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首页> 外文期刊>Conservation Physiology >Influence of a dynamic rearing environment on development of metabolic phenotypes in age-0 Lake Sturgeon, Acipenser fulvescens
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Influence of a dynamic rearing environment on development of metabolic phenotypes in age-0 Lake Sturgeon, Acipenser fulvescens

机译:动态饲养环境对2时代湖鲟鱼代谢表型发展的影响,acipenser fulvescens

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Environment–phenotype interactions are the most pronounced during early life stages and can strongly influence metabolism and ultimately ecological fitness. In the present study, we examined the effect of temperature [ambient river temperature (ART) vs ART+2°C], dissolved oxygen (DO; 100% vs 80%) and substrate (presence vs absence) on standard metabolic rate, forced maximum metabolic rate and metabolic scope with Fulton’s condition factor (K), energy density (ED) and critical thermal maximum (CTmax) in age-0 Lake Sturgeon, Acipenser fulvescens, before and after a simulated overwintering event. We found that all the environmental variables strongly influenced survival, K, ED and CTmax. Fish reared in elevated temperature showed higher mortality and reduced K pre-winter at 127?days post-hatch (dph). Interestingly, we did not find any significant difference in terms of metabolic rate between treatments at both sampling points of pre- and post-winter. Long-term exposure to 80% DO reduced ED in Lake Sturgeon post-winter at 272 dph. Our data suggest that substrate should be removed at the onset of exogenous feeding to enhance the survival rate of age-0 Lake Sturgeon in the first year of life. Effects of early rearing environment during larval development on survival over winter are discussed with respect to successful recruitment of stock enhanced Lake Sturgeon, a species that is at risk throughout its natural range.
机译:环境 - 表型相互作用是早期生命阶段最明显的,并且能够强烈影响新陈代谢和最终生态健康。在本研究中,我们检查了温度的影响[环境河流温度(ART)对术语+ 2°C],溶解氧(DO; 100%vs 80%)和底物(存在与缺席)对标准代谢率,强制在模拟的过冬事件之前和之后,在0岁湖鲟鱼,acipener fulvescens,acipenser fulvescens,acipenser fulvescens,acipenser fulvescens的最大代谢率和代谢范围。我们发现所有环境变量都会受到生存,k,ed和ctmax的强烈影响。在升高的温度下饲养的鱼表明,在舱口后127天(DPH)的127天冬季冬季冬季(DPH)。有趣的是,我们没有发现在冬季和后冬季的采样点之间的治疗之间的代谢率之间没有任何显着差异。 80%的长期暴露在冬季冬季冬季冬季冬季冬季DPH减少了ed。我们的数据表明,基质应在外源饲养的开始时去除,以提高生命的第一年的0湖鲟鱼的存活率。在冬季生存期间幼虫发育期间早期饲养环境的影响是在股票增强湖鲟鱼的成功招募,这是一种在整个自然范围内面临风险的物种。

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