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高山植物偃麦草沿狭窄海拔梯度的局部适应与协同梯度选择

Local adaptation and cogradient selection in the alpine plant, Poa hiemata, along a narrow altitudinal gradient.

作者信息

Byars Sean G, Papst Warwick, Hoffmann Ary A

机构信息

Department of Genetics, Melbourne University, Parkville, Australia.

出版信息

Evolution. 2007 Dec;61(12):2925-41. doi: 10.1111/j.1558-5646.2007.00248.x. Epub 2007 Oct 9.

Abstract

Alpine environments are particularly susceptible to environmental changes associated with global warming but there is potential for alpine plants to adapt to warming if local adaptation occurs and gene flow allows genotypes adapted to low altitudes to colonize higher altitude sites. Here we examine the adaptive potential of a common alpine grass, Poa hiemata, within the restricted alpine habitat of Australian mountains, across a narrow altitudinal gradient replicated in three areas. Grasses at high altitude sites had shorter leaf lengths and larger circumferences than those at lower sites. Transplant experiments with clonal material and plants grown from seed indicated that these differences were partly genetic, with environmental and genetic factors both contributing to the differences between altitudes. Differences in altitudinal forms were also evident in a common garden experiment. Plants showed a home-site advantage in terms of survival. A fitness analysis indicated that at high altitude sites, selection favored plants with short leaves and larger circumferences, whereas these traits were selected in the opposite direction at the low altitude sites. These findings indicate cogradient selection and potential for both plastic and genotypic shifts in response to climate change in P. hiemata.

摘要

高山环境尤其容易受到与全球变暖相关的环境变化影响,但如果发生本地适应性变化且基因流动允许适应低海拔的基因型在更高海拔地区定殖,高山植物就有可能适应气候变暖。在此,我们研究了一种常见高山草——冬早熟禾(Poa hiemata)在澳大利亚山脉有限的高山栖息地内,跨越三个区域重复的狭窄海拔梯度的适应潜力。高海拔地区的草叶长度比低海拔地区的短,周长比低海拔地区的大。对克隆材料和种子培育的植株进行的移植实验表明,这些差异部分是由基因决定的,环境和基因因素都导致了海拔之间的差异。在一个共同花园实验中,海拔形态差异也很明显。植株在存活率方面表现出原生地优势。适应性分析表明,在高海拔地区,选择有利于叶片短且周长较大的植株,而在低海拔地区,这些性状的选择方向相反。这些发现表明存在协同梯度选择,以及冬早熟禾对气候变化做出可塑性和基因型转变的潜力。

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