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杨梅科的分子系统发育:对宿主 - 共生体特异性的重新审视。

Molecular phylogeny of Myricaceae: a reexamination of host-symbiont specificity.

作者信息

Huguet Valérie, Gouy Manolo, Normand Philippe, Zimpfer Jeff F, Fernandez Maria P

机构信息

Ecologie Microbienne, UMR CNRS 5557, Université Claude Bernard Lyon 1, 69622 Villeurbanne Cedex, France.

出版信息

Mol Phylogenet Evol. 2005 Mar;34(3):557-68. doi: 10.1016/j.ympev.2004.11.018. Epub 2005 Jan 7.

Abstract

The phylogeny of 13 species of Myricaceae, the most ancient actinorhizal family involved in a nitrogen-fixing symbiosis with the actinomycete Frankia, was established by the analysis of their rbcL gene and 18S-26S ITS. The phylogenetic position of those species was then compared to their specificity of association with Frankia in their natural habitat and to their nodulation potential determined on greenhouse-grown seedlings. The results showed that Genus Myrica, including M. gale and M. hartwegii, and Genus Comptonia, including C. peregrina, belong to a phylogenetic cluster distinct from the other Myrica species transferred in a new genus, Morella. This grouping parallels the natural specificity of each cluster with Comptonia-Myrica and Morella being nodulated by two phylogenetically divergent clusters of Frankia strains, the Alnus and Elaeagnaceae-infective strains clusters, respectively. Under laboratory conditions, Comptonia and Morella had a nodulation potential larger than under natural conditions. From this study it appears that the Myricaceae are split into two different specificity groups. It can be hypothesized that the early divergence of the genera led to the selection of genetically diverse Frankia strains which is contradictory to the earlier proposal that evolution has proceeded toward narrower promiscuity within the family.

摘要

杨梅科13个物种的系统发育关系得以确立,该科是与放线菌弗兰克氏菌进行固氮共生的最古老的放线菌根植物科,研究通过分析其rbcL基因和18S - 26S ITS来实现。随后,将这些物种的系统发育位置与其在自然栖息地中与弗兰克氏菌的共生特异性以及在温室培育幼苗上测定的结瘤潜力进行了比较。结果表明,包括香杨梅和哈氏杨梅在内的杨梅属,以及包括美洲擦木在内的擦木属,属于一个与转移到新属——杨梅属中的其他杨梅物种不同的系统发育簇。这种分组与每个簇的自然特异性相似,擦木属 - 杨梅属和杨梅属分别被弗兰克氏菌菌株的两个系统发育不同的簇——感染桤木属和胡颓子科的菌株簇——结瘤。在实验室条件下,擦木属和杨梅属的结瘤潜力比在自然条件下更大。从这项研究来看,杨梅科似乎被分为两个不同的特异性组。可以推测,这些属的早期分化导致了对遗传上不同的弗兰克氏菌菌株的选择,这与早期提出的该科内进化朝着更窄的混杂性发展的观点相矛盾。

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