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Different mechanisms for Arabidopsis thaliana hybrid necrosis cases inferred from temperature responses

机译:从温度响应推断拟南芥杂交坏死病例的不同机制

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摘要

Temperature is a major determinant of plant growth, development and success. Understanding how plants respond to temperature is particularly relevant in a warming climate. Plant immune responses are often suppressed above species-specific critical temperatures. This is also true for intraspecific hybrids of Arabidopsis thaliana that express hybrid necrosis due to inappropriate activation of the immune system caused by epistatic interactions between alleles from different genomes. The relationship between temperature and defence is unclear, largely due to a lack of studies that assess immune activation over a wide range of temperatures. To test whether the temperature-based suppression of ectopic immune activation in hybrids exhibits a linear or non-linear relationship, we characterised the molecular and morphological phenotypes of two different necrotic A. thaliana hybrids over a range of ecologically relevant temperatures. We found both linear and non-linear responses for expression of immunity markers and for morphological defects depending on the underlying genetic cause. This suggests that the influence of temperature on the trade-off between immunity and growth depends on the specific defence components involved.
机译:温度是决定植物生长,发育和成功的主要因素。在变暖的气候下,了解植物如何响应温度尤为重要。在物种特定的临界温度以上,植物免疫反应通常被抑制。对于拟南芥的种内杂种也是如此,其表达杂种坏死是由于来自不同基因组的等位基因之间的上位相互作用引起的免疫系统的不适当激活。温度与防御之间的关系尚不清楚,这主要是由于缺乏评估大范围温度下免疫激活的研究。为了测试杂种中基于温度的异位免疫激活抑制表现出线性还是非线性关系,我们在生态相关温度范围内表征了两种不同坏死拟南芥杂种的分子和形态表型。我们发现免疫标记的表达和形态缺陷的线性和非线性响应取决于潜在的遗传原因。这表明温度对免疫力和生长之间权衡取舍的影响取决于所涉及的特定防御成分。

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