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Phylogenetic Analyses of Meloidogyne Small Subunit rDNA

机译:根结线虫小亚基rDNA的系统发育分析

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摘要

Phylogenies were inferred from nearly complete small subunit (SSU) 18S rDNA sequences of 12 species of Meloidogyne and 4 outgroup taxa (Globodera pallida, Nacobbus abberans, Subanguina radicicola, and Zygotylenchus guevarai). Alignments were generated manually from a secondary structure model, and computationally using ClustalX and Treealign. Trees were constructed using distance, parsimony, and likelihood algorithms in PAUP* 4.0b4a. Obtained tree topologies were stable across algorithms and alignments, supporting 3 clades: clade I = [M. incognita (M. javanica, M. arenaria)]; clade II = M. duytsi and M. maritima in an unresolved trichotomy with (M. hapla, M. microtyla); and clade III = (M. exigua (M. graminicola, M. chitwoodi)). Monophyly of [(clade I, clade II) clade III] was given maximal bootstrap support (mbs). M. artiellia was always a sister taxon to this joint clade, while M. ichinohei was consistently placed with mbs as a basal taxon within the genus. Affinities with the outgroup taxa remain unclear, although G. pallida and S. radicicola were never placed as closest relatives of Meloidogyne. Our results show that SSU sequence data are useful in addressing deeper phylogeny within Meloidogyne, and that both M. ichinohei and M. artiellia are credible outgroups for phylogenetic analysis of speciations among the major species.
机译:系统发生学是从近完整的小亚基(SSU)18S rDNA序列推断的,该物种来自12种Meloidogyne和4种外群类群(Globodera pallida,Nacobbus abberans,Subanguina radicicola和Zygotylenchus guevarai)。路线是从二级结构模型手动生成的,并使用ClustalX和Treealign进行计算。在PAUP * 4.0b4a中使用距离,简约和似然算法构建树。所获得的树拓扑在算法和对齐方式上均稳定,支持3个进化枝:进化枝I = [M。隐身动物(爪哇M. arenicaria)];进化枝II = M. duytsi和M. maritima在未解决的毛细切开术中(M. hapla,M. microtyla);和进化枝III =(M. exigua(M. graminicola,M. chitwoodi))。 [[clade I,clade II] clade III]的单亲性获得了最大的自举支持(mbs)。 M. artiellia一直是这个联合进化枝的姊妹分类群,而 M。 ichinohei 始终与mbs一起作为属中的基础分类单元。尽管 G,与外群分类单元的亲缘关系仍不清楚。帕利达(Pallida) S。 radicicola 从未被定位为 Meloidogyne 的近亲。我们的结果表明,SSU序列数据可用于解决 Meloidogyne 中更深的系统发育,以及 M。 ichinohei 和M. artiellia是可靠的主要种群,可用于对主要物种的物种进行系统发育分析。

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