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多倍体复合体中细胞型间局部适应性的实验测试。

An experimental test of local adaptation among cytotypes within a polyploid complex.

作者信息

McIntyre Patrick J, Strauss Sharon

机构信息

Section of Ecology and Evolution, University of California Davis, 2320 Storer Hall, One Shields Avenue, Davis, California, 95616.

Center for Population Biology, University of California Davis, 2320 Storer Hall, One Shields Avenue, Davis, California, 95616.

出版信息

Evolution. 2017 Aug;71(8):1960-1969. doi: 10.1111/evo.13288. Epub 2017 Jun 16.

Abstract

The geographic distributions of polyploids suggest they can have distinct and sometimes broader niches compared to diploids. However, relatively few field experiments have investigated whether range differences are associated with local adaptation or reflect other processes, such as dispersal limitation. In three years of transplants across the elevational ranges of five cytotypes in the Claytonia perfoliata complex, we found evidence for local adaptation. In at least one study year germination was higher within the natural range for each cytotype, and four of the five cytotypes attained larger biomass within their natural range. Fitness within and beyond range varied across years, with two instances of cytotypes showing higher fitness beyond the range, highlighting a potential role of temporal variability in cytotype differentiation. Polyploids as a group did not outperform diploids, but the cytotype with highest fitness across environments was a hexaploid reported to be invasive. Our results suggest that differences in geographic ranges within the C. perfoliata complex reflect local adaptation of cytotypes. Although we did not find a general polyploid advantage, our findings support the idea that occasional polyploid cytotypes exhibit high fitness relative to other cytotypes, and contribute to growing evidence supporting ecological differentiation of cytotypes within polyploid complexes.

摘要

多倍体的地理分布表明,与二倍体相比,它们可能具有独特的生态位,有时生态位更宽泛。然而,相对较少的田间实验研究了分布范围的差异是否与局部适应性相关,或者是否反映了其他过程,如扩散限制。在对穿孔叶春美草复合体中五种细胞型的海拔范围进行了三年的移植实验中,我们发现了局部适应性的证据。在至少一个研究年份中,每种细胞型在其自然分布范围内的发芽率更高,并且五种细胞型中有四种在其自然分布范围内获得了更大的生物量。分布范围内外的适合度随年份变化,有两个细胞型实例显示在分布范围外具有更高的适合度,这突出了时间变异性在细胞型分化中的潜在作用。作为一个群体,多倍体并不比二倍体表现更优,但在各种环境中适合度最高的细胞型是一种据报道具有入侵性的六倍体。我们的结果表明,穿孔叶春美草复合体内地理分布范围的差异反映了细胞型的局部适应性。虽然我们没有发现多倍体的普遍优势,但我们的研究结果支持这样一种观点,即偶尔出现的多倍体细胞型相对于其他细胞型表现出较高的适合度,并为支持多倍体复合体内细胞型生态分化的越来越多的证据做出了贡献。

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