首页> 外文OA文献 >ARABIDOPSIS DEHISCENCE ZONE POLYGALACTURONASE1 (ADPG1), ADPG2, and QUARTET2 Are Polygalacturonases Required for Cell Separation during Reproductive Development in Arabidopsis[W]
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ARABIDOPSIS DEHISCENCE ZONE POLYGALACTURONASE1 (ADPG1), ADPG2, and QUARTET2 Are Polygalacturonases Required for Cell Separation during Reproductive Development in Arabidopsis[W]

机译:拟南芥开裂区聚半乳糖醛酸酶1(ADPG1),ADPG2和QUARTET2是拟南芥生殖发育过程中细胞分离所需的多聚半乳糖醛酸酶[W]

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摘要

Cell separation is thought to involve degradation of pectin by several hydrolytic enzymes, particularly polygalacturonase (PG). Here, we characterize an activation tagging line with reduced growth and male sterility caused by increased expression of a PG encoded by QUARTET2 (QRT2). QRT2 is essential for pollen grain separation and is part of a small family of three closely related endo-PGs in the Arabidopsis thaliana proteome, including ARABIDOPSIS DEHISCENCE ZONE POLYGALACTURONASE1 (ADPG1) and ADPG2. Functional assays and complementation experiments confirm that ADPG1, ADPG2, and QRT2 are PGs. Genetic analysis demonstrates that ADPG1 and ADPG2 are essential for silique dehiscence. In addition, ADPG2 and QRT2 contribute to floral organ abscission, while all three genes contribute to anther dehiscence. Expression analysis is consistent with the observed mutant phenotypes. INDEHISCENT (IND) encodes a putative basic helix-loop-helix required for silique dehiscence, and we demonstrate that the closely related HECATE3 (HEC3) gene is required for normal seed abscission and show that IND and HEC3 are required for normal expression of ADPG1 in the silique dehiscence zone and seed abscission zone, respectively. We also show that jasmonic acid and ethylene act together with abscisic acid to regulate floral organ abscission, in part by promoting QRT2 expression. These results demonstrate that multiple cell separation events, including both abscission and dehiscence, require closely related PG genes.
机译:人们认为细胞分离涉及果胶被几种水解酶,特别是聚半乳糖醛酸酶(PG)降解。在这里,我们描述了由QUARTET2(QRT2)编码的PG的表达增加引起的生长减少和雄性不育的激活标签系。 QRT2对于花粉粒分离至关重要,并且是拟南芥蛋白质组中三个紧密相关的内在PG家族的一个小家族,其中包括阿拉伯糖耐寒区带聚半乳糖醛酸酶1(ADPG1)和ADPG2。功能测定和互补实验证实ADPG1,ADPG2和QRT2是PG。遗传分析表明,ADPG1和ADPG2对于拉长角果是必不可少的。此外,ADPG2和QRT2促进花器官的脱落,而所有三个基因均促进花药开裂。表达分析与观察到的突变表型一致。 INDEHISCENT(IND)编码假定的长角果开裂所需的基本螺旋-环-螺旋,并且我们证明了密切相关的HECATE3(HEC3)基因是正常种子脱落所必需的,并且表明IND和HEC3是ADPG1在植物中正常表达所必需的角果开裂区和种子脱落区。我们还显示,茉莉酸和乙烯与脱落酸一起调节花器官的脱落,部分是通过促进QRT2表达。这些结果表明,包括脱落和裂开在内的多种细胞分离事件都需要紧密相关的PG基因。

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