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基于标本的生态优势草形态和环境分析:标本馆的力量。

Specimen-based analysis of morphology and the environment in ecologically dominant grasses: the power of the herbarium.

机构信息

Department of Biology and Natural Resources, Principia College, Elsah, IL, USA

Donald Danforth Plant Science Center, 975 North Warson Road, St Louis, MO 63132, USA.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2018 Nov 19;374(1763):20170403. doi: 10.1098/rstb.2017.0403.

Abstract

Herbaria contain a cumulative sample of the world's flora, assembled by thousands of people over centuries. To capitalize on this resource, we conducted a specimen-based analysis of a major clade in the grass tribe Andropogoneae, including the dominant species of the world's grasslands in the genera , , and several others. We imaged 186 of the 250 named species of the clade, georeferenced the specimens and extracted climatic variables for each. Using semi- and fully automated image analysis techniques, we extracted spikelet morphological characters and correlated these with environmental variables. We generated chloroplast genome sequences to correct for phylogenetic covariance and here present a new phylogeny for 81 of the species. We confirm and extend earlier studies to show that and are not monophyletic. In addition, we find all morphological and ecological characters are homoplasious but variable among clades. For example, sessile spikelet length is positively correlated with awn length when all accessions are considered, but when separated by clade, the relationship is positive for three sub-clades and negative for three others. Climate variables showed no correlation with morphological variation in the spikelet pair; only very weak effects of temperature and precipitation were detected on macrohair density.This article is part of the theme issue 'Biological collections for understanding biodiversity in the Anthropocene'.

摘要

标本馆中包含了由数千人历经数百年时间汇集而成的世界植物群累积样本。为了充分利用这一资源,我们对禾本科黍族的一个主要分支进行了基于标本的分析,其中包括了、、等几个属的世界草原优势物种。我们对该分支的 250 个命名物种中的 186 个进行了成像,对标本进行了地理定位并提取了每个物种的气候变量。我们使用半自动和全自动图像分析技术提取了小穗形态特征,并将这些特征与环境变量进行了关联。我们生成了叶绿体基因组序列来纠正系统发育协方差,并在此为 81 个物种提供了新的系统发育。我们证实并扩展了早期的研究结果,表明和不是单系的。此外,我们发现所有的形态和生态特征都是同形的,但在不同的分支中是可变的。例如,当考虑所有样本时,无梗小穗长度与芒长呈正相关,但当按分支分离时,这种关系在三个亚分支中为正相关,而在另外三个分支中为负相关。气候变量与小穗对的形态变化没有相关性;仅检测到温度和降水对宏观毛密度有非常微弱的影响。本文是“人类世生物多样性理解的生物标本收集”主题特刊的一部分。

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