珊瑚礁生物多样性特征:中太平洋Palmyra环礁短爪蟹的遗传物种划分。

Jennifer A Servis, Brendan N Reid, Molly A Timmers, Vasiliki Stergioula, Eugenia Naro-Maciel
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引用次数: 6

摘要

珊瑚礁是受到高度威胁的生态系统,但在对其正在消失的生物多样性进行清查方面存在许多挑战,部分原因是许多分类群仍然难以发现和描述。遗传物种划分方法为分类分类提供了一种标准化的方法,包括隐蔽的、罕见的或难以捉摸的类群,但结果可能因分析方法和遗传标记而异。本研究采用形态鉴定和遗传鉴定相结合的方法,对真蟹(下目:短尾蟹;n = 200)来自太平洋中部巴尔米拉环礁的珊瑚礁。遗传鉴定是基于线粒体16S核糖体RNA (16S rRNA)和/或细胞色素c氧化酶亚基I (COI)序列与GenBank数据的匹配,而形态学工作则依赖于分类学文献。通过遗传距离阈值和基于树的方法划分的候选物种数量大致一致,尽管多速率泊松树过程(mPTP)不太适合该数据集。COI序列鉴定临时种30 ~ 32种,16S序列鉴定临时种34 ~ 35种。用至少两种方法证实了巴尔米拉短爪目动物有10科20属19种的存在。绿藻的多样性水平表明在目前集中的分类群中可能存在未描述或隐种。这些结果说明了DNA序列在识别生物和检测隐性变异方面的有效性,并强调了使用适当的遗传标记和多物种划分分析的重要性,并为未来的物种描述提供了应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterizing coral reef biodiversity: genetic species delimitation in brachyuran crabs of Palmyra Atoll, Central Pacific.

Coral reefs are highly threatened ecosystems, yet there are numerous challenges in conducting inventories of their vanishing biodiversity, partly because many taxa remain difficult to detect and describe. Genetic species delimitation methods provide a standardized means for taxonomic classification including of cryptic, rare, or elusive groups, but results can vary by analytical method and genetic marker. In this study, a combination of morphological and genetic identification methods was used to estimate species richness and identify taxonomic units in true crabs (Infraorder Brachyura; n = 200) from coral reefs of Palmyra Atoll, Central Pacific. Genetic identification was based on matches between mitochondrial 16S ribosomal RNA (16S rRNA) and/or cytochrome c oxidase subunit I (COI) sequences to GenBank data, while morphological work relied on the taxonomic literature. Broad agreement in the number of candidate species delimited by genetic distance thresholds and tree-based approaches was found, although the multi-rate Poisson tree process (mPTP) was less appropriate for this dataset. The COI sequence data identified 30-32 provisional species and the 16S data revealed 34-35. The occurrence of 10 families, 20 genera, and 19 species of brachyurans at Palmyra was corroborated by at least two methods. Diversity levels within Chlorodiella laevissima indicated possible undescribed or cryptic species in currently lumped taxa. These results illustrate the efficacy of DNA sequences in identifying organisms and detecting cryptic variation, and underscore the importance of using appropriate genetic markers and multiple species delimitation analyses, with applications for future species descriptions.

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