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蓝藻主要分支的特征蛋白。

Signature proteins for the major clades of Cyanobacteria.

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, Ontario, Canada.

出版信息

BMC Evol Biol. 2010 Jan 25;10:24. doi: 10.1186/1471-2148-10-24.

Abstract

BACKGROUND

The phylogeny and taxonomy of cyanobacteria is currently poorly understood due to paucity of reliable markers for identification and circumscription of its major clades.

RESULTS

A combination of phylogenomic and protein signature based approaches was used to characterize the major clades of cyanobacteria. Phylogenetic trees were constructed for 44 cyanobacteria based on 44 conserved proteins. In parallel, Blastp searches were carried out on each ORF in the genomes of Synechococcus WH8102, Synechocystis PCC6803, Nostoc PCC7120, Synechococcus JA-3-3Ab, Prochlorococcus MIT9215 and Prochlor. marinus subsp. marinus CCMP1375 to identify proteins that are specific for various main clades of cyanobacteria. These studies have identified 39 proteins that are specific for all (or most) cyanobacteria and large numbers of proteins for other cyanobacterial clades. The identified signature proteins include: (i) 14 proteins for a deep branching clade (Clade A) of Gloebacter violaceus and two diazotrophic Synechococcus strains (JA-3-3Ab and JA2-3-B'a); (ii) 5 proteins that are present in all other cyanobacteria except those from Clade A; (iii) 60 proteins that are specific for a clade (Clade C) consisting of various marine unicellular cyanobacteria (viz. Synechococcus and Prochlorococcus); (iv) 14 and 19 signature proteins that are specific for the Clade C Synechococcus and Prochlorococcus strains, respectively; (v) 67 proteins that are specific for the Low B/A ecotype Prochlorococcus strains, containing lower ratio of chl b/a2 and adapted to growth at high light intensities; (vi) 65 and 8 proteins that are specific for the Nostocales and Chroococcales orders, respectively; and (vii) 22 and 9 proteins that are uniquely shared by various Nostocales and Oscillatoriales orders, or by these two orders and the Chroococcales, respectively. We also describe 3 conserved indels in flavoprotein, heme oxygenase and protochlorophyllide oxidoreductase proteins that are specific for either Clade C cyanobacteria or for various subclades of Prochlorococcus. Many other conserved indels for cyanobacterial clades have been described recently.

CONCLUSIONS

These signature proteins and indels provide novel means for circumscription of various cyanobacterial clades in clear molecular terms. Their functional studies should lead to discovery of novel properties that are unique to these groups of cyanobacteria.

摘要

背景

由于缺乏可靠的鉴定和划定其主要类群的标记,蓝藻的系统发育和分类学目前还知之甚少。

结果

使用基于系统基因组学和蛋白质特征的方法来描述蓝藻的主要类群。基于 44 种保守蛋白,为 44 种蓝藻构建了系统发育树。同时,对 Synechococcus WH8102、Synechocystis PCC6803、Nostoc PCC7120、Synechococcus JA-3-3Ab、Prochlorococcus MIT9215 和 Prochlor. marinus subsp. marinus CCMP1375 中的每个 ORF 进行 Blastp 搜索,以鉴定出对各种蓝藻主要类群具有特异性的蛋白质。这些研究确定了 39 种对所有(或大多数)蓝藻具有特异性的蛋白质,以及对其他蓝藻类群具有特异性的大量蛋白质。鉴定出的特征性蛋白质包括:(i)用于 Glbacter violaceus 和两个固氮性 Synechococcus 菌株(JA-3-3Ab 和 JA2-3-B'a)的深分支类群(A 类群)的 14 种蛋白质;(ii)除 A 类群外,所有其他蓝藻都存在的 5 种蛋白质;(iii)由各种海洋单细胞蓝藻(即 Synechococcus 和 Prochlorococcus)组成的一个类群(C 类群)的 60 种蛋白质;(iv)用于 C 类群 Synechococcus 和 Prochlorococcus 菌株的 14 和 19 种特征性蛋白质;(v)用于低 B/A 生态型 Prochlorococcus 菌株的 67 种蛋白质,其叶绿素 b/a2 比值较低,适应高光强度生长;(vi)用于 Nostocales 和 Chroococcales 目分别为 65 和 8 种特征性蛋白质;(vii)用于各种 Nostocales 和 Oscillatoriales 目或这两个目和 Chroococcales 目的 22 和 9 种特征性蛋白质。我们还描述了黄素蛋白、血红素加氧酶和原叶绿素氧化还原酶蛋白中特有的 3 个保守缺失/插入,这些缺失/插入分别用于 C 类群蓝藻或各种 Prochlorococcus 亚群。最近还描述了许多其他蓝藻类群的保守缺失/插入。

结论

这些特征性蛋白质和缺失/插入为用明确的分子术语划定各种蓝藻类群提供了新的方法。对它们的功能研究应该会发现这些蓝藻群体所特有的新特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35d1/2823733/ac47437ea843/1471-2148-10-24-1.jpg

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