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Effects of targeted deletion of a 284 bp avian-specific highly conserved element within the Sim1 gene on flight feather development in chickens
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作者 Keiji Kinoshita Kumiko Tanabe +6 位作者 Muhammad Ameen Jamal Momoko Kyu-Shin Kai-Xiang Xu Yan-Hua Su Xiong Zhang Takayuki Suzuki Hong-Jiang Wei 《Zoological Research》 2025年第3期608-617,共10页
Flight feathers represent a hallmark innovation of avian evolution.Recent comparative genomic analyses identified a 284 bp avian-specific highly conserved element(ASHCE)located within the eighth intron of the SIM bHLH... Flight feathers represent a hallmark innovation of avian evolution.Recent comparative genomic analyses identified a 284 bp avian-specific highly conserved element(ASHCE)located within the eighth intron of the SIM bHLH transcription factor 1(Sim1)gene,postulated to act as a cis-regulatory element governing flight feather morphogenesis.To investigate its functional significance,genome-edited(GE)primordial germ cell(PGC)lines carrying targeted ASHCE deletions were generated using CRISPR/Cas9-mediated editing,with germline chimeric males subsequently mated with wild-type(WT)hens to obtain GE progeny.The resulting GE chickens harbored 257-260 bp deletions,excising approximately half of the Sim1-ASHCE sequence.Reverse transcription-quantitative real-time polymerase chain reaction(RT-qPCR)analysis showed an average 0.32-fold reduction in Sim1 expression in the forelimbs of GE embryos at day 8(E8)compared to WT counterparts.Despite this,GE chickens developed structurally normal flight and tail feathers.In situ hybridization localized Sim1 expression to the posterior mesenchyme surrounding flight feather buds in E8 WT embryos,but not within the buds themselves.These results suggest that partial deletion of Sim1-ASHCE,despite diminishing Sim1 expression,does not disrupt flight feather formation.The excised region appears to possess enhancer activity toward Sim1 but is dispensable for flight feather development.Complete ablation of the ASHCE will be necessary to fully resolve the regulatory role of Sim1 in avian feather morphogenesis. 展开更多
关键词 Sim1 gene Avian-specific enhancer Flight feather development Primordial germ cell Genome editing
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应用主成分分析法对泸宁鸡白羽乌骨家系生长发育性状的分析 被引量:2
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作者 金开林 陈兆贤 +3 位作者 侯绍云 熊斌 熊应龙 何宇峰 《畜禽业》 2022年第9期6-8,共3页
通过对泸宁鸡白羽乌骨家系后代体重与体尺性状的主成分分析,提取4个主成分,取代样本性状主要信息,累计贡献率达到86.949%。通过提取主成分因子命名可以知道,影响泸宁鸡白羽乌骨家系个体体重的主要性状是体斜长、胫长和胸宽,其可以作为... 通过对泸宁鸡白羽乌骨家系后代体重与体尺性状的主成分分析,提取4个主成分,取代样本性状主要信息,累计贡献率达到86.949%。通过提取主成分因子命名可以知道,影响泸宁鸡白羽乌骨家系个体体重的主要性状是体斜长、胫长和胸宽,其可以作为选育提高泸宁鸡白羽乌骨家系的技术依据。 展开更多
关键词 泸宁鸡 白羽乌骨家系 生长发育性状 主成分分析
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