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Development of genomic resources for the genus

机译:开发属的基因组资源

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摘要

Celtis is a Cannabaceae genus of 60–70 species of trees, or rarely shrubs, commonly known as hackberries. This woody genus consists of very valuable forest plants that provide important wildlife habitat for birds and mammals. Although previous studies have identified its phylogenetic position, interspecific relationships within Celtis remain unclear. In this study, we generated genome skimming data from five Celtis species to analyze phylogenetic relationships within the genus and develop genome resources. The plastomes of Celtis ranged in length from 158,989 bp to 159,082 bp, with a typical angiosperm quadripartite structure, and encoded a total of 132 genes with 20 duplicated in the IRs. Comparative analyses showed that plastome content and structure were relatively conserved. Whole plastomes showed no signs of gene loss, translocations, inversions, or genome rearrangement. Six plastid hotspot regions (trnH-psbA, psbA-trnK, trnG-trnR, psbC-trnS, cemA-petA and rps8-rpl14), 4097 polymorphic nuclear SSRs, as well as 62 low or single-copy gene fragments were identified within Celtis. Moreover, the phylogenetic relationships based on the complete plastome sequences strongly endorse the placement of C. biondii as sister to the ((((C. koraiensis, C. sinensis), C. tetrandra), C. julianae), C. cerasifera) clade. These findings and the genetic resources developed here will be conducive to further studies on the genus Celtis involving phylogeny, population genetics, and conservation biology.
机译:Celtis是一种60-70种树木的大麻属,或很少灌木,通常称为扁平。这种木质属属由非常有价值的森林植物组成,为鸟类和哺乳动物提供重要的野生动物栖息地。尽管之前的研究已经确定了其系统发育位置,但Celtis内的间隙关系仍然不明确。在这项研究中,我们从五个Celtis物种中产生了基因组撇杀数据,以分析了属的系统发育关系,并发展基因组资源。 Celtis的塑料长度为158,989bp至159,082bp,具有典型的血管族Quadriparte结构,并在IRS中编码了20个重复的132个基因。比较分析表明,塑性含量和结构相对节省。整个塑料显示没有基因损失,易位,倒置或基因组重排的迹象。在Celtis内鉴定了六个塑性热点区域(TRNH-PSBA,PSBA-TRNK,TRNG-TRNR,PSBC-TRNS,CEMA-PETA和RPS8-RPL14),4097个多态性核SSR,以及62个低或单拷贝基因片段。此外,基于完全塑性序列的系统发育关系强烈支持将C. Biondii作为姐妹的置入((((((((((((((((((()((((((((()),C.Tetrandra),C. casifera),C. cerasifera)思工。这些发现和在此开发的遗传资源有利于进一步研究涉及文学,群体遗传学和保护生物学的Celtis。

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