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SlBBX28 通过生长素介导的方式正向调控番茄的生长和花数。

SlBBX28 positively regulates plant growth and flower number in an auxin-mediated manner in tomato.

机构信息

Departamento de Botânica, Instituto de Biociências, Universidade de São Paulo, São Paulo, SP, Brazil.

Escola Superior de Agricultura 'Luiz de Queiroz', Universidade de São Paulo, São Paulo, SP, Brazil.

出版信息

Plant Mol Biol. 2022 Oct;110(3):253-268. doi: 10.1007/s11103-022-01298-1. Epub 2022 Jul 8.

DOI:10.1007/s11103-022-01298-1
PMID:35798935
Abstract

SlBBX28 is a positive regulator of auxin metabolism and signaling, affecting plant growth and flower number in tomato