利用农艺性状鉴定水稻调控基因的多层筛选方法

Y. Seol, S. Won, Y. Shin, Jong-Yeol Lee, J. Chun, Yong-Kab Kim, Chang-Kug Kim
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引用次数: 4

摘要

我们开发了一种整合基因组和转录组数据的多层筛选方法,以有效地鉴定水稻(Oryza sativa)的调控基因。我们用8种水稻材料测试了我们的方法,这些水稻在三个重要的营养和农业性状,花青素生物合成,直链淀粉含量和抽穗日期上存在差异。通过24次RNA测序实验,对8份水稻材料进行基因组重测序,98%的预处理reads可以唯一地映射到参考基因组,鉴定出42,699个独特转录本。黑稻和白稻品种的比较表明,在染色体3、10和12上存在密集的选择性扫描。共有131个基因在黑米品种间存在差异表达,这些基因与3个基因本体术语(次生代谢过程、生物合成过程和对刺激的反应)相关。我们发现了可能在农艺性状差异中起重要作用的非同义单核苷酸多态性(nonsynonymous Single Nucleotide Polymorphism, SNP),在黑色品种中有2个基因上调,3个基因下调,在白色品种中有2个基因下调。这三种农艺性状在不考虑其他性状的情况下,按照发育阶段清晰地分组在一起,这表明发育阶段是触发基因表达全局变化的最重要因素。有趣的是,糯稻和非糯稻品种是通过不同的抽穗期来区分的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Multilayered Screening Method for the Identification of Regulatory Genes in Rice by Agronomic Traits
We developed a multilayered screening method that integrates both genome and transcriptome data to effectively identify regulatory genes in rice (Oryza sativa). We tested our method using eight rice accessions that differed in three important nutritional and agricultural traits, anthocyanin biosynthesis, amylose content, and heading date. In the genome resequencing of eight rice accessions with 24 RNA sequencing experiments, 98% of the preprocessed reads could be uniquely mapped to the reference genome, resulting in the identification of 42,699 unique transcripts. Comparison between black and white rice cultivars showed evidence of intensive selective sweeps in chromosomes 3, 10, and 12. A total of 131 genes were differentially expressed among the black rice cultivars and found to be associated with three Gene Ontology terms (secondary metabolic process, biosynthetic process, and response to stimulus). We identified nonsynonymous Single Nucleotide Polymorphism (SNP) that likely play an important role in determining the agronomic traits differences, two upregulated and three downregulated genes in the black cultivars, and two downregulated genes in the white cultivars. The three agronomic traits were clearly grouped together by the developmental stages, regardless of any other traits, suggesting that the developmental stage is the most important factor that triggers global changes in gene expression. Interestingly, glutinous and nonglutinous black rice cultivars were distinguished from one another by different heading dates.
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