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对无叶片1调控的及阶段性小RNA进行全基因组分析,突显了TAS3反式作用小干扰RNA(ta-siRNA)途径对玉米发育的重要性。

Genome-wide analysis of leafbladeless1-regulated and phased small RNAs underscores the importance of the TAS3 ta-siRNA pathway to maize development.

作者信息

Dotto Marcela C, Petsch Katherine A, Aukerman Milo J, Beatty Mary, Hammell Molly, Timmermans Marja C P

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York, United States of America.

DuPont Crop Genetics, Wilmington, Delaware, United States of America.

出版信息

PLoS Genet. 2014 Dec 11;10(12):e1004826. doi: 10.1371/journal.pgen.1004826. eCollection 2014 Dec.

Abstract

Maize leafbladeless1 (lbl1) encodes a key component in the trans-acting short-interfering RNA (ta-siRNA) biogenesis pathway. Correlated with a great diversity in ta-siRNAs and the targets they regulate, the phenotypes conditioned by mutants perturbing this small RNA pathway vary extensively across species. Mutations in lbl1 result in severe developmental defects, giving rise to plants with radial, abaxialized leaves. To investigate the basis for this phenotype, we compared the small RNA content between wild-type and lbl1 seedling apices. We show that LBL1 affects the accumulation of small RNAs in all major classes, and reveal unexpected crosstalk between ta-siRNA biogenesis and other small RNA pathways regulating transposons. Interestingly, in contrast to data from other plant species, we found no evidence for the existence of phased siRNAs generated via the one-hit model. Our analysis identified nine TAS loci, all belonging to the conserved TAS3 family. Information from RNA deep sequencing and PARE analyses identified the tasiR-ARFs as the major functional ta-siRNAs in the maize vegetative apex where they regulate expression of AUXIN RESPONSE FACTOR3 (ARF3) homologs. Plants expressing a tasiR-ARF insensitive arf3a transgene recapitulate the phenotype of lbl1, providing direct evidence that deregulation of ARF3 transcription factors underlies the developmental defects of maize ta-siRNA biogenesis mutants. The phenotypes of Arabidopsis and Medicago ta-siRNA mutants, while strikingly different, likewise result from misexpression of the tasiR-ARF target ARF3. Our data indicate that diversity in TAS pathways and their targets cannot fully account for the phenotypic differences conditioned by ta-siRNA biogenesis mutants across plant species. Instead, we propose that divergence in the gene networks downstream of the ARF3 transcription factors or the spatiotemporal pattern during leaf development in which these proteins act constitute key factors underlying the distinct contributions of the ta-siRNA pathway to development in maize, Arabidopsis, and possibly other plant species as well.

摘要

玉米无叶1(lbl1)编码反式作用小干扰RNA(ta-siRNA)生物合成途径中的一个关键组分。与ta-siRNAs及其调控的靶标存在很大差异相关,扰乱这种小RNA途径的突变体所导致的表型在不同物种间差异很大。lbl1中的突变会导致严重的发育缺陷,产生具有辐射状、背化叶片的植株。为了探究这种表型的基础,我们比较了野生型和lbl1幼苗顶端的小RNA含量。我们发现LBL1影响所有主要类别的小RNA积累,并揭示了ta-siRNA生物合成与其他调控转座子的小RNA途径之间意外的相互作用。有趣的是,与其他植物物种的数据相反,我们没有发现通过单次打击模型产生的阶段性siRNAs存在的证据。我们的分析鉴定出九个TAS位点,它们都属于保守的TAS3家族。来自RNA深度测序和PARE分析的信息确定tasiR-ARFs是玉米营养顶端主要的功能性ta-siRNAs,它们在那里调控生长素响应因子3(ARF3)同源物的表达。表达对tasiR-ARF不敏感的arf3a转基因的植株重现了lbl1的表型,提供了直接证据表明ARF3转录因子的失调是玉米ta-siRNA生物合成突变体发育缺陷的基础。拟南芥和苜蓿ta-siRNA突变体的表型虽然明显不同,但同样是由tasiR-ARF靶标ARF3的错误表达导致的。我们的数据表明,TAS途径及其靶标的差异不能完全解释ta-siRNA生物合成突变体在不同植物物种间所导致的表型差异。相反,我们提出ARF3转录因子下游基因网络的差异或这些蛋白质在叶片发育过程中发挥作用的时空模式是ta-siRNA途径对玉米、拟南芥以及可能其他植物物种发育做出不同贡献的关键因素。

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