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质体系统基因组学对云实亚科(豆科)进化的见解

Plastid phylogenomic insights into the evolution of subfamily Dialioideae (Leguminosae).

作者信息

Bai Han-Rui, Oyebanji Oyetola, Zhang Rong, Yi Ting-Shuang

机构信息

Germplasm Bank of Wild Species, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, Yunnan, 650201, China.

College of Life Science, Yunnan University, Kunming, Yunnan, 650201, China.

出版信息

Plant Divers. 2020 Jul 15;43(1):27-34. doi: 10.1016/j.pld.2020.06.008. eCollection 2021 Feb.

Abstract

The subfamily Dialioideae (Leguminosae) consists of 17 genera and about 85 species. Previous studies have detected significant plastid genome (plastome) structure variations in legumes, particularly in subfamilies Papilionoideae and Caesalpinioideae. Hence it is important to investigate plastomes from the newly recognized Dialioideae to better understand the plastome variation across the whole family. Here, we used nine plastomes representing nine genera of Dialioideae to explore plastome structural variation and intergeneric relationships in this subfamily. All plastomes of Dialioideae exhibited a typical quadripartite structure, and had relatively conserved structure compared with other legume subfamilies. However, the genome size ranged from 154,124 bp to 165,973 bp and gene numbers ranged from 129 to 132, mainly due to the expansion and contraction of the inverted repeat (IR) regions. The IR of s has experienced two separate expansions into the large single copy (LSC) region and the small single copy (SSC) region, and one contraction from SSC. has experienced two separate IR expansions into LSC, while has experienced an IR contraction from LSC. Highly divergent regions or genes (- ,- ,-,-,, , ,'- and ) were identified as potential molecular markers for further species delimitation and population genetics analysis in legumes. Phylogenetic analysis based on 77 protein-coding sequences fully resolved the intergeneric relationships among nine genera except a moderately supported sister relationship between and . Our study reveals new insights into the structural variations of plastomes in subfamily Dialioideae and advances our understanding of the evolutionary trajectories of legume plastomes.

摘要

蝶形花亚科(豆科)由17个属和约85个物种组成。先前的研究已经在豆科植物中检测到显著的质体基因组(质体基因组)结构变异,特别是在蝶形花亚科和云实亚科中。因此,研究新确认的蝶形花亚科的质体基因组对于更好地理解整个豆科的质体基因组变异非常重要。在这里,我们使用了代表蝶形花亚科九个属的九个质体基因组来探索该亚科的质体基因组结构变异和属间关系。蝶形花亚科的所有质体基因组都表现出典型的四分体结构,与其他豆科亚科相比结构相对保守。然而,基因组大小从154,124 bp到165,973 bp不等,基因数量从129个到132个不等,主要是由于反向重复(IR)区域的扩张和收缩。s的IR经历了两次分别向大单拷贝(LSC)区域和小单拷贝(SSC)区域的扩张,以及一次从SSC的收缩。 经历了两次分别向LSC的IR扩张,而 经历了一次从LSC的IR收缩。高度分化的区域或基因(- ,- ,- ,- ,, , ,'- 和 )被确定为豆科植物进一步物种界定和群体遗传学分析的潜在分子标记。基于77个蛋白质编码序列的系统发育分析完全解决了九个属之间的属间关系,除了 和 之间有一个支持度中等的姐妹关系。我们的研究揭示了蝶形花亚科质体基因组结构变异的新见解,并推进了我们对豆科质体基因组进化轨迹的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ae2/7987570/f3a7f38a3f0f/gr1.jpg

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