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[物种名称]质体基因组的特征分析及[物种名称]八个物种的比较分析。 (注:原文中两个“[物种名称]”处信息缺失,需根据实际情况补充完整)

Characterization of the plastome of and comparative analysis of eight species of .

作者信息

Sandoval-Padilla Isaac, Zamora-Tavares María Del Pilar, Ruiz-Sánchez Eduardo, Pérez-Alquicira Jessica, Vargas-Ponce Ofelia

机构信息

Doctorado en Ciencias en Biosistemática, Ecología y Manejo de Recursos Naturales y Agrícolas, Centro Universitario de Ciencias Biológicas y Agropecuarias, Universidad de Guadalajara, Ramón Padilla Sánchez 2100, 45200 Las Agujas, Zapopan, Jalisco, Mexico Universidad de Guadalajara Zapopan Mexico.

Laboratorio Nacional de Identificación y Caracterización Vegetal A(LaniVeg), Consejo Nacional de Ciencia y Tecnología (CONACyT), Universidad de Guadalajara, Ramón Padilla Sánchez 2100, 45200 Las Agujas, Zapopan, Jalisco, Mexico CONACYT Mexico City Mexico.

出版信息

PhytoKeys. 2022 Oct 5;210:109-134. doi: 10.3897/phytokeys.210.85668. eCollection 2022.

Abstract

In this study, we sequenced, assembled, and annotated the plastome of Mill. and compared it with seven species of the genus Sequencing, annotating, and comparing plastomes allow us to understand the evolutionary mechanisms associated with physiological functions, select possible molecular markers, and identify the types of selection that have acted in different regions of the genome. The plastome of is 157,000 bp long and presents the typical quadripartite structure with a large single-copy (LSC) region of 87,267 bp and a small single-copy (SSC) region of 18,501 bp, which are separated by two inverted repeat (IRs) regions of 25,616 bp each. These values are similar to those found in the other species, except for L. and L., which presented an expansion of the LSC region and a contraction of the IR regions. The plastome in all species studied shows variation in the boundary of the regions with three distinct types, the percentage of the sequence identity between coding and non-coding regions, and the number of repetitive regions and microsatellites. Four genes and 10 intergenic regions show promise as molecular markers and eight genes were under positive selection. The maximum likelihood analysis showed that the plastome is a good source of information for phylogenetic inference in the genus, given the high support values and absence of polytomies. In the plastomes analyzed here, the differences found, the positive selection of genes, and the phylogenetic relationships do not show trends that correspond to the biological or ecological characteristics of the species studied.

摘要

在本研究中,我们对Mill.的质体基因组进行了测序、组装和注释,并将其与该属的七个物种进行了比较。对质体基因组进行测序、注释和比较,使我们能够了解与生理功能相关的进化机制,选择可能的分子标记,并确定在基因组不同区域起作用的选择类型。Mill.的质体基因组长度为157,000 bp,呈现典型的四分体结构,有一个87,267 bp的大单拷贝(LSC)区域和一个18,501 bp的小单拷贝(SSC)区域,它们被两个各为25,616 bp的反向重复(IR)区域隔开。这些值与在其他物种中发现的值相似,但L.和L.除外,它们的LSC区域有扩张,IR区域有收缩。在所研究的所有物种的质体基因组中,区域边界存在三种不同类型的变异、编码区和非编码区之间的序列同一性百分比以及重复区域和微卫星的数量。四个基因和10个基因间隔区有望作为分子标记,并且有八个基因受到正选择。最大似然分析表明,鉴于高支持值和不存在多歧分支,质体基因组是该属系统发育推断的良好信息来源。在这里分析的质体基因组中,发现的差异、基因的正选择以及系统发育关系并未显示出与所研究物种的生物学或生态特征相对应的趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa23/9836641/d03b0732490b/phytokeys-210-109_article-85668__-g001.jpg

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