Devereux R, Loeblich A R, Fox G E
Department of Biology, University of Houston, Texas 77204-5500.
J Mol Evol. 1990 Jul;31(1):18-24. doi: 10.1007/BF02101788.
5S rRNA sequences from six additional green algae lend strong molecular support for the major outlines of higher plant and green algae phylogeny that have been proposed under varying naming conventions by several authors. In particular, the molecular evidence now available unequivocally supports the existence of at least two well-separated divisions of the Chlorobionta: the Chlorophyta and the Streptophyta (i.e., charophytes) (according to the nomenclature of Bremer). The chlamydomonad 5S rRNAs are, however, sufficiently distinct from both clusters that it may ultimately prove preferable to establish a third taxon for them. In support of these conclusions 5S rRNA sequence data now exist for members of four diverse classes of chlorophytes. These sequences all exhibit considerably more phylogenetic affinity to one another than any of them show toward members of the other cluster, the Streptophyta, or the two Chlamydomonas strains. Among the Charophyceae, new 5S rRNA sequences are provided herein for three genera, Spirogyra, Klebsormidium, and Coleochaete. All of these sequences and the previously published Nitella sequence show greater resemblance among themselves and to the higher plants than they do to any of the other green algae examined to date. These results demonstrate that an appropriately named taxon that includes these green algae and the higher plants is strongly justified. The 5S rRNA data lack the resolution needed, however, to unequivocally determine which of several subdivisions of the charophytes is the sister group of the land plants. The evolutionary diversity of Chlamydomonas relative to the other green algae was recognized in earlier 5S rRNA studies but was unanticipated by ultrastructural work.(ABSTRACT TRUNCATED AT 250 WORDS)
来自另外六种绿藻的5S核糖体RNA序列为高等植物和绿藻系统发育的主要轮廓提供了有力的分子支持,此前已有多位作者以不同的命名法提出过这些轮廓。特别是,目前可得的分子证据明确支持绿藻门至少存在两个界限分明的分支:绿藻纲和链形植物纲(即轮藻纲)(根据布雷默的命名法)。然而,衣藻的5S核糖体RNA与这两个类群都有足够的差异,最终可能证明为它们建立第三个分类单元更为合适。为支持这些结论,目前已有四种不同绿藻纲成员的5S核糖体RNA序列数据。这些序列彼此之间的系统发育亲缘关系比它们与另一个类群链形植物纲或两种衣藻菌株的任何成员之间的关系都要密切得多。在轮藻科中,本文提供了三个属(水绵属、鞘毛藻属和鞘藻属)的新5S核糖体RNA序列。所有这些序列以及先前发表的丽藻序列彼此之间以及与高等植物的相似性都高于它们与迄今检测的任何其他绿藻的相似性。这些结果表明,一个包含这些绿藻和高等植物的恰当命名的分类单元是有充分理由的。然而,5S核糖体RNA数据缺乏明确确定轮藻纲的几个亚分支中哪一个是陆地植物姐妹群所需的分辨率。衣藻相对于其他绿藻的进化多样性在早期的5S核糖体RNA研究中就已被认识到,但超微结构研究并未预料到这一点。(摘要截短于250字)