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利用微阵列技术对水稻冷胁迫响应 miRNA 进行分析。

Profiling of cold-stress-responsive miRNAs in rice by microarrays.

机构信息

Plant Bioengineering Laboratory, Northeast Agricultural University, Harbin, 150030, China.

出版信息

Gene. 2010 Jul 1;459(1-2):39-47. doi: 10.1016/j.gene.2010.03.011. Epub 2010 Mar 27.

Abstract

MicroRNAs (miRNAs) are small single-stranded RNAs with a length of about 21 nt; these non-coding RNAs regulate developmental and stress responses in plants by cleaving mRNAs. Cold stress is one of the most severe abiotic stresses and adversely affects rice yields by restraining sowing time, causing tissue damage, and stunting growth. Although many miRNAs have been identified in rice, little is known about the role of miRNAs in the response to cold stress. In this study, we identified 18 cold-responsive rice miRNAs using microarrays. Most were down-regulated. Members of the miR-167 and miR-319 families showed similar profiles. Intriguingly, members of miR-171 family showed diverse expression patterns. Three miRNAs derived from transposable element sequence were clustered within an intron and proved to be co-transcribed with the host gene only under cold stress. The existence of hormone-responsive elements in the upstream regions of the cold-responsive miRNAs indicates the importance of hormones in this defense system mediated by miRNAs. Two miRNA target pairs validated by 5' RACE showed opposite expression profiles under cold stress. Finally, the predicted stress-related targets of these miRNAs provided further evidence supporting our results. These findings confirm the role of miRNAs as ubiquitous regulators in rice.

摘要

微小 RNA(miRNAs)是长度约为 21 个核苷酸的小单链 RNA;这些非编码 RNA 通过切割 mRNA 来调节植物的发育和应激反应。冷胁迫是最严重的非生物胁迫之一,通过限制播种时间、导致组织损伤和生长受阻,对水稻产量产生不利影响。尽管已经在水稻中鉴定出许多 miRNAs,但对于 miRNAs 在冷胁迫响应中的作用知之甚少。在这项研究中,我们使用微阵列鉴定了 18 个冷响应水稻 miRNAs。大多数 miRNA 表达下调。miR-167 和 miR-319 家族成员表现出相似的表达谱。有趣的是,miR-171 家族成员表现出不同的表达模式。三个源自转座元件序列的 miRNAs 簇在一个内含子内,并证明仅在冷胁迫下与宿主基因共转录。冷响应 miRNAs 上游区域存在激素响应元件,表明激素在 miRNA 介导的这种防御系统中的重要性。通过 5' RACE 验证的两个 miRNA 靶对在冷胁迫下表现出相反的表达模式。最后,这些 miRNAs 的预测应激相关靶标为我们的结果提供了进一步的证据支持。这些发现证实了 miRNAs 作为水稻中普遍调节因子的作用。

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