首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Draft genome analysis provides insights into the fiber yield crude protein biosynthesis and vegetative growth of domesticated ramie (Boehmeria nivea L. Gaud)
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Draft genome analysis provides insights into the fiber yield crude protein biosynthesis and vegetative growth of domesticated ramie (Boehmeria nivea L. Gaud)

机译:基因组草案分析提供了对into麻纤维产量粗蛋白生物合成和营养生长的见解(Boehmeria nivea L. Gaud)

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摘要

Plentiful bast fiber, a high crude protein content, and vigorous vegetative growth make ramie a popular fiber and forage crop. Here, we report the draft genome of ramie, along with a genomic comparison and evolutionary analysis. The draft genome contained a sequence of approximately 335.6 Mb with 42,463 predicted genes. A high-density genetic map with 4,338 single nucleotide polymorphisms (SNPs) was developed and used to anchor the genome sequence, thus, creating an integrated genetic and physical map containing a 58.2-Mb genome sequence and 4,304 molecular markers. A genomic comparison identified 1,075 unique gene families in ramie, containing 4,082 genes. Among these unique genes, five were cellulose synthase genes that were specifically expressed in stem bark, and 3 encoded a WAT1-related protein, suggesting that they are probably related to high bast fiber yield. An evolutionary analysis detected 106 positively selected genes, 22 of which were related to nitrogen metabolism, indicating that they are probably responsible for the crude protein content and vegetative growth of domesticated varieties. This study is the first to characterize the genome and develop a high-density genetic map of ramie and provides a basis for the genetic and molecular study of this crop.
机译:丰富的韧皮纤维,高的粗蛋白含量和旺盛的营养生长使麻成为流行的纤维和饲料作物。在这里,我们报告了ie麻的基因组草图,并进行了基因组比较和进化分析。基因组草图包含约335.6 Mb的序列和42,463个预测基因。开发了具有4,338个单核苷酸多态性(SNP)的高密度遗传图谱,并用于锚定基因组序列,从而创建了一个包含58.2-Mb基因组序列和4,304个分子标记的综合遗传和物理图谱。基因组比较确定了麻中1,075个独特的基因家族,其中包含4,082个基因。在这些独特的基因中,有五个是纤维素合酶基因,它们在茎皮中特异性表达,而三个编码WAT1相关蛋白,表明它们可能与韧皮纤维的高产量有关。进化分析检测到106个阳性选择的基因,其中22个与氮代谢有关,表明它们可能与驯化品种的粗蛋白含量和营养生长有关。该研究是第一个表征the麻基因组并开发高密度遗传图谱的研究,并为该作物的遗传和分子研究提供了基础。

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