Trigg, N.* ; Schjenken, J.E.* ; Martin, J.H.* ; Skerrett-Byrne, D.A. ; Smyth, S.P.* ; Bernstein, I.R.* ; Anderson, A.L.* ; Stanger, S.J.* ; Simpson, E.N.A.* ; Tomar, A. ; Teperino, R. ; Conine, C.C.* ; De Iuliis, G.N.* ; Roman, S.D.* ; Bromfield, E.G.* ; Dun, M.D.* ; Eamens, A.L.* ; Nixon, B.*
     
 
    
        
Subchronic elevation in ambient temperature drives alterations to the sperm epigenome and accelerates early embryonic development in mice.
    
    
        
    
    
        
        Proc. Natl. Acad. Sci. U.S.A. 121:e2409790121 (2024)
    
    
    
		
		
			
				Forecasted increases in the prevalence and severity of extreme weather events accompanying changes in climatic behavior pose potential risk to the reproductive capacity of humans and animals of ecological and agricultural significance. While several studies have revealed that heat stress induced by challenges such as testicular insulation can elicit a marked negative effect on the male reproductive system, and particularly the production of spermatozoa, less is known about the immediate impact on male reproductive function following subchronic whole-body exposure to elevated ambient temperature. To address this knowledge gap, we exposed unrestrained male mice to heat stress conditions that emulate a heat wave (daily cycle of 8 h at 35 °C followed by 16 h at 25 °C) for a period of 7 d. Neither the testes or epididymides of heat-exposed male mice exhibited evidence of gross histological change, and similarly, spermatozoa of exposed males retained their functionality and ability to support embryonic development. However, the embryos generated from heat-exposed spermatozoa experienced pronounced changes in gene expression linked to acceleration of early embryo development, aberrant blastocyst hatching, and increased fetal:placental weight ratio. Such changes were causally associated with an altered sperm small noncoding RNA (sncRNA) profile, such that these developmental phenotypes were recapitulated by microinjection of wild-type embryos sired by control spermatozoa with RNAs extracted from heat-exposed spermatozoa. Such data highlight that even relatively modest excursions in ambient temperature can affect male reproductive function and identify the sperm sncRNA profile as a particular point of vulnerability to this imposed environmental stress.
			
			
				
			
		 
		
			
				
					
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        Publikationstyp
        Artikel: Journalartikel
    
 
    
        Dokumenttyp
        Wissenschaftlicher Artikel
    
 
    
        Typ der Hochschulschrift
        
    
 
    
        Herausgeber
        
    
    
        Schlagwörter
        Embryo Development ; Epididymis ; Heat ; Small Non-protein-coding Rna ; Sperm; Seminal Plasma Proteome; Scrotal Heat-stress; Fertilization; Spermatozoa; Quality; Cattle; Mechanisms; Insulation; Responses; Testes
    
 
    
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        Sprache
        englisch
    
 
    
        Veröffentlichungsjahr
        2024
    
 
    
        Prepublished im Jahr 
        0
    
 
    
        HGF-Berichtsjahr
        2024
    
 
    
    
        ISSN (print) / ISBN
        0027-8424
    
 
    
        e-ISSN
        1091-6490
    
 
    
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	    Band: 121,  
	    Heft: 47,  
	    Seiten: ,  
	    Artikelnummer: e2409790121 
	    Supplement: ,  
	
    
 
  
        
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            Verlag
            National Academy of Sciences
        
 
        
            Verlagsort
            2101 Constitution Ave Nw, Washington, Dc 20418 Usa
        
 
	
        
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        Begutachtungsstatus
        Peer reviewed
    
 
     
    
        POF Topic(s)
        30201 - Metabolic Health
    
 
    
        Forschungsfeld(er)
        Genetics and Epidemiology
    
 
    
        PSP-Element(e)
        G-500693-001
    
 
    
        Förderungen
        Defeat Diffuse Intrinsic Pontine Glimoa ChadTough New Investigator Fellowship
NHMRC
National Health and Medical Research Council of Australia (NHMRC)
    
 
    
        Copyright
        
    
 	
    
    
    
    
    
        Erfassungsdatum
        2024-11-15