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超级决定子 1A 是一种含有 RAWUL 结构域的蛋白质,调节番茄侧芽分生组织的形成和复叶发育。

Super determinant1A, a RAWULdomain-containing protein, modulates axillary meristem formation and compound leaf development in tomato.

机构信息

Max Planck Institute for Plant Breeding Research, Cologne D-50931, Germany.

出版信息

Plant Cell. 2021 Aug 13;33(7):2412-2430. doi: 10.1093/plcell/koab121.

Abstract

Shoot branching and complex leaf development relies on the establishment of boundaries that precedes the formation of axillary meristems (AMs) and leaflets. The tomato (Solanum lycopersicum) super determinant mutant is compromised in both processes, due to a mutation in Sde1A. Sde1A encodes a protein with a RAWUL domain, which is also present in Polycomb Group Repressive Complex 1 (PRC1) RING finger proteins and WD Repeat Domain 48 proteins. Genetic analysis revealed that Sde1A and Bmi1A cooperate, whereas Bmi1C antagonizes both activities, indicating the existence of functionally opposing PRC1 complexes that interact with Sde1A. Sde1A is expressed at early stages of boundary development in a small group of cells in the center of the leaf-axil boundary, but its activity is required for meristem formation at later stages. This suggests that Sde1A and Bmi1A promote AM formation and complex leaf development by safeguarding a pool of cells in the developing boundary zones. Genetic and protein interaction analyses showed that Sde1A and Lateral suppressor (Ls) are components of the same genetic pathway. In contrast to ls, sde1a mutants are not compromised in inflorescence branching, suggesting that Sde1A is a potential target for breeding tomato cultivars with reduced side-shoot formation during vegetative development.

摘要

侧枝和复杂叶片发育依赖于在形成腋芽分生组织(AMs)和小叶之前建立的边界。番茄(Solanum lycopersicum)超级决定子突变体在这两个过程中都受到影响,这是由于 Sde1A 突变造成的。Sde1A 编码一种具有 RAWUL 结构域的蛋白质,该结构域也存在于 Polycomb Group Repressive Complex 1(PRC1)环指蛋白和 WD 重复结构域 48 蛋白中。遗传分析表明,Sde1A 和 Bmi1A 合作,而 Bmi1C 拮抗这两种活性,表明存在功能上相互拮抗的 PRC1 复合物,与 Sde1A 相互作用。Sde1A 在叶片腋部边界中心的一小群细胞中,在边界发育的早期阶段表达,但它的活性在后期分生组织形成时是必需的。这表明 Sde1A 和 Bmi1A 通过保护发育边界区的细胞池来促进 AM 的形成和复杂叶片的发育。遗传和蛋白质相互作用分析表明,Sde1A 和 Lateral suppressor(Ls)是同一遗传途径的组成部分。与 ls 不同,sde1a 突变体在花序分枝方面不受影响,这表明 Sde1A 可能是培育减少营养生长期间侧枝形成的番茄品种的潜在目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fb9/8364250/c62860da0c2d/koab121f1.jpg

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