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Tomato MYB21 Acts in Ovules to Mediate Jasmonate-Regulated Fertility

机译:番茄MYB21在卵子中起作用,以介导斋月调节的生育能力

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摘要

The function of the plant hormone jasmonic acid (JA) in the development of tomato (Solanum lycopersicum) flowers was analyzed with a mutant defective in JA perception (jasmonate-insensitive1-1, jai1-1). In contrast with Arabidopsis (Arabidopsis thaliana) JA-insensitive plants, which are male sterile, the tomato jai1-1 mutant is female sterile, with major defects in female development. To identify putative JA-dependent regulatory components, we performed transcriptomics on ovules from flowers at three developmental stages from wild type and jai1-1 mutants. One of the strongly downregulated genes in jai1-1 encodes the MYB transcription factor SIMYB21. Its Arabidopsis ortholog plays a crucial role in JA-regulated stamen development. SIMYB21 was shown here to exhibit transcription factor activity in yeast, to interact with SIJAZ9 in yeast and in planta, and to complement Arabidopsis myb21-5. To analyze SIMYB21 function, we generated clustered regularly interspaced short palindromic repeats(CRISPR)/CRISPR associated protein 9 (Cas9) mutants and identified a mutant by Targeting Induced Local Lesions in Genomes (TILLING). These mutants showed female sterility, corroborating a function of MYB21 in tomato ovule development. Transcriptomics analysis of wild type, jai1-1, and myb21-2 carpels revealed processes that might be controlled by SIMYB21. The data suggest positive regulation of JA biosynthesis by SIMYB21, but negative regulation of auxin and gibberellins. The results demonstrate that SIMYB21 mediates at least partially the action of JA and might control the flower-to-fruit transition.
机译:植物激素茉莉酸(JA)在番茄(Solanum Lycopersicum)的发育中的功能进行了分析了JA感知(Jasmonate-Insensitty1-1,Jai1-1)的突变体缺陷。与拟南芥(Arabidopsis Thaliana)相反,番茄Jai1-1突变体是雌性无菌的JA多敏感植物是女性无菌,女性发育具有重大缺陷。为了鉴定推定的JA依赖性调节组分,我们在野生型和Jai1-1突变体的三个发育阶段进行了从鲜花的翻译组织。 Jai1-1中强烈下调的基因之一编码了MYB转录因子SIMYB21。它的rapidopsis ortholog在ja监管的雄蕊发展中起着至关重要的作用。 SimyB21在此显示在酵母中表现出转录因子活性,与酵母和植物中的Sijaz9相互作用,并补充拟南芥MyB21-5。为了分析SIMYB21功能,我们通过靶向基因组(耕种)靶向诱导的局部病变来鉴定间隙的短语重复(CASRPr)/ CRISPR相关蛋白质9(CAS9)突变体产生聚类。这些突变体显示雌性无菌,证实了番茄胚芽发育中的MYB21的功能。野生型,JAI1-1和MYB21-2卡片的转录组织分析显示了SIMYB21可能控制的过程。该数据表明SIMYB21对JA生物合成的正规调节,但蟾蜍素和赤霉素的负调节。结果表明,SIMYB21至少部分地介导JA的作用,并可控制花卉到水果过渡。

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  • 来源
    《The Plant Cell》 |2019年第5期|共20页
  • 作者单位

    Inst Plant Biochem Dept Cell &

    Metab Biol D-06120 Halle Germany;

    Inst Plant Biochem Dept Cell &

    Metab Biol D-06120 Halle Germany;

    Inst Plant Biochem Dept Cell &

    Metab Biol D-06120 Halle Germany;

    Martin Luther Univ Halle Wittenberg Bioctr Electron Microscopy D-06120 Halle Germany;

    Inst Plant Biochem Dept Cell &

    Metab Biol D-06120 Halle Germany;

    Inst Plant Biochem Dept Cell &

    Metab Biol D-06120 Halle Germany;

    Inst Plant Biochem Dept Cell &

    Metab Biol D-06120 Halle Germany;

    Univ Tsukuba Tsukuba Plant Innovat Res Ctr Tsukuba Ibaraki Japan;

    Univ Tsukuba Tsukuba Plant Innovat Res Ctr Tsukuba Ibaraki Japan;

    Max Planck Inst Plant Breeding Res D-50829 Cologne Germany;

    Palacky Univ Lab Growth Regulators CZ-78371 Olomouc Czech Republic;

    Inst Plant Biochem Dept Cell &

    Metab Biol D-06120 Halle Germany;

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  • 正文语种 eng
  • 中图分类 植物细胞学;
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