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GENETICS OF BRASSICA RAPA .3. COSTS OF DISEASE RESISTANCE TO THREE FUNGAL PATHOGENS

机译:甘蓝型油菜的遗传学.3。对三种真菌病原菌的抗病性成本

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Genetic costs of resistance to pathogens may be an important factor maintaining heritable variation for resistance in natural populations. Pleiotropic fitness trade-offs occur when genetic resistance causes reduction in other components of fitness. Although costs of resistance have an important influence on plant-pathogen interactions, few previous studies have detected pleiotropic costs of resistance in the absence of confounding effects of linkage disequilibrium. To avoid this potential problem, we performed artificial selection experiments on resistance to two fungal pathogens, Leptosphaeria maculans, and Peronospora parasitica, and compared growth rates of resistant and susceptible genotypes of Brassica rapa in the absence of pathogens. Leptosphaeria resistance had no effect on growth rate, indicating cost-free defense. In contrast, Peronospora-resistant genotypes grow 6% slower than Peronospora-susceptible genotypes in pathogen-free environments, indicating a significant genetic fitness cost to Peronospora resistance. Such genetic trade-offs could maintain genetic variation in the wild. Another factor that might explain heritable variation for resistance is ecological trade-offs, in which genetic resistance to one species causes susceptibility to another. Such ecological trade-offs do not exist for the pathogens studied in this system. [References: 57]
机译:对病原体抗性的遗传成本可能是保持自然种群中抗性的遗传变异的重要因素。当遗传抗性导致适应性的其他组成部分降低时,就会发生多效适应性折衷。尽管抗性成本对植物与病原体的相互作用有重要影响,但在缺乏连锁不平衡的混杂效应的情况下,很少有先前的研究发现抗多效性成本。为避免此潜在问题,我们对两种真菌病原体(Leptosphaeria maculans)和寄生虫Peronospora parasitica的抗性进行了人工选择实验,并比较了在没有病原体的情况下小白菜的抗性和易感基因型的生长速率。乳杆菌抵抗力对生长速率没有影响,表明无成本防御。相比之下,在无病原体的环境中,耐Peronospora的基因型比易受Peronospora的基因型增长慢6%,这表明对Peronospora耐药性的遗传适应性成本很高。这种遗传折衷可以维持野生环境中的遗传变异。可以解释抗性遗传变异的另一个因素是生态折衷,其中对一个物种的遗传抗性导致对另一个物种的易感性。对于在该系统中研究的病原体,这种生态折衷不存在。 [参考:57]

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