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Loss of Function of OsDCL1 Affects MicroRNA Accumulation and Causes Developmental Defects in Rice1[w]

机译:OsDCL1的功能丧失影响Micro1的积累并导致水稻1的发育缺陷[w]

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摘要

MicroRNAs (miRNAs) and small interfering RNAs (siRNAs) are two types of noncoding RNAs involved in developmental regulation, genome maintenance, and defense in eukaryotes. The activity of Dicer or Dicer-like (DCL) proteins is required for the maturation of miRNAs and siRNAs. In this study, we cloned and sequenced 66 candidate rice (Oryza sativa) miRNAs out of 1,650 small RNA sequences (19 to approximately 25 nt), and they could be further grouped into 21 families, 12 of which are newly identified and three of which, OsmiR528, OsmiR529, and OsmiR530, have been confirmed by northern blot. To study the function of rice DCL proteins (OsDCLs) in the biogenesis of miRNAs and siRNAs, we searched genome databases and identified four OsDCLs. An RNA interference approach was applied to knock down two OsDCLs, OsDCL1 and OsDCL4, respectively. Strong loss of function of OsDCL1IR transformants that expressed inverted repeats of OsDCL1 resulted in developmental arrest at the seedling stage, and weak loss of function of OsDCL1IR transformants caused pleiotropic developmental defects. Moreover, all miRNAs tested were greatly reduced in OsDCL1IR but not OsDCL4IR transformants, indicating that OsDCL1 plays a critical role in miRNA processing in rice. In contrast, the production of siRNA from transgenic inverted repeats and endogenous CentO regions were not affected in either OsDCL1IR or OsDCL4IR transformants, suggesting that the production of miRNAs and siRNAs is via distinct OsDCLs.
机译:微小RNA(miRNA)和小干扰RNA(siRNA)是涉及真核生物发育调控,基因组维持和防御的两种非编码RNA。 Dicer或Dicer-like(DCL)蛋白的活性是miRNA和siRNA成熟所必需的。在这项研究中,我们从1,650个小RNA序列(19到大约25 nt)中克隆并测序了66个候选水稻(Oryza sativa)miRNA,它们可以进一步分为21个家族,其中12个家族是新鉴定的,其中三个OsmiR528,OsmiR529和OsmiR530已通过Northern blot证实。为了研究水稻DCL蛋白(OsDCLs)在miRNA和siRNA的生物发生中的功能,我们搜索了基因组数据库并确定了四个OsDCL。应用RNA干扰方法分别敲低两个OsDCL,即OsDCL1和OsDCL4。表达OsDCL1反向重复序列的OsDCL1IR转化子功能丧失很强,导致苗期发育停滞; OsDCL1IR转化子功能丧失较弱,导致多效性发育缺陷。此外,所有测试的miRNA在OsDCL1IR转化子中均大大降低,但在OsDCL4IR转化子中未降低,这表明OsDCL1在水稻miRNA加工中起关键作用。相反,在OsDCL1IR或OsDCL4IR转化子中,转基因反向重复序列和内源CentO区域产生的siRNA均不受影响,这表明miRNA和siRNA的产生是通过不同的OsDCL进行的。

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