE EXTENSION INDUCED BY TRANSIENT HEAT STRESS. AN INTERACTION BETWEEN MITOCHONDRIAL PETITE MUTATIONS AND HEAT STRESS WAS FOUND, SUGGESTING THAT MITOCHONDRIA MAY BE NECESSARY FOR LIFE EXTENSION BY TRANSIENT HEAT STRESS. THE RESULTS RAISE THE POSSIBILITY THAT THE RAS GENES AND MITOCHONDRIA MAY PLAY A ROLE IN THE EPIGENETIC INHERITANCE OF REDUCED MORTALITY RATE AFFORDED BY TRANSIENT, MILD HEAT STRESS. 1998 18 4938 30 PATERNAL NICOTINE ENHANCES FEAR MEMORY, REDUCES NICOTINE ADMINISTRATION, AND ALTERS HIPPOCAMPAL GENETIC AND NEURAL FUNCTION IN OFFSPRING. NICOTINE USE REMAINS HIGHLY PREVALENT WITH TOBACCO AND E-CIGARETTE PRODUCTS CONSUMED WORLDWIDE. HOWEVER, INCREASING EVIDENCE OF TRANSGENERATIONAL EPIGENETIC INHERITANCE SUGGESTS THAT NICOTINE USE MAY ALTER BEHAVIOR AND NEUROBIOLOGY IN SUBSEQUENT GENERATIONS. WE TESTED THE EFFECTS OF CHRONIC PATERNAL NICOTINE EXPOSURE IN C57BL6/J MICE ON FEAR CONDITIONING IN F1 AND F2 OFFSPRING, AS WELL AS CONDITIONED FEAR EXTINCTION AND SPONTANEOUS RECOVERY, NICOTINE SELF-ADMINISTRATION, HIPPOCAMPAL CHOLINERGIC FUNCTIONING, RNA EXPRESSION, AND DNA METHYLATION IN F1 OFFSPRING. PATERNAL NICOTINE EXPOSURE WAS ASSOCIATED WITH ENHANCED CONTEXTUAL AND CUED FEAR CONDITIONING AND SPONTANEOUS RECOVERY OF EXTINGUISHED FEAR MEMORIES. FURTHER, NICOTINE REINFORCEMENT WAS REDUCED IN NICOTINE-SIRED MICE, AS ASSESSED IN A SELF-ADMINISTRATION PARADIGM. THESE BEHAVIORAL PHENOTYPES WERE COUPLED WITH ALTERED RESPONSE TO NICOTINE, UPREGULATED HIPPOCAMPAL NICOTINIC ACETYLCHOLINE RECEPTOR BINDING, REDUCED EVOKED HIPPOCAMPAL CHOLINERGIC CURRENTS, AND ALTERED METHYLATION AND EXPRESSION OF HIPPOCAMPAL GENES RELATED TO NEURAL DEVELOPMENT AND PLASTICITY. GENE EXPRESSION ANALYSIS SUGGESTS MULTIGENERATIONAL EFFECTS ON BROADER GENE NETWORKS POTENTIALLY INVOLVED IN NEUROPLASTICITY AND MENTAL DISORDERS. THE CHANGES IN FEAR CONDITIONING SIMILARLY SUGGEST PHENOTYPES ANALOGOUS TO ANXIETY DISORDERS SIMILAR TO POST-TRAUMATIC STRESS. 2021 19 5774 40 SPERM TRANSCRIPTIONAL STATE ASSOCIATED WITH PATERNAL TRANSMISSION OF STRESS PHENOTYPES. PATERNAL STRESS CAN INDUCE LONG-LASTING CHANGES IN GERM CELLS POTENTIALLY PROPAGATING HERITABLE CHANGES ACROSS GENERATIONS. TO DATE, NO STUDIES HAVE INVESTIGATED DIFFERENCES IN TRANSMISSION PATTERNS BETWEEN STRESS-RESILIENT AND -SUSCEPTIBLE MICE. WE TESTED THE HYPOTHESIS THAT TRANSCRIPTIONAL ALTERATIONS IN SPERM DURING CHRONIC SOCIAL DEFEAT STRESS (CSDS) TRANSMIT INCREASED SUSCEPTIBILITY TO STRESS PHENOTYPES TO THE NEXT GENERATION. WE DEMONSTRATE DIFFERENCES IN OFFSPRING FROM STRESSED FATHERS THAT DEPEND UPON PATERNAL CATEGORY (RESILIENT VS SUSCEPTIBLE) AND OFFSPRING SEX. IMPORTANTLY, ARTIFICIAL INSEMINATION REVEALS THAT SPERM MEDIATES SOME OF THE BEHAVIORAL PHENOTYPES SEEN IN OFFSPRING. USING RNA-SEQUENCING WE REPORT SUBSTANTIAL AND DISTINCT CHANGES IN THE TRANSCRIPTOMIC PROFILES OF SPERM FOLLOWING CSDS IN SUSCEPTIBLE VS RESILIENT FATHERS, WITH ALTERATIONS IN LONG NONCODING RNAS (LNCRNAS) PREDOMINATING ESPECIALLY IN SUSCEPTIBILITY. CORRELATION ANALYSIS REVEALED THAT