Besleria 属(Gesneriaceae)的系统发生学、特征进化和历史生物地理学

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Gabriel E Ferreira, John L Clark, Laura Clavijo, Alejandro Zuluaga, Alain Chautems, Michael J G Hopkins, Andrea O Araujo, Mathieu Perret
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引用次数: 0

摘要

Besleria 属是生长在热带雨林林下的多年生草本、灌木或小乔木,是新热带 Gesneriaceae 中最大的属之一,有 165 多个物种。尽管Besleria在雨林生态系统中具有重要的生态意义且无处不在,但对其分类和进化的研究却十分有限。在此,我们利用四个核DNA和叶绿体DNA区域(ITS、matK、rps16和trnL-trnF)对Besleria进行了系统进化分析,这些区域覆盖了50%以上的已知物种,并利用两个次级校准点来推断其分化时间。我们的研究结果支持 Besleria 的单系,并使我们能够修订该属的下属分类和生物地理历史。我们发现了五个主要支系,它们与以前分类中的部分或分支并不对应。这些支系在地理上有明确的界限,但仍很难用以前假设的形态特征来描述其特征。生物地理学重建表明,它们起源于中新世中期(约 15 Mya)的安第斯山脉北部。地质和气候事件,特别是安第斯山隆升和巴拿马地峡的形成,对该植物群目前的分布模式产生了重大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phylogenetics, character evolution, and historical biogeography of the Neotropical genus Besleria (Gesneriaceae)
Besleria, a genus of perennial herbs, shrubs, or small trees growing in the understorey of rainforests, is one of the largest genera of neotropical Gesneriaceae, with over 165 species. Despite the ecological importance and ubiquity of Besleria in rainforest ecosystems, taxonomic and evolutionary studies of Besleria are limited. Here, we generated a phylogenetic analysis of Besleria using four nuclear and chloroplast DNA regions (ITS, matK, rps16, and trnL-trnF) covering more than 50% of the recognized species, along with two secondary calibration points to infer divergence times. Our results support the monophyly of Besleria and allowed us to revise the infrageneric classification and biogeographical history of the genus. We identified five major clades that do not correspond to sections or subsections in previous classifications. These clades are well circumscribed geographically but remain difficult to characterize using previously hypothesized morphological characters. Biogeographical reconstructions indicate an origin in the northern Andes during the Middle Miocene (ca. 15 Mya). The current distribution patterns of this plant group have been significantly shaped by geological and climatic events, particularly Andean uplift and the formation of the Panama Isthmus.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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