首页> 外文期刊>BMC Plant Biology >Comparative mitogenomics indicates respiratory competence in?parasitic Viscum despite?loss of complex I?and extreme sequence?divergence, and reveals horizontal gene transfer and remarkable?variation in genome size
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Comparative mitogenomics indicates respiratory competence in?parasitic Viscum despite?loss of complex I?and extreme sequence?divergence, and reveals horizontal gene transfer and remarkable?variation in genome size

机译:比较的线粒体基因组学表明,尽管失去了复杂的I和极端的序列差异,但寄生虫的呼吸能力却有所提高,并且揭示了水平基因转移和基因组大小的显着变化。

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Background Aerobically respiring eukaryotes usually contain four respiratory-chain complexes (complexes I-IV) and an ATP synthase (complex V). In several lineages of aerobic microbial eukaryotes, complex I has been lost, with an alternative, nuclear-encoded NADH dehydrogenase shown in certain cases to bypass complex I and oxidize NADH without proton translocation. The first loss of complex I in any multicellular eukaryote was recently reported in two studies; one sequenced the complete mitogenome of the hemiparasitic aerial mistletoe, Viscum scurruloideum , and the other sequenced the V. album mitogenome. The V. scurruloideum study reported no significant additional loss of mitochondrial genes or genetic function, but the V. album study postulated that mitochondrial genes encoding all ribosomal RNAs and proteins of all respiratory complexes are either absent or pseudogenes, thus raising questions as to whether the mitogenome and oxidative respiration are functional in this plant. Results To determine whether these opposing conclusions about the two Viscum mitogenomes reflect a greater degree of reductive/degenerative evolution in V. album or instead result from interpretative and analytical differences, we reannotated and reanalyzed the V. album mitogenome and compared it with the V. scurruloideum mitogenome. We find that the two genomes share a complete complement of mitochondrial rRNA genes and a typical complement of genes encoding respiratory complexes II-V. Most Viscum mitochondrial protein genes exhibit very high levels of divergence yet are evolving under purifying, albeit relaxed selection. We discover two cases of horizontal gene transfer in V. album and show that the two Viscum mitogenomes differ by 8.6-fold in size (66?kb in V. scurruloideum ; 565?kb in V. album ). Conclusions Viscum mitogenomes are extraordinary compared to other plant mitogenomes in terms of their wide size range, high rates of synonymous substitutions, degree of relaxed selection, and unprecedented loss of respiratory complex I. However, contrary to the initial conclusions regarding V. album , both Viscum mitogenomes possess conventional sets of rRNA and, excepting complex I, respiratory genes. Both plants should therefore be able to carry out aerobic respiration. Moreover, with respect to size, the V. scurruloideum mitogenome has experienced a greater level of reductive evolution.
机译:背景有氧呼吸的真核生物通常包含四种呼吸链复合物(复合物I-IV)和ATP合酶(复合物V)。在好氧微生物真核生物的多个谱系中,复合物I丢失了,在某些情况下还显示了另一种核编码的NADH脱氢酶,可以绕过复合物I并氧化NADH而无质子转运。最近有两项研究报道了在任何多细胞真核生物中复合物I的首次丢失。一个测序了半寄生空中槲寄生的完整的有丝分裂基因组,Viscum scurruloideum,另一个测序了V. album的有丝分裂基因组。 V. scurruloideum研究报告没有明显的线粒体基因或遗传功能的额外损失,但V. Album研究假定编码所有核糖体RNA的线粒体基因和所有呼吸复合体的蛋白质都不存在或为假基因,因此引发了关于有丝分裂基因组和氧化呼吸在该植物中起作用。结果为了确定关于两个Viscum有丝分裂基因组的这些相反结论是否反映了V. Album的还原/变性进化程度更高,或者相反是解释性和分析性差异的结果,我们重新注释和重新分析了V. album mitogenome,并将其与V.鞘膜有丝分裂基因组。我们发现这两个基因组共享线粒体rRNA基因的完整互补和编码呼吸复合物II-V的基因的典型互补。大多数Viscum线粒体蛋白基因表现出很高的差异性,尽管选择放松,但仍在纯化条件下发展。我们在V. album中发现了两个水平基因转移的案例,并显示了两个Viscum有丝分裂基因组的大小相差8.6倍(V. scuruloideum中为66?kb; V。Album中为565?kb)。结论相比于其他植物有丝分裂基因组,Viscum有丝分裂基因组在尺寸范围广,同义替换率高,选择程度宽松和呼吸道复杂性I的空前丧失方面非同一般。但是,与关于V. album的初步结论相反,两者Viscum mitogenomes具有常规的rRNA集,除了复杂的I外,还具有呼吸基因。因此,两种植物都应能够进行有氧呼吸。此外,就大小而言,S。scuruloideum有丝分裂基因组经历了更高水平的还原进化。

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