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首页> 外文期刊>Trends in Plant Science >Stronger When Together: Clustering of Plant NLR Disease resistance Genes
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Stronger When Together: Clustering of Plant NLR Disease resistance Genes

机译:更强大的时间:植物NLR疾病抗性基因的聚类

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摘要

Gene clustering is rare in eukaryotes. However, nucleotide-binding leucine-rich repeat (NLR)-encoding disease resistance (R) genes show consistent clustering in plant genomes. These arrangements are likely to provide coregulatory benefits, as suggested by growing evidence that the gene products of both paired and larger clusters of NLRs act together in triggering immunity. Head-to-head gene pairs where one of the encoded NLRs includes an integrated decoy domain appear to behave differently than clusters evolved from closely related typical NLRs. These patterns may help to explain the broad resistance that most plants have despite their finite number of R genes. By taking into consideration the relationship between genomic arrangement and function, we can improve our understanding of and ability to predict plant immune detection.
机译:基因聚合物在真核生物中是罕见的。 然而,核苷酸结合的富含亮氨酸的重复(NLR) - 沉积疾病性抗性(R)基因在植物基因组中显示出一致的聚类。 这些安排可能提供核心效益,如通过越来越多的证据表明,两者的基因产物的NLRS的基因产物在触发免疫中起作用。 头部到头基因对,其中一个编码的NLRS包括集成诱饵域看起来比从密切相关的NLR中演变的簇不同地表现不同。 这些模式可能有助于解释大多数植物尽管它们有限数量的r基因的抗抵抗力。 通过考虑基因组排列和功能之间的关系,我们可以提高我们对预测植物免疫检测的理解和能力。

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