染色体水平和图形基因组提供了对蒙大拿葛根生物活性代谢物代谢和冷适应的见解。

Changjuan Mo, Zhengdan Wu, Xiaohong Shang, Pingli Shi, Minghua Wei, Haiyan Wang, Liang Xiao, Sheng Cao, Liuying Lu, Wendan Zeng, Huabing Yan, Qiusheng Kong
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引用次数: 5

摘要

葛根属葛根属植物,原产于亚洲。相较于其姊妹植物thomsonii, P. montana具有更强的生长活力和冷适应性,但其葛根素等生物活性代谢物含量较低。为了促进葛根代谢调控和遗传改良的研究,本研究报道了一个全长978.59 Mb、支架N50为80.18 Mb的染色体水平基因组。比较基因组学分析表明,蒙大拿假单胞菌的基因组大小比thomsonii假单胞菌小,这是由于其重复序列和重复基因较少。在蒙大拿和thomsonii中分别鉴定出6548个和4675个品种特异性基因家族。所鉴定的与生物活性代谢物和微管生物合成相关的品种特异性和扩展/收缩基因家族可能是造成蒙大纳和thomsonii的代谢和冷适应特征不同的原因。此外,基于11份蒙大拿油菜材料构建了图谱基因组。共鉴定出92个结构变异,其中大多数与刺激-反应有关。综上所述,蒙大纳葛根的染色体水平和图谱基因组不仅有利于研究葛根的进化和代谢调控,而且对葛根的育种也有促进作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chromosome-level and graphic genomes provide insights into metabolism of bioactive metabolites and cold-adaption of Pueraria lobata var. montana.

Chromosome-level and graphic genomes provide insights into metabolism of bioactive metabolites and cold-adaption of Pueraria lobata var. montana.

Chromosome-level and graphic genomes provide insights into metabolism of bioactive metabolites and cold-adaption of Pueraria lobata var. montana.

Chromosome-level and graphic genomes provide insights into metabolism of bioactive metabolites and cold-adaption of Pueraria lobata var. montana.

Pueraria lobata var. montana (P. montana) belongs to the genus Pueraria and originated in Asia. Compared with its sister P. thomsonii, P. montana has stronger growth vigour and cold-adaption but contains less bioactive metabolites such as puerarin. To promote the investigation of metabolic regulation and genetic improvement of Pueraria, the present study reports a chromosome-level genome of P. montana with length of 978.59 Mb and scaffold N50 of 80.18 Mb. Comparative genomics analysis showed that P. montana possesses smaller genome size than that of P. thomsonii owing to less repeat sequences and duplicated genes. A total of 6,548 and 4,675 variety-specific gene families were identified in P. montana and P. thomsonii, respectively. The identified variety-specific and expanded/contracted gene families related to biosynthesis of bioactive metabolites and microtubules are likely the causes for the different characteristics of metabolism and cold-adaption of P. montana and P. thomsonii. Moreover, a graphic genome was constructed based on 11 P. montana accessions. Total 92 structural variants were identified and most of which are related to stimulus-response. In conclusion, the chromosome-level and graphic genomes of P. montana will not only facilitate the studies of evolution and metabolic regulation, but also promote the breeding of Pueraria.

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