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The large repertoire of conifer NLR resistance genes includes drought responsive and highly diversified RNLs

机译:针叶树NLR抗性基因的丰富种类包括干旱响应性和高度多样化的RNL

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摘要

The NLRs or NBS-LRRs (nucleotide-binding, leucine-rich-repeat) form the largest resistance gene family in plants, with lineage-specific contingents of TNL, CNL and RNL subfamilies and a central role in resilience to stress. The origin, evolution and distribution of NLR sequences has been unclear owing in part to the variable size and diversity of the RNL subfamily and a lack of data in Gymnosperms. We developed, searched and annotated transcriptomes assemblies of seven conifers and identified a resource of 3816 expressed NLR sequences. Our analyses encompassed sequences data spanning the major groups of land plants and determinations of NLR transcripts levels in response to drought in white spruce. We showed that conifers have among the most diverse and numerous RNLs in tested land plants. We report an evolutionary swap in the formation of RNLs, which emerged from the fusion of an RPW8 domain to a NB-ARC domain of CNL. We uncovered a quantitative relationship between RNLs and TNLs across all land plants investigated, with an average ratio of 1:10. The conifer RNL repertoire harbours four distinct groups, with two that differ from Angiosperms, one of which contained several upregulated sequences in response to drought while the majority of responsive NLRs are downregulated.
机译:NLR或NBS-LRR(核苷酸结合,富含亮氨酸的重复序列)形成植物中最大的抗性基因家族,具有TNL,CNL和RNL亚家族的特定谱系特异,在抗逆性中起着核心作用。 NLR序列的起源,进化和分布尚不清楚,部分原因是RNL亚科的大小和多样性各异,而裸子植物中缺乏数据。我们开发,搜索和注释的七个针叶树的转录组大会,并确定了3816个表达的NLR序列的资源。我们的分析包括跨越主要陆地植物群的序列数据,以及确定白云杉干旱后NLR转录水平的确定。我们证明了针叶树在经过测试的陆地植物中具有最多样的RNL。我们报告了RNL形成中的进化互换,这是从RPW8域与CNL的NB-ARC域的融合中产生的。我们发现在所有调查的陆地植物中,RNL和TNL之间存在定量关系,平均比例为1:10。针叶树RNL库包含四个不同的组,其中两个与被子植物不同,其中一个包含几个响应干旱的上调序列,而大多数响应性NLR被下调。

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