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WAVY LEAF1, an ortholog of arabidopsis HEN1, regulates shoot development by maintaining microRNA and trans-acting small interfering RNA accumulation in rice

机译:拟南芥HEN1的直系同源基因WAVY LEAF1通过维持microRNA和反式干扰水稻中的小分子RNA积累来调节芽的发育

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摘要

In rice (Oryza sativa), trans-acting small interfering RNA (ta-siRNA) is essential for shoot development, including shoot apical meristem (SAM) formation and leaf morphogenesis. The rice wavy leaf1 (waf1) mutant has been identified as an embryonic mutant resembling shoot organization1 (sho1) and sho2, homologs of a loss-of-function mutant of DICER-LIKE4 and a hypomorphic mutant of ARGONAUTE7, respectively, which both act in the ta-siRNA production pathway. About half of the waf1 mutants showed seedling lethality due to defects in SAM maintenance, but the rest survived to the reproductive phase and exhibited pleiotropic phenotypes in leaf morphology and floral development. Map-based cloning of WAF1 revealed that it encodes an RNA methyltransferase, a homolog of Arabidopsis (Arabidopsis thaliana) HUA ENHANCER1. The reduced accumulation of small RNAs in waf1 indicated that the stability of the small RNA was decreased. Despite the greatly reduced level of microRNAs and ta-siRNA, microarray and reverse transcription-polymerase chain reaction experiments revealed that the expression levels of their target genes were not always enhanced. A double mutant between sho and waf1 showed an enhanced SAM defect, suggesting that the amount and/or quality of ta-siRNA is crucial for SAM maintenance. Our results indicate that stabilization of small RNAs by WAF1 is indispensable for rice development, especially for SAM maintenance and leaf morphogenesis governed by the ta-siRNA pathway. In addition, the inconsistent relationship between the amount of small RNAs and the level of the target mRNA in waf1 suggest that there is a complex regulatory mechanism that modifies the effects of microRNA/ta-siRNA on the expression of the target gene.
机译:在水稻(Oryza sativa)中,反式小干扰RNA(ta-siRNA)对于芽发育至关重要,包括芽顶端分生组织(SAM)形成和叶片形态发生。水稻波浪形leaf1(waf1)突变体已被鉴定为类似于芽组织1(sho1)和sho2的胚胎突变体,分别是DICER-LIKE4的功能丧失突变体和ARGONAUTE7的亚同型突变体的同源物,两者均在ta-siRNA生产途径。由于SAM维持缺陷,约有一半的waf1突变体显示出幼苗的致死性,但其余的存活至生殖期,并在叶片形态和花发育中表现出多效性表型。 WAF1的基于图的克隆显示,它编码一个RNA甲基转移酶,一种拟南芥(Arabidopsis thaliana)HUA ENHANCER1的同源物。在waf1中小RNA的积累减少表明小RNA的稳定性下降。尽管microRNA和ta-siRNA的水平大大降低,但微阵列和逆转录聚合酶链反应实验表明,其靶基因的表达水平并不总是得到提高。 sho和waf1之间的双突变体显示出增强的SAM缺陷,这表明ta-siRNA的数量和/或质量对于SAM的维持至关重要。我们的结果表明,WAF1稳定小RNA对于水稻发育是必不可少的,特别是对于SAM维持和由ta-siRNA途径控制的叶片形态发生。另外,waf1中小RNA的量与靶mRNA的水平之间不一致的关系表明存在复杂的调节机制,可改变microRNA / ta-siRNA对靶基因表达的影响。

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