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Evolutionary potential and adaptation of Banksia attenuata (Proteaceae) to climate and fire regime in southwestern Australia, a global biodiversity hotspot

机译:全球西南生物多样性热点地区澳大利亚西南部的细亚目(Proteaceae)的进化潜力和适应性

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摘要

Substantial climate changes are evident across Australia, with declining rainfall and rising temperature in conjunction with frequent fires. Considerable species loss and range contractions have been predicted; however, our understanding of how genetic variation may promote adaptation in response to climate change remains uncertain. Here we characterized candidate genes associated with rainfall gradients, temperatures, and fire intervals through environmental association analysis. We found that overall population adaptive genetic variation was significantly affected by shortened fire intervals, whereas declining rainfall and rising temperature did not have a detectable influence. Candidate SNPs associated with rainfall and high temperature were diverse, whereas SNPs associated with specific fire intervals were mainly fixed in one allele. Gene annotation further revealed four genes with functions in stress tolerance, the regulation of stomatal opening and closure, energy use, and morphogenesis with adaptation to climate and fire intervals. B. attenuata may tolerate further changes in rainfall and temperature through evolutionary adaptations based on their adaptive genetic variation. However, the capacity to survive future climate change may be compromised by changes in the fire regime.
机译:在澳大利亚,明显的气候变化是显而易见的,降雨减少,气温升高以及频繁发生火灾。预计会有大量的物种损失和范围缩小;但是,我们对遗传变异如何促进适应气候变化的理解尚不确定。在这里,我们通过环境关联分析来表征与降雨梯度,温度和着火间隔相关的候选基因。我们发现总的群体适应性遗传变异受缩短的火灾间隔显着影响,而降雨减少和温度升高并没有可检测的影响。与降雨和高温相关的候选SNPs多种多样,而与特定射击间隔相关的SNPs主要固定在一个等位基因中。基因注释进一步揭示了四个基因,这些基因在胁迫耐受性,气孔打开和关闭,能量利用和形态发生的功能上具有适应气候和火灾间隔的功能。衰减双歧杆菌可基于其适应性遗传变异通过进化适应来耐受降雨和温度的进一步变化。但是,火灾状况的变化可能会损害未来应对气候变化的能力。

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