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首页> 外文期刊>Molecular phylogenetics and evolution >Molecular phylogenies of plants and Frankia support multiple origins of actinorhizal symbioses.
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Molecular phylogenies of plants and Frankia support multiple origins of actinorhizal symbioses.

机译:植物和Frankia的分子系统发育支持放线h共生的多种起源。

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摘要

Molecular phylogenetic trees were reconstructed from nucleotide sequences of nifH and 16S rDNA for Frankia and of rbcL for actinorhizal plants. Comparison of Frankia phylogenetic trees reconstructed using nifH and 16S rDNA sequences indicated that subgroupings of both trees correspond with each other in terms of plant origins of Frankia strains. The results suggested that 16S rDNAs can be utilized for coevolution analysis of actinorhizal symbioses. Frankia and plant phylogenetic trees reconstructed using 16S rDNA and rbcL sequences were compared. The comparison by tree matching and likelihood ratio tests indicated that although branching orders of both trees do not strictly correspond with each other, subgroupings of Frankia and their host plants correspond with each other in terms of symbiotic partnership. Estimated divergence times among Frankia and plant clades indicated that Frankia clades diverged more recently than plant clades. Taken together, actinorhizal symbioses originated more than three times after the four plant clades diverged. Copyright 1999 Academic Press.
机译:分子系统发育树由Frankia的nifH和16S rDNA的核苷酸序列和放线L植物的rbcL的核苷酸序列重建而成。使用nifH和16S rDNA序列重建的Frankia系统树的比较表明,这两种树的亚组在Frankia菌株的植物起源方面彼此对应。结果表明16S rDNA可用于放线菌共生酶的协同进化分析。比较了使用16S rDNA和rbcL序列重建的Frankia和植物系统树。通过树匹配和似然比测试进行的比较表明,尽管两棵树的分支顺序并不严格相互对应,但就共生共生关系而言,弗兰克亚和其寄主植物的亚组彼此对应。估计的Frankia和植物进化枝之间的发散时间表明Frankia进化枝比植物进化枝更近。综上所述,在四个植物进化枝分开后,放线菌共生起源超过三倍。版权所有1999 Academic Press。

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