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Population Genetic Structure and Phylogeography of Camellia flavida (Theaceae) Based on Chloroplast and Nuclear DNA Sequences

机译:基于叶绿体和核DNA序列的黄山茶的种群遗传结构和系统志

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摘要

Camellia flavida is an endangered species of yellow camellia growing in limestone mountains in southwest China. The current classification of C. flavida into two varieties, var. flavida and var. patens, is controversial. We conducted a genetic analysis of C. flavida to determine its taxonomic structure. A total of 188 individual plants from 20 populations across the entire distribution range in southwest China were analyzed using two DNA fragments: a chloroplast DNA fragment from the small single copy region and a single-copy nuclear gene called phenylalanine ammonia-lyase (PAL). Sequences from both chloroplast and nuclear DNA were highly diverse; with high levels of genetic differentiation and restricted gene flow. This result can be attributed to the high habitat heterogeneity in limestone karst, which isolates C. flavida populations from each other. Our nuclear DNA results demonstrate that there are three differentiated groups within C. flavida: var. flavida 1, var. flavida 2, and var. patens. These genetic groupings are consistent with the morphological characteristics of the plants. We suggest that the samples included in this study constitute three taxa and the var. flavida 2 group is the genuine C. flavida. The three groups should be recognized as three management units for conservation concerns.
机译:黄茶是生长在中国西南部石灰岩山区的一种黄色山茶的濒危物种。目前将黄杆菌的分类分为两个变种。 flavida和var。帕滕斯,是有争议的。我们对C. flavida进行了遗传分析,以确定其分类结构。使用两个DNA片段对来自中国西南地区整个分布范围的20个种群的188株植物进行了分析:两个小片段的叶绿体DNA片段和一个称为苯丙氨酸氨解酶(PAL)的单拷贝核基因。叶绿体和核DNA的序列差异很大。具有高水平的遗传分化和有限的基因流。该结果可归因于石灰岩喀斯特中高的生境异质性,从而使黄萎线虫种群彼此隔离。我们的核DNA结果表明,黄杆菌中存在三个分化基团:var。 flavida 1,变种。 flavida 2和var。帕滕。这些遗传分组与植物的形态特征一致。我们建议本研究中包含的样本构成三个分类单元和var。 flavida 2组是真正的C. flavida。考虑到保护问题,这三类应被确认为三个管理单位。

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