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Arabidopsis Basic Leucine-Zipper Transcription Factors TGA9 and TGA10 Interact with Floral Glutaredoxins ROXY1 and ROXY2 and Are Redundantly Required for Anther Development

机译:拟南芥基本亮氨酸-拉链转录因子TGA9和TGA10与花卉谷胱甘肽毒素ROXY1和ROXY2相互作用并且是花药发育所必需的

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摘要

ROXY1 and ROXY2 are CC-type floral glutaredoxins with redundant functions in Arabidopsis (Arabidopsis thaliana) anther development. We show here that plants lacking the basic leucine-zipper transcription factors TGA9 and TGA10 have defects in male gametogenesis that are strikingly similar to those in roxy1 roxy2 mutants. In tga9 tga10 mutants, adaxial and abaxial anther lobe development is differentially affected, with early steps in anther development blocked in adaxial lobes and later steps affected in abaxial lobes. Distinct from roxy1 roxy2, microspore development in abaxial anther lobes proceeds to a later stage with the production of inviable pollen grains contained within nondehiscent anthers. Histological analysis shows multiple defects in the anther dehiscence program, including abnormal stability and lignification of the middle layer and defects in septum and stomium function. Compatible with these defects, TGA9 and TGA10 are expressed throughout early anther primordia but resolve to the middle and tapetum layers during meiosis of pollen mother cells. Several lines of evidence suggest that ROXY promotion of anther development is mediated in part by TGA9 and TGA10. First, TGA9 and TGA10 expression overlaps with ROXY1/2 during anther development. Second, TGA9/10 and ROXY1/2 operate downstream of SPOROCYTELESS/NOZZLE, where they positively regulate a common set of genes that contribute to tapetal development. Third, TGA9 and TGA10 directly interact with ROXY proteins in yeast and in plant cell nuclei. These findings suggest that activation of TGA9/10 transcription factors by ROXY-mediated modification of cysteine residues promotes anther development, thus broadening our understanding of how redox-regulated TGA factors function in plants.
机译:ROXY1和ROXY2是CC型花味戊二醛毒素,在拟南芥(Arabidopsis thaliana)花药发育中具有冗余功能。我们在这里显示,缺乏基本的亮氨酸拉链转录因子TGA9和TGA10的植物在雄性配子发生中具有与roxy1 roxy2突变体惊人相似的缺陷。在tga9 tga10突变体中,近端和近端花药叶发育受到不同影响,花药发育的早期步骤在近端叶中受阻,而后步骤在后叶中受累。与roxy1 roxy2不同,在背面花药裂片中的小孢子发育进行到后期,产生了不裂花药中所含的不可繁殖的花粉粒。组织学分析表明,花药开裂程序中存在多个缺陷,包括异常的稳定性和中间层的木质化以及隔膜和气孔功能的缺陷。与这些缺陷兼容,TGA9和TGA10在整个花药原基中表达,但在花粉母细胞减数分裂过程中分解为中层和绒毡层。一些证据表明,ROXY促进花药发育的部分原因是由TGA9和TGA10介导。首先,在花药发育过程中,TGA9和TGA10的表达与ROXY1 / 2重叠。其次,TGA9 / 10和ROXY1 / 2在SPOROCYTELESS / NOZZLE的下游运行,在其中它们积极调节有助于绒毛发育的一组通用基因。第三,TGA9和TGA10直接与酵母和植物细胞核中的ROXY蛋白相互作用。这些发现表明,由ROXY介导的半胱氨酸残基修饰激活TGA9 / 10转录因子可促进花药发育,从而拓宽了我们对氧化还原调节的TGA因子在植物中如何发挥作用的理解。

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