THESE ALTERATIONS WERE ACCOMPANIED BY A LOSS OF REGULATION OF PROTEIN-CODING GENES BY LNCRNAS IN SPERM OF SUSCEPTIBLE MALES. WE ALSO IDENTIFY SEVERAL CO-EXPRESSION GENE MODULES THAT ARE ENRICHED IN DIFFERENTIALLY EXPRESSED GENES IN SPERM FROM EITHER RESILIENT OR SUSCEPTIBLE FATHERS. TAKEN TOGETHER, THESE STUDIES ADVANCE OUR UNDERSTANDING OF INTERGENERATIONAL EPIGENETIC TRANSMISSION OF BEHAVIORAL EXPERIENCE.SIGNIFICANCE STATEMENTTHIS MANUSCRIPT CONTRIBUTES TO THE COMPLEX FACTORS THAT INFLUENCE THE PATERNAL TRANSMISSION OF STRESS PHENOTYPES. BY LEVERAGING THE SEGREGATION OF MALES EXPOSED TO CHRONIC SOCIAL DEFEAT STRESS INTO EITHER RESILIENT OR SUSCEPTIBLE CATEGORIES WE WERE ABLE TO IDENTIFY THE PHENOTYPIC DIFFERENCES IN THE PATERNAL TRANSMISSION OF STRESS PHENOTYPES ACROSS GENERATIONS BETWEEN THE TWO LINEAGES. IMPORTANTLY, THIS WORK ALSO ALLUDES TO THE SIGNIFICANCE OF BOTH LONG NONCODING RNAS AND PROTEIN CODING GENES MEDIATING THE PATERNAL TRANSMISSION OF STRESS. THE KNOWLEDGE GAINED FROM THESE DATA IS OF PARTICULAR INTEREST IN UNDERSTANDING THE RISK FOR THE DEVELOPMENT OF PSYCHIATRIC DISORDERS SUCH AS ANXIETY AND DEPRESSION. 2021 20 901 29 CHRONIC EXPOSURE TO ANTHROPOGENIC AND CLIMATE RELATED STRESSORS ALTERS TRANSCRIPTIONAL RESPONSES IN THE LIVER OF ZEBRAFISH (DANIO RERIO) ACROSS MULTIPLE GENERATIONS. THE ANTIDEPRESSANT, VENLAFAXINE (VFX), AND CLIMATE CHANGE STRESSORS, SUCH AS INCREASED WATER TEMPERATURE AND DECREASED DISSOLVED OXYGEN, ARE CURRENT THREATS TO AQUATIC ENVIRONMENTS. THIS STUDY AIMED TO DETERMINE HOW MICRORNAS (MIRNAS) AND PREDICTED TARGETED TRANSCRIPTS WERE ALTERED IN LIVERS OF ZEBRAFISH EXPOSED TO THESE STRESSORS, AND LIVERS OF THEIR UN-EXPOSED F(1) AND F(2) OFFSPRING. FOLLOWING A 21 DAY EXPOSURE TO MULTIPLE STRESSORS (1 MUG/L VFX, +5 DEGREES C AMBIENT, 50% O(2)), THEN A SUBSEQUENT 21 DAY RECOVERY, RELATIVE ABUNDANCES OF CYP3A65, HSP70, HSP90, AND PPARGC1A AND MIRNAS PREDICTED TO TARGET THEM (MIR-142A, MIR-16C, MIR-181C, AND MIR-129, RESPECTIVELY) WERE MEASURED IN THE LIVER VIA QUANTITATIVE PCR (RT-QPCR). THERE WERE SIGNIFICANT DECREASES IN MIR-142A IN THE EXPOSED F(0) GENERATION AND THE EXPOSED F(1) GENERATION. WHILE THERE WERE NO CHANGES DETECTED IN CYP3A65 RELATIVE ABUNDANCE, THERE WAS A SIGNIFICANT INVERSE RELATIONSHIP BETWEEN CYP3A65 AND MIR-142A. HSP70 EXPRESSION SIGNIFICANTLY INCREASED IN THE F(1) GENERATION, WHICH PERSISTED TO THE F(2) GENERATION AND THE RELATIVE ABUNDANCE OF HSP90 SIGNIFICANTLY INCREASED IN ALL GENERATIONS. THERE WAS A SIGNIFICANT REDUCTION IN MIR-181C IN THE F(1) GENERATION, BUT THERE WAS NO SIGNIFICANT RELATIONSHIP BETWEEN MIR-181C AND HSP90. FINALLY, THERE WAS A SIGNIFICANT DECREASE IN PPARGC1A RELATIVE ABUNDANCE IN THE F(1) GENERATION WHICH WAS ASSOCIATED WITH AN INCREASE IN MIR-129. COMBINED, THESE RESULTS SUGGEST THAT PARENTAL EXPOSURE TO MULTIPLE, ENVIRONMENTALLY RELEVANT STRESSORS CAN CONFER TRANSCRIPTIONAL AND EPIGENETIC RESPONSES IN THE F(1) AND F(2) GENERATIONS, ALTHOUGH IDENTIFYING WHICH STRESSOR IS A DRIVING FORCE BECOMES UNCLEAR. 2021