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基于微小环保守区域分析的植物锥虫(植生滴虫属)的合理细分

Rational sub-division of plant trypanosomes (Phytomonas spp.) based on minicircle conserved region analysis.

作者信息

Sturm Nancy R, Dollet Michel, Lukes Julius, Campbell David A

机构信息

CIRAD,UPR29 Etiologie Dépérissements, Département Systèmes Biologiques, TA A-29/F, Campus International de Baillarguet, 34398 Montpellier Cedex 5, France.

出版信息

Infect Genet Evol. 2007 Sep;7(5):570-6. doi: 10.1016/j.meegid.2007.04.002. Epub 2007 Apr 8.

Abstract

The sequences of minicircle conserved regions from various plant trypanosomatids have been determined and analyzed. The goal of this study was to add another tool to the arsenal of molecular probes for distinguishing between the different trypanosomatids occurring in plants: systemic trypanosomatids multiplying in the sap, those from the laticiferous tubes, and those developing in fruits, seeds or flowers but not in the plant itself and that are frequently considered as opportunistic insect trypanosomatids. As some plant intraphloemic trypanosomatids are the causative agents of important diseases, a clear definition of the different types of trypanosomatids is critical. The conserved region of the mitochondrial minicircle provides several specific features in a small sequence region containing three functionally elements required for minicircle replication. Trees generated from the analysis recapitulated trees drawn from analyses of isoenzymes, RAPD, and particular gene sequences, supporting the validity of the small region used in this work. Three groups of isolates were significant and in accordance with previous work. The peculiarity of phloem-restricted trypanosomatids associated with wilts of coconut and oil palm in Latin America - group H - is confirmed. In agreement with previous studies on their biological and serological properties the results highlighted this group called 'phloemicola'. It always differentiated from all other latex and fruit isolates or opportunistic trypanosomatids, like insect trypanosomatids. We can assert that phloemicola is the only well-defined taxon among all plant trypanosomatids. A group of non-pathogenic latex isolates from South American euphorbs (G), and a heterogenous group (A) including one fruit, one possible latex and one insect isolate are clearly distinct groups. The group of Mediterranean isolates from latex (D), even with a low boostrap, stood out well from other groups. The remainder of the isolates fell into a heterogeneous cluster. At least eight different groups in the plant trypanosomatids were identified.

摘要

已确定并分析了来自各种植物锥虫的微小环保守区域的序列。本研究的目的是在用于区分植物中不同锥虫的分子探针库中增加另一种工具:在树液中繁殖的系统性锥虫、来自乳汁管的锥虫,以及在果实、种子或花朵中发育但不在植物本身中发育且常被视为机会性昆虫锥虫的锥虫。由于一些植物韧皮部内的锥虫是重要疾病的病原体,因此明确不同类型锥虫的定义至关重要。线粒体微小环的保守区域在一个小序列区域中提供了几个特定特征,该区域包含微小环复制所需的三个功能元件。分析生成的树状图概括了从同工酶、随机扩增多态性DNA(RAPD)和特定基因序列分析得出的树状图,支持了本研究中使用的小区域的有效性。三组分离株具有显著性且与先前的研究一致。与拉丁美洲椰子和油棕枯萎病相关的韧皮部受限锥虫(H组)的特殊性得到了证实。与先前关于其生物学和血清学特性的研究一致,结果突出了这个被称为“韧皮部共生菌”的组。它总是与所有其他乳胶和果实分离株或机会性锥虫(如昆虫锥虫)区分开来。我们可以断言,韧皮部共生菌是所有植物锥虫中唯一定义明确的分类单元。一组来自南美大戟属植物的非致病性乳胶分离株(G组),以及一个异质组(A组),包括一个果实分离株、一个可能的乳胶分离株和一个昆虫分离株,是明显不同的组。来自乳胶的地中海分离株组(D组),即使自展值较低,也与其他组明显不同。其余分离株归入一个异质簇。在植物锥虫中至少鉴定出八个不同的组。

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