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Phylogenetic utility of structural alterations found in the chloroplast genome of pear: hypervariable regions in a highly conserved genome

机译:梨的叶绿体基因组中发现的结构改变的系统发生学用途:高度保守的基因组中的高变区

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摘要

The genome structure of pear chloroplast DNA (cpDNA) is extremely highly conserved in comparison with that of other angiosperms, and therefore, relatively few phylogenetic analyses for pear (Pyrus spp.) have been carried out using cpDNA as a marker. In this study, we identified two hypervariable regions in intergenic spacers of cpDNA from 21 species in Pyrus. One of these regions is 857 bp in length and lies between the accD-psal genes, and the other is a 904-bp region between the rps16-trnQ genes. The mutation rate of gaps for the two regions was 10 and 26 times higher, respectively, than the base change rate. Twenty-five haplotypes were revealed among 21 species in Pyrus by 36 mutations found in the two regions. These included 27 gaps and 9 base changes but excluded cpSSRs. Phylogenetic relationships between the 25 haplotypes were generated by haplotype network analysis. The 25 haplotypes represented three groups (types A-C) with two large deletions, one 228 bp in length between the accD-psal genes and the other 141 bp between the rps16-trnQ genes. Types A and B consisted mostly of pears native to East and South Asia. Type C contained mainly Pyrus communis and wild relatives native to Europe, West and Central Asia, Russia, and Africa. Type B might have diverged from primitives such as pea pears in type A. Phylogenetic utility of structural alterations (gaps) occurring in the hypervariable regions of Pyrus cpDNA is discussed.
机译:与其他被子植物相比,梨叶绿体DNA(cpDNA)的基因组结构极为保守,因此,使用cpDNA作为标记物进行梨(Pyrus spp。)的系统发育分析相对较少。在这项研究中,我们从Pyrus的21种物种中鉴定了cpDNA的基因间隔区中的两个高变区。这些区域之一的长度为857 bp,位于accD-psal基因之间,另一个区域为rps16-trnQ基因之间的904 bp。这两个区域的缺口突变率分别比碱基变化率高10倍和26倍。通过在两个地区发现的36个突变,在Pyrus的21个物种中发现了25个单倍型。其中包括27个差距和9个基本更改,但不包括cpSSR。通过单倍型网络分析产生了25个单倍型之间的系统发生关系。 25个单倍型代表三组(A-C型),具有两个大的缺失,一个在accD-psal基因之间长228 bp,另一个在rps16-trnQ基因之间长141 bp。 A型和B型主要由东亚和南亚产的梨组成。 C型主要包含梨属(Pyrus communis)和欧洲,西亚和中亚,俄罗斯和非洲的野生近缘种。 B型可能与A型豌豆等原始物种有所不同。讨论了Pyrus cpDNA高变区中发生的结构改变(缺口)的系统发生学作用。

著录项

  • 来源
    《Tree Genetics & Genomes》 |2012年第2期|p.313-326|共14页
  • 作者单位

    Food Resources Education and Research Center, Kobe University,Kasai 675-2103 Hyogo, Japan;

    Engineering Headquarters, OYO Corporation,Saitama-shi 331-8688 Saitama, Japan;

    National Institute of Fruit Tree Science,National Agricultural and Food Research Organization,Tsukuba 305-8605 Ibaraki, Japan;

    College of Horticulture, Nanjing Agriculture University,Nanjing 210095, China;

    Botanical Gardens, Graduate School of Science,Osaka City University,Osaka 576-0004, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pyrus; pear; chloroplast DNA; hypervariable region; gaps; indels;

    机译:us梨;叶绿体DNA;高变区差距插入;
  • 入库时间 2022-08-18 03:45:45

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