首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Detection of a major gene for resistance to fusiform rust disease in loblolly pine by genomic mapping.
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Detection of a major gene for resistance to fusiform rust disease in loblolly pine by genomic mapping.

机译:通过基因组图谱检测对火炬松中梭状锈病抗性的主要基因。

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摘要

Genomic mapping has been used to identify a region of the host genome that determines resistance to fusiform rust disease in loblolly pine where no discrete, simply inherited resistance factors had been previously found by conventional genetic analysis over four decades. A resistance locus, behaving as a single dominant gene, was mapped by association with genetic markers, even though the disease phenotype deviated from the expected Mendelian ratio. The complexity of forest pathosystems and the limitations of genetic analysis, based solely on phenotype, had led to an assumption that effective long-term disease resistance in trees should be polygenic. However, our data show that effective long-term resistance can be obtained from a single qualitative resistance gene, despite the presence of virulence in the pathogen population. Therefore, disease resistance in this endemic coevolved forest pathosystem is not exclusively polygenic. Genomic mapping now provides a powerful tool for characterizing the genetic basis of host pathogen interactions in forest trees and other undomesticated, organisms, where conventional genetic analysis often is limited or not feasible.
机译:基因组作图已被用于确定宿主基因组区域,该区域确定了对火炬松中梭形铁锈病的抗性,而在过去的四十年中,传统遗传分析以前并未发现任何离散的,简单遗传的抗性因子。通过与遗传标记的关联绘制了一个表现为单一显性基因的抗性基因座,即使该疾病的表型偏离了预期的孟德尔比率。仅基于表型的森林病理系统的复杂性和遗传分析的局限性就导致了这样一个假设,即树木的有效长期抗病性应该是多基因的。然而,我们的数据表明,尽管病原体中存在毒力,但可以从单个定性抗性基因获得有效的长期抗性。因此,在这种地方性共同进化的森林病理系统中,抗病性并非仅是多基因的。现在,基因组作图提供了一个强大的工具,可用来表征森林树和其他未驯化的生物中宿主病原体相互作用的遗传基础,而常规遗传分析通常是有限的或不可行的。

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