Department of Cell and Metabolic Biology, Institute of Plant Biochemistry, 06120 Halle, Germany.
Martin Luther University Halle Wittenberg, Biocenter, Electron Microscopy, 06120 Halle, Germany.
Plant Cell. 2019 May;31(5):1043-1062. doi: 10.1105/tpc.18.00978. Epub 2019 Mar 20.
The function of the plant hormone jasmonic acid (JA) in the development of tomato () flowers was analyzed with a mutant defective in JA perception (, ). In contrast with Arabidopsis () JA-insensitive plants, which are male sterile, the tomato 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 mutants. One of the strongly downregulated genes in encodes the MYB transcription factor SlMYB21. Its Arabidopsis ortholog plays a crucial role in JA-regulated stamen development. SlMYB21 was shown here to exhibit transcription factor activity in yeast, to interact with SlJAZ9 in yeast and in planta, and to complement Arabidopsis To analyze SlMYB21 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, , and carpels revealed processes that might be controlled by SlMYB21. The data suggest positive regulation of JA biosynthesis by SlMYB21, but negative regulation of auxin and gibberellins. The results demonstrate that SlMYB21 mediates at least partially the action of JA and might control the flower-to-fruit transition. .
分析了植物激素茉莉酸(JA)在番茄花发育中的功能,使用了一个在 JA 感知中缺陷的突变体(,)。与拟南芥 JA 不敏感植物雄性不育不同,番茄 突变体是雌性不育的,雌性发育存在主要缺陷。为了鉴定可能的 JA 依赖的调节成分,我们对来自野生型和 突变体花的三个发育阶段的胚珠进行了转录组学分析。在 中强烈下调的一个基因编码 MYB 转录因子 SlMYB21。其拟南芥同源物在 JA 调控雄蕊发育中起着至关重要的作用。在这里,SlMYB21 被证明在酵母中具有转录因子活性,在酵母和植物体内与 SlJAZ9 相互作用,并在拟南芥中互补 为了分析 SlMYB21 的功能,我们生成了成簇的规则间隔的短回文重复(CRISPR)/CRISPR 相关蛋白 9(Cas9)突变体,并通过靶向诱导基因组局部突变(TILLING)鉴定了一个突变体。这些突变体表现出雌性不育,证实了 MYB21 在番茄胚珠发育中的功能。对野生型、 、和 心皮的转录组学分析揭示了可能受 SlMYB21 控制的过程。数据表明 SlMYB21 正向调节 JA 生物合成,但负向调节生长素和赤霉素。结果表明,SlMYB21 至少部分介导了 JA 的作用,并可能控制花到果的转变。