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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Loss of all plastid ndh genes in Gnetales and conifers: extent and evolutionary significance for the seed plant phylogeny.
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Loss of all plastid ndh genes in Gnetales and conifers: extent and evolutionary significance for the seed plant phylogeny.

机译:Gnetales和针叶树中所有质体ndh基因的丧失:种子植物系统发育的程度和进化意义。

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摘要

The exact phylogenetic position of Gnetales, a small, highly modified group of gymnosperms with an accelerated rate of molecular evolution, is one of the most challenging issues for seed plant systematics. Recent results from entire plastid genome (ptDNA) sequencing revealed the absence of the entire suite of plastid ndh genes in several species of Gnetales and the pine family (Pinaceae) potentially highlighting a major structural feature linking these two groups-concerted loss of all plastid genes for the NADH dehydrogenase complex. However, the precise extent of ndh gene loss in gymnosperms has not been surveyed. Using a slot-blot hybridization method, we probed all 11 ndh genes in 162 species from 70 of 85 gymnosperm genera. We find that all ndh genes are absent across Gnetales and Pinaceae, but not in any other group of gymnosperms. This feature represents either a major synapomorphy for a clade consisting of these two lineages or, less likely, a convergent loss. Our survey substantially extends previous inferences based on more limited sampling and, if the former evolutionary interpretation is correct, it provides additional support for the contentious "gnepine" hypothesis, which places Gnetales as sister to Pinaceae.
机译:Gnetales的确切系统发育位置是一小类,高度修饰的裸子植物群,具有加快的分子进化速率,是种子植物系统研究中最具挑战性的问题之一。整个质体基因组(ptDNA)测序的最新结果表明,几种Gnetales和松科(Pinaceae)中不存在完整的质体ndh基因组,这可能凸显了连接这两个组的所有质体基因损失的主要结构特征用于NADH脱氢酶复合物。但是,尚未研究裸子植物中ndh基因丢失的确切程度。使用缝隙杂交方法,我们从85个裸子植物属中的70个中探测了162个物种中的所有11个ndh基因。我们发现在Gnetales和Pinaceae中没有所有的ndh基因,但是在裸子植物的任何其他类中都不存在。此特征代表由这两个谱系组成的进化枝的主要同形异能,或者不太可能是会聚性丧失。我们的调查在很大程度上基于更有限的采样来扩展先前的推论,如果以前的进化解释正确,它将为有争议的“尼尼平”假设提供额外的支持,该假设将Gnetales定位为松科的姐妹。

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