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Using an integrated approach to identify cryptic species, divergence patterns and hybrid species in Asian ladies' tresses orchids (Spiranthes, Orchidaceae)

机译:使用综合方法来识别亚洲女士发辫兰花(SpirAnthes,Orchidaceae)中的隐秘物种,分歧模式和杂种种类

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Spiranthes (similar to 36 species, Orchidaceae) is a small genus with a global distribution. It has a center of diversity in North America with only a few species occurring in Asia. This study focuses on the Asian Spiranthes with an emphasis on understanding their biogeographic relationships and species delimitations using molecular markers. Our phylogenetic trees based on nuclear (ITS) and chloroplast (trnL-trnLF, matK and trnS-G) sequences from samples across their range in Asia revealed the Asian Spiranthes are monophyletic. Ancestral area optimization suggested that North America forms the ancestral region for the Asian Spiranthes rather than Europe suggesting that they originated from a single long-distance dispersal event. Our study also revealed the presence of a cryptic species S. himalayensis, which was discovered based on molecular data thus emphasizing the importance of wide geographical sampling in phylogenetic studies. Sequences of cloned ITS provided support for the hypothesis that natural hybridization between S. sinensis and the newly described S. himalayensis resulted in the allotetraploid S. hongkongensis, with S. himalayensis as the paternal parent. One of the species complexes known in Asia is the S. sinensis complex, which shows a wide occurrence and is known for local geographical variants. Some of these variants have been described as new species in Australia and New Zealand. Our studies show that all the sampled variants including the Australian and New Zealand species show monophyly despite having long branches. This suggests that there may be high rates of gene flow between the geographically distinct forms resulting in lack of species resolution within the S. sinensis complex.
机译:SpirAnthes(类似于36种,兰氏菌)是全球分布的小属。它在北美拥有多样性,亚洲只有几种物种。这项研究侧重于亚洲螺旋体,重点是使用分子标记来了解其生物地理关系和物种分歧。我们在亚洲范围内的样品中的基于核(ITS)和叶绿体(TRNL-TRNLF,MATK和TRNS-G)序列的系统发育树揭示了亚洲螺旋型单位。祖先地区优化建议北美为亚洲螺旋的祖先地区而不是欧洲建议他们源于单个长途分散事件。我们的研究还揭示了基于分子数据发现的神秘物种S. Himalayensis的存在,从而强调了广泛的地理抽样在系统发育研究中的重要性。克隆的序列提供了对假设的假设,即S.Inensis与新描述的S. Himalayensis之间的自然杂交导致Allotetraloploid S. hongkongensis,与Himalayensis作为父母父母。亚洲中已知的一个物种复合物是S. Sinensis综合体,其显示出广泛的发生,以局部地理变异而闻名。这些变种中的一些已被描述为澳大利亚和新西兰的新物种。我们的研究表明,尽管有长分支,但包括澳大利亚和新西兰物种在内的所有采样的变体都会展示。这表明在地理上不同的形式之间可能存在高率的基因流量,导致S.Sinensis复合物中缺乏物种分辨率。

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