Mortality is normal and natural in aquaculture experiments. However, it becomes a problem when measuring feed intake as a component of nutrient utilization parameters such as: feed conversion ratio, feed conversion e...Mortality is normal and natural in aquaculture experiments. However, it becomes a problem when measuring feed intake as a component of nutrient utilization parameters such as: feed conversion ratio, feed conversion efficiency, apparent net protein utilization, protein efficiency ratio and protein productive value. In order to accurately evaluate feed intake with due consideration of mortality encountered, a formulae was developed using empirical data obtained from an experiement that had mortality. The formulae Fwas: total feed consumed by numbers of survived fishes=DL∑i=1n(Fi/Ni)N. Where, D=Numbers of days fishes were fed within each period ibefore it was adjusted(e.g fortnight), it was constant throught period of experiment; F=Uantity of feed fed per day for a fortnight before the quantity was adjusted, it changed every fortnight; L=Numbers of living fishes at the end of experimental period; N=Numbers of fishes at each weighing period, it might change every fortnight or might be constant if no mortality occurred; while n=Numbers of times fishes were weighed and quantity of feed was adjusted but this did not include the final weighing at the termination of experiment. However, if the fishes were weighed weekly, then D=6.展开更多
【目的】旨在解析杜洛克猪剩余采食量的社会遗传效应(The social genetic effects of residual feed intake,SGE-RFI)的分子调控机制,揭示其通过能量代谢途径影响群体行为的生物学基础,为提高猪只饲料利用效率提供理论依据。【方法】通...【目的】旨在解析杜洛克猪剩余采食量的社会遗传效应(The social genetic effects of residual feed intake,SGE-RFI)的分子调控机制,揭示其通过能量代谢途径影响群体行为的生物学基础,为提高猪只饲料利用效率提供理论依据。【方法】通过RNA测序技术对杜洛克猪肝脏组织进行全转录组分析,系统筛选与SGE-RFI性状相关的关键差异表达基因,并采用功能富集方法解析其参与的生物学通路。【结果】鉴定出360个显著差异表达基因,功能分析表明这些基因主要富集于线粒体氧化磷酸化和ATP代谢等能量代谢相关通路,提示其可能通过调控机体能量稳态间接影响社会行为。载脂蛋白基因簇APOA1、APOC3和APOA4的协同表达改变,揭示了社会遗传效应调控过程中神经内分泌系统与脂代谢的交互作用。【结论】本研究构建了杜洛克猪SGE-RFI的多维度调控网络,不仅为解析群体行为遗传机制提供了新视角,更为精准选育低剩余采食量种猪和优化群体饲养管理方案奠定了分子基础。展开更多
文摘Mortality is normal and natural in aquaculture experiments. However, it becomes a problem when measuring feed intake as a component of nutrient utilization parameters such as: feed conversion ratio, feed conversion efficiency, apparent net protein utilization, protein efficiency ratio and protein productive value. In order to accurately evaluate feed intake with due consideration of mortality encountered, a formulae was developed using empirical data obtained from an experiement that had mortality. The formulae Fwas: total feed consumed by numbers of survived fishes=DL∑i=1n(Fi/Ni)N. Where, D=Numbers of days fishes were fed within each period ibefore it was adjusted(e.g fortnight), it was constant throught period of experiment; F=Uantity of feed fed per day for a fortnight before the quantity was adjusted, it changed every fortnight; L=Numbers of living fishes at the end of experimental period; N=Numbers of fishes at each weighing period, it might change every fortnight or might be constant if no mortality occurred; while n=Numbers of times fishes were weighed and quantity of feed was adjusted but this did not include the final weighing at the termination of experiment. However, if the fishes were weighed weekly, then D=6.
文摘【目的】旨在解析杜洛克猪剩余采食量的社会遗传效应(The social genetic effects of residual feed intake,SGE-RFI)的分子调控机制,揭示其通过能量代谢途径影响群体行为的生物学基础,为提高猪只饲料利用效率提供理论依据。【方法】通过RNA测序技术对杜洛克猪肝脏组织进行全转录组分析,系统筛选与SGE-RFI性状相关的关键差异表达基因,并采用功能富集方法解析其参与的生物学通路。【结果】鉴定出360个显著差异表达基因,功能分析表明这些基因主要富集于线粒体氧化磷酸化和ATP代谢等能量代谢相关通路,提示其可能通过调控机体能量稳态间接影响社会行为。载脂蛋白基因簇APOA1、APOC3和APOA4的协同表达改变,揭示了社会遗传效应调控过程中神经内分泌系统与脂代谢的交互作用。【结论】本研究构建了杜洛克猪SGE-RFI的多维度调控网络,不仅为解析群体行为遗传机制提供了新视角,更为精准选育低剩余采食量种猪和优化群体饲养管理方案奠定了分子基础。