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Autoimmune Response as a Mechanism for a Dobzhansky-Muller-Type Incompatibility Syndrome in Plants

机译:自身免疫反应作为植物中Dobzhansky-Muller型不相容综合征的机制

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摘要

Epistatic interactions between genes are a major factor in evolution. Hybrid necrosis is an example of a deleterious phenotype caused by epistatic interactions that is observed in many intra- and interspecific plant hybrids. A large number of hybrid necrosis cases share phenotypic similarities, suggesting a common underlying mechanism across a wide range of plant species. Here, we report that approximately 2% of intraspecific crosses in Arabidopsis thaliana yield F1 progeny that express necrosis when grown under conditions typical of their natural habitats. We show that several independent cases result from epistatic interactions that trigger autoimmune-like responses. In at least one case, an allele of an NB-LRR disease resistance gene homolog is both necessary and sufficient for the induction of hybrid necrosis, when combined with a specific allele at a second locus. The A. thaliana cases provide insights into the molecular causes of hybrid necrosis, and serve as a model for further investigation of intra- and interspecific incompatibilities caused by a simple epistatic interaction. Moreover, our finding that plant immune-system genes are involved in hybrid necrosis suggests that selective pressures related to host–pathogen conflict might cause the evolution of gene flow barriers in plants.
机译:基因之间的上位相互作用是进化的主要因素。杂种坏死是在许多种内和种间植物杂种中观察到的由上位相互作用引起的有害表型的一个例子。许多杂种坏死病例具有表型相似性,表明广泛的植物物种具有共同的潜在机制。在这里,我们报告说,拟南芥中约2%的种内杂交产生F1后代,该后代在其自然栖息地的典型条件下生长时表达坏死。我们表明,几种独立的病例是由上位性相互作用引起的,这些相互作用触发了自身免疫样反应。在至少一种情况下,当在第二位点与特定等位基因结合时,NB-LRR疾病抗性基因同源物的等位基因对于诱导杂交坏死既必要又足够。拟南芥病例提供了对杂交坏死的分子原因的认识,并为进一步研究由简单的上位性相互作用引起的种内和种间不相容性提供了模型。此外,我们发现植物免疫系统基因参与杂种坏死的发现表明,与宿主-病原体冲突相关的选择性压力可能会导致植物中基因流屏障的进化。

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