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番茄 DCL3 沉默突变体的产生和特性分析。

Generation and characterization of a tomato DCL3-silencing mutant.

机构信息

Institute of Plant Sciences, Agricultural Research Organization, Volcani Center, PO BOX 6, Bet Dagan 50250, Israel.

Institute of Plant Sciences, Agricultural Research Organization, Volcani Center, PO BOX 6, Bet Dagan 50250, Israel.

出版信息

Plant Sci. 2014 May;221-222:81-9. doi: 10.1016/j.plantsci.2014.02.007. Epub 2014 Feb 26.

Abstract

DICER-like 3 (DCL3) is a major player in heterochromatic 24-nucleotide (nt) small RNA (sRNA) and long microRNA (lmiRNA) biogenesis, and higher plant DCL3 mutants have been characterized from Arabidopsis thaliana and rice. Here, a tomato DCL3 (SlDCL3) mutant was generated through the use of trans-activated artificial miRNA and characterized. Constitutive trans-activation knocked down SlDCL3 levels by ∼64%, resulting in dramatically decreased 24-nt sRNA levels and a significant increase in 21- and 22-nt sRNAs. The latter was correlated with specific upregulation of SlDCL4 and SlDCL2b, which function in the biogenesis of 21- and 22-nt sRNAs, respectively. Moreover, at the majority of sRNA-generating genomic loci, an almost complete overlap between small RNA signatures of control and silenced seedlings was observed, suggesting that the reductions in 24-nt sRNAs at these loci were compensated for by biogenesis of 21- and 22-nt sRNAs from the same double-stranded RNA substrates. In addition, bioinformatic analysis and reduced expression in SlDCL3-silenced seedlings identified four novel tomato lmiRNAs, two of which were found to be developmentally regulated. Taken together, these results establish the requirement of SlDCL3 for the biogenesis of 24-nt sRNAs and lmiRNAs in tomato and suggest SlDCL4 and SlDCL2b as surrogates for SlDCL3.

摘要

DICER-like 3(DCL3)是异染色质 24 核苷酸(nt)小 RNA(sRNA)和长 microRNA(lmiRNA)生物发生的主要参与者,已从拟南芥和水稻中鉴定出高等植物 DCL3 突变体。在这里,通过使用反式激活人工 miRNA 生成了番茄 DCL3(SlDCL3)突变体,并对其进行了表征。组成型反式激活使 SlDCL3 水平降低了约 64%,导致 24-nt sRNA 水平显著降低,21-和 22-nt sRNAs 水平显著增加。后者与 SlDCL4 和 SlDCL2b 的特异性上调相关,SlDCL4 和 SlDCL2b 分别在 21-和 22-nt sRNA 的生物发生中起作用。此外,在大多数 sRNA 生成的基因组位点,观察到对照和沉默幼苗的小 RNA 特征几乎完全重叠,表明这些位点 24-nt sRNAs 的减少被相同双链 RNA 底物的 21-和 22-nt sRNAs 的生物发生所补偿。此外,生物信息学分析和 SlDCL3 沉默幼苗中的表达降低鉴定出四个新的番茄 lmiRNA,其中两个被发现受发育调控。综上所述,这些结果确立了 SlDCL3 在番茄中 24-nt sRNAs 和 lmiRNAs 生物发生中的必要性,并表明 SlDCL4 和 SlDCL2b 可作为 SlDCL3 的替代物。

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