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球状仙人掌物种复合体中的独立进化谱系揭示了智利中部生物多样性热点地区的隐藏多样性。

Independent Evolutionary Lineages in a Globular Cactus Species Complex Reveals Hidden Diversity in a Central Chile Biodiversity Hotspot.

机构信息

Departamento de Botánica, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción, Concepción 4030000, Chile.

Escuela de Química, Universidad de Costa Rica, San José 11501-2060, Costa Rica.

出版信息

Genes (Basel). 2022 Jan 27;13(2):240. doi: 10.3390/genes13020240.

Abstract

Unraveling the processes involved in the origin of a substantial fraction of biodiversity can be a particularly difficult task in groups of similar, and often convergent, morphologies. The genus (Cactaceae) might present a greater specific diversity since much of its species richness might be hidden in morphological species complexes. The aim of this study was to investigate species delimitation using the molecular data of the globose cacti " ", which harbor several populations of unclear evolutionary relationships. We ran phylogenetic inferences on 87 taxa of , including nine populations, and by analyzing three plastid noncoding introns, one plastid and one nuclear gene. Additionally, we developed 12 new pairs of nuclear microsatellites to evaluate the population-level genetic structure. We identified four groups that originated in independent cladogenetic events occurring at different temporal depths; these groups presented high genetic diversity, and their populations were genetically structured. These results suggest a complex evolutionary history in the origin of globular cacti, with independent speciation events occurring at different time spans. This cryptic richness is underestimated in the Mediterranean flora of central Chile, and thus unique evolutionary diversity could be overlooked in conservation and management actions.

摘要

在形态相似且经常趋同的类群中,揭示大量生物多样性起源所涉及的过程可能是一项特别困难的任务。属(仙人掌科)可能具有更高的物种多样性,因为其大部分物种丰富度可能隐藏在形态物种复合体中。本研究旨在利用球形仙人掌的分子数据进行物种划分,这些仙人掌包含几个进化关系不明确的种群。我们对包括 9 个种群在内的 87 个 种进行了系统发育推断,并通过分析三个质体非编码内含子、一个质体和一个核基因进行了分析。此外,我们开发了 12 对新的核微卫星来评估种群水平的遗传结构。我们确定了四个起源于不同时间深度的独立分支事件的群体;这些群体表现出高遗传多样性,其种群具有遗传结构。这些结果表明,球形仙人掌的起源具有复杂的进化历史,在不同的时间跨度内发生了独立的物种形成事件。这种隐密的丰富性在智利中部的地中海植物区系中被低估了,因此在保护和管理行动中可能会忽略独特的进化多样性。

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