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热带被子植物(爵床科)一个物种丰富且花部多样的谱系中的生殖性状替代及潜在的驱动因素

Reproductive character displacement and potential underlying drivers in a species-rich and florally diverse lineage of tropical angiosperms (; Acanthaceae).

作者信息

Tripp Erin A, Dexter Kyle G, Stone Heather B

机构信息

Department of Ecology and Evolutionary Biology University of Colorado Boulder CO USA.

Museum of Natural History University of Colorado Boulder CO USA.

出版信息

Ecol Evol. 2021 Mar 16;11(9):4719-4730. doi: 10.1002/ece3.7371. eCollection 2021 May.

Abstract

Reproductive character displacement is a pattern whereby sympatric lineages diverge more in reproductive character morphology than allopatric lineages. This pattern has been observed in many plant species, but comparably few have sought to disentangle underlying mechanisms. Here, in a diverse lineage of Neotropical plants (; Acanthaceae), we present evidence of reproductive character displacement in a macroevolutionary framework (i.e., among species) and document mechanistic underpinnings. In a series of interspecific hand pollinations in a controlled glasshouse environment, we found that crosses between species that differed more in overall flower size, particularly in style length, were significantly less likely to produce viable seeds. Further, species pairs that failed to set seed were more likely to have sympatric distributions in nature. Competition for pollinators and reinforcement to avoid costly interspecific mating could both result in these patterns and are not mutually exclusive processes. Our results add to growing evidence that reproductive character displacement contributes to exceptional floral diversity of angiosperms.

摘要

生殖性状替代是一种模式,即同域谱系在生殖性状形态上的差异比异域谱系更大。这种模式在许多植物物种中都有观察到,但相对较少有人试图厘清其潜在机制。在此,在新热带植物(爵床科)的一个多样化谱系中,我们在宏观进化框架(即物种间)中展示了生殖性状替代的证据,并记录了其机制基础。在可控温室环境下进行的一系列种间人工授粉实验中,我们发现总体花大小差异更大、尤其是花柱长度差异更大的物种间杂交产生 viable 种子的可能性显著更低。此外,未能结籽的物种对在自然界中更有可能具有同域分布。对传粉者的竞争以及为避免代价高昂的种间交配而进行的强化都可能导致这些模式,且这两个过程并非相互排斥。我们的结果进一步证明了生殖性状替代有助于被子植物异常丰富的花多样性。 (注:原文中“viable”未翻译完整,推测可能是“可育的”之类意思,这里保留英文以便准确理解原文)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5025/8093712/655efdebcac7/ECE3-11-4719-g005.jpg

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