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首页> 外文期刊>Genome Biology >Genome-wide patterns of genetic variation in sweet and grain sorghum (Sorghum bicolor).
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Genome-wide patterns of genetic variation in sweet and grain sorghum (Sorghum bicolor).

机译:甜高粱和谷物高粱( Sorghum bicolor )的全基因组遗传变异模式。

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Background: Sorghum (Sorghum bicolor) is globally produced as a source of food, feed, fibre and fuel. Grain and sweet sorghums differ in a number of important traits including stem sugar and juice accumulation, plant height as well as grain and biomass production. The first whole genome sequence of a grain sorghum is available, but additional genome sequences are required to study genome-wide and intraspecific variation for dissecting the genetic basis of these important traits and for tailor-designed breeding of this important C4 crop. Results: We resequenced two sweet and one grain sorghum inbred lines, and identified a set of nearly 1,500 genes differentiating sweet and grain sorghum. These genes fall into 10 major metabolic pathways involved in sugar and starch metabolisms, lignin and coumarin biosynthesis, nucleic acid metabolism, stress responses and DNA damage repair. In addition, we uncovered 1,057,018 SNPs, 99,948 indels of 1-10 bp in length and 16,487 presence/absence variations as well as 17,111 CNVs. The majority of the large-effect SNPs, indels and presence/absence variations resided in the genes containing leucine rich repeats, PPR repeats and disease resistance R genes possessing diverse biological functions or under diversifying selection, but were absent in genes which are essential for life. Conclusions: This is a first report of the identification of genome-wide patterns of genetic variation in sorghum. High-density SNP and indel markers reported here will be a valuable resource for future gene-phenotype studies and the molecular breeding of this important crop and related species.
机译:背景:高粱(高粱双色)是全球生产的食物,饲料,纤维和燃料的来源。谷物和甜高粱在许多重要性状上有所不同,包括茎糖和果汁的积累,株高以及谷物和生物量的生产。可获得高粱的第一个完整基因组序列,但需要额外的基因组序列来研究全基因组和种内变异,以剖析这些重要性状的遗传基础,并针对这种重要的C 4 < / sub>作物。结果:我们重新测序了两个甜高粱和一个谷物高粱自交系,并鉴定出将近1,500个区分甜高粱和谷物高粱的基因。这些基因属于糖和淀粉代谢,木质素和香豆素生物合成,核酸代谢,应激反应和DNA损伤修复的10个主要代谢途径。此外,我们发现了1,057,018个SNP,长度为1-10 bp的99,948个插入缺失,16,487个存在/不存在变异以及17,111个CNV。大多数大的SNP,插入缺失和存在/不存在变异都存在于富含亮氨酸重复序列,PPR重复序列和抗病性 R 基因的基因中,这些基因具有多种生物学功能或处于多样化选择之下,但不存在对生命至关重要的基因结论:这是鉴定高粱全基因组遗传变异模式的第一份报告。此处报道的高密度SNP和indel标记将为将来的基因表型研究以及该重要作物和相关物种的分子育种提供宝贵的资源。

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