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Functional trait heritability and local climatic adaptation among grasses: a meta-analysis

机译:函数性特性遗传性和局部气候适应草丛中:荟萃分析

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Variation in climate has been demonstrated to be a powerful driver of selection and local adaptation among plant populations. Variation in functional traits among populations can also be indicative of the drivers of local adaptation. However, it is not clear to what extent species exhibit consistent patterns of local adaptation as revealed by common, heritable trait-environment relationships among populations. To address this, we conducted a meta-analysis of common garden studies of grass populations to quantify the degree of heritability of several commonly measured functional traits, and whether demonstrated heritability was driven by climate. We found that leaf size, specific leaf area (SLA) and total biomass all displayed strong broad-sense of heritability. Both leaf area and SLA decreased significantly with increasing temperature seasonality among populations within species, while total biomass increased with increasing annual and dry season precipitation, and decreased with increasing precipitation seasonality. These results indicate similar, consistent drivers of local adaptation among species of grasses. Further information on trait-environment relationships within species could greatly improve our ability to predict broad scale patterns in functional diversity across multiple levels of ecological organization. Expanding the range of traits and regions incorporated in common garden research, in the present case by incorporating root traits and Southern Hemisphere taxa, will provide even greater benefits to the fields of restoration, conservation, and global change ecology.
机译:已经证明了气候变化是植物群中的选择和局部适应的强大驱动因素。人群中功能性状的变异也可以指示局部适应的驱动因素。然而,目前尚不清楚物种在多大程度上表现出一致的局部适应模式,如普遍,遗传性状环境关系所揭示的群体。为了解决这一点,我们对草群的共同花园研究进行了荟萃分析,以量化几种通常测量的功能性状的遗传程度,以及是否受到气候推动的遗传性。我们发现叶子尺寸,特定叶面积(SLA)和总生物量都表现出强烈的广泛遗传性。叶面积和SLA均随着物种内群体的温度季节性而显着下降,而全年生物量随着年度和干燥季节降水的增加而增加,随着降水季节性的增加而降低。这些结果表明了类似的局部适应的相似,一致的司机。关于物种中特征环境关系的进一步信息可以大大提高我们在多层生态组织中预测功能多样性的广泛规模模式的能力。通过纳入根特征和南半球分类,在当前情况下扩大了共同的花园研究中的特征和地区的范围,将为恢复,保护和全球变化生态学提供更大的益处。

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