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作 者:徐齐君 王玉林[1,2] 杨春葆 扎桑[1,2] 于明寨 原红军 XU Qijun;WANG Yulin;YANG Chunbao;ZHA Sang;YU Mingzai;YUAN Hongjun(State Key Laboratory of Hulless Barley and Yak Germplasm Resources and Genetic Improvement,Lhasa 850002,China;Research Institute of Agricultural Sciences,Tibet Academy of Agriculture and Animal Husbandry Sciences,Lhasa 850002,China)
机构地区:[1]省部共建青稞和牦牛种质资源与遗传改良国家重点实验室,拉萨850002 [2]西藏自治区农牧科学院农业研究所,拉萨850032
出 处:《西北农业学报》2020年第10期1502-1509,共8页Acta Agriculturae Boreali-occidentalis Sinica
基 金:国家重点研发计划(2018YFD1000703,2018YFD1000700);西藏财政专项(2014CZZX001)。
摘 要:为探明大麦(Hordeum vulgare L.)和青稞(Hordeum vulgare var.nudum)基因组结构变异与表型和环境适应差异的遗传机制,以大麦基因组为参考,基于182份大麦和青稞样品的全基因组重测序数据,进行了基因组结构变异分析。结果表明:182份大麦和青稞样品的平均测序深度约为12 X,共获得74262个结构变异,包含48078个缺失(65%)、13461个插入(18%)、7012个倒位(9%)和5711个染色体内易位(8%)。大麦参考基因组18.72%(7440/39734)的基因位于结构变异区内。许多与基因组结构变异相关的基因参与了光系统和防御反应过程。研究认为,基于182份大麦和青稞的基因组结构变异分析结果将为大麦和青稞建立一个比较完善的结构变异数据集,并将加深对大麦和青稞物种进化和表型差异分子机制的认识。In order to explore the genetic and structural variation in barley(Hordeum vulgare L.)and Qingke(Hordeum vulgare var.nudum),we used the barely genome as reference to analyze the structural variation of 182 barley and Qingke varieties based on genome re-sequencing.The results showed that the average sequencing depth was approximately 12×of 182 barley and Qingke samples.Moreover,a total of 74262 structural variations were obtained,which contained 48078 deletions(65%),13461 insertions(18%),7012 inversions(9%)and 5711 intra-chromosomal translocations(8%).18.72%(7440/39734)of barley genes was located in the structural variation regions.Among which,many structural variation related genes were involved in photosystems and defense response processes.The genomic structural variations of 182 barley and Qingke varieties based on re-sequencing could provide a comprehensive catalog of structural variations in barley and could deeply understand the molecular mechanism of species evolution and phenotypic variation between barley and Qingke.
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