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How endogenous plant pararetroviruses shed light on Musa evolution

机译:内源植物副逆转录病毒如何阐明Musa的进化

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摘要

>Background and Aims Banana genomes harbour numerous copies of viral sequences derived from banana streak viruses (BSVs) – dsDNA viruses belonging to the family Caulimoviridae. These viral integrants (eBSVs) are mostly defective, probably as a result of ‘pseudogenization’ driven by host genome evolution. However, some can give rise to infection by releasing a functional viral genome following abiotic stresses. These distinct infective eBSVs correspond to the three main widespread BSV species (BSOLV, BSGFV and BSIMV), fully described within the Musa balbisiana B genomes of the seedy diploid ‘Pisang Klutuk Wulung’ (PKW).>Methods We characterize eBSV distribution among a Musa sampling including seedy BB diploids and interspecific hybrids with Musa acuminata exhibiting different levels of ploidy for the B genome (ABB, AAB, AB). We used representative samples of the two areas of sympatry between M. acuminata and M. balbisiana species representing the native area of the most widely cultivated AAB cultivars (in India and in East Asia, ranging from the Philippines to New Guinea). Seventy-seven accessions were characterized using eBSV-related PCR markers and Southern hybridization approaches. We coded both sets of results to create a common dissimilarity matrix with which to interpret eBSV distribution.>Key Results We propose a Musa phylogeny driven by the M. balbisiana genome based on a dendrogram resulting from a joint neighbour-joining analysis of the three BSV species, showing for the first time lineages between BB and ABB/AAB hybrids. eBSVs appear to be relevant phylogenetic markers that can illustrate the M. balbisiana phylogeography story.>Conclusion The theoretical implications of this study for further elucidation of the historical and geographical process of Musa domestication are numerous. Discovery of banana plants with B genome non-infective for eBSV opens the way to the introduction of new genitors in programmes of genetic banana improvement.
机译:>背景和目标:香蕉基因组包含大量拷贝的病毒序列,这些病毒序列来自香蕉条纹病毒(BSV)–属于Caulimoviridae家族的dsDNA病毒。这些病毒整合物(eBSV)大多是有缺陷的,可能是宿主基因组进化驱动的“假生化”的结果。但是,有些生物可通过在非生物胁迫后释放功能性病毒基因组来引起感染。这些独特的感染性eBSV对应于三个主要的广泛BSV物种(BSOLV,BSGFV和BSIMV),在有种子的二倍体'Pisang Klutuk Wulung'(PKW)的Musa balbisiana B基因组中有完整描述。>方法表征eBSV在Musa采样中的分布,包括种子BB二倍体和种间杂种,其中Musa acuminata对B基因组表现出不同水平的倍性(ABB,AAB,AB)。我们使用了尖锐梭状芽胞杆菌和巴尔比索氏梭菌之间两个交界区域的代表性样本,这些物种代表了最广泛种植的AAB品种的本地区域(在印度和东亚,从菲律宾到新几内亚)。使用eBSV相关的PCR标记和Southern杂交方法对77个登录号进行了表征。我们对这两组结果进行了编码,以创建一个通用的相异矩阵来解释eBSV的分布。>关键结果:我们提出了一种由巴尔比西亚分枝杆菌基因组驱动的穆萨系统发育的系统树,该树状图来自于一个联合邻居-三种BSV物种的结合分析,首次显示BB和ABB / AAB杂种之间的谱系。 eBSVs似乎是相关的系统发育标记,可以说明巴尔比西亚分支杆菌的系统地理学故事。>结论本研究对于进一步阐明穆萨驯化的历史和地理过程具有许多理论意义。发现具有对eBSV无感染力的B基因组的香蕉植物,为在遗传香蕉改良计划中引入新的祖先打开了道路。

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