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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Increased susceptibility to fungal disease accompanies adaptation to drought in Brassica rapa
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Increased susceptibility to fungal disease accompanies adaptation to drought in Brassica rapa

机译:甘蓝型油菜对真菌疾病的敏感性增加并适应干旱

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Recent studies have demonstrated adaptive evolutionary responses to climate change, but little is known about how these responses may influence ecological interactions with other organisms, including natural enemies. We used a resurrection experiment in the greenhouse to examine the effect of evolutionary responses to drought on the susceptibility of Brassica rapa plants to a fungal pathogen, Alternaria brassicae. In agreement with previous studies in this population, we found an evolutionary shift to earlier flowering postdrought, which was previously shown to be adaptive. Here, we report the novel finding that postdrought descendant plants were also more susceptible to disease, indicating a rapid evolutionary shift to increased susceptibility. This was accompanied by an evolutionary shift to increased specific leaf area (thinner leaves) following drought. We found that flowering time and disease susceptibility displayed plastic responses to experimental drought treatments, but that this plasticity did not match the direction of evolution, indicating that plastic and evolutionary responses to changes in climate can be opposed. The observed evolutionary shift to increased disease susceptibility accompanying adaptation to drought provides evidence that even if populations can rapidly adapt in response to climate change, evolution in other traits may have ecological effects that could make species more vulnerable.
机译:最近的研究表明对气候变化具有适应性的进化反应,但是人们对这些反应如何影响与其他生物(包括天敌)的生态相互作用知之甚少。我们在温室中使用了复活实验,以研究干旱对甘蓝型油菜植物对真菌病原体-交链孢菌的敏感性的进化反应的影响。与先前对该种群的研究相一致,我们发现向早期开花后干旱的进化转变已被证明具有适应性。在这里,我们报道了一个新发现,即干旱后代植物也更容易患病,表明其向易感性的快速进化转变。这伴随着干旱后向比叶面积(稀叶)增加的进化转变。我们发现开花时间和疾病易感性显示出对实验干旱处理的可塑性响应,但是这种可塑性与进化方向不匹配,表明可逆性对气候变化的可塑性和进化响应。观察到随着干旱适应疾病向易感性增加的进化转变,提供了证据表明,即使种群可以对气候变化做出快速适应,其他特征的进化也可能产生生态效应,使物种更加脆弱。

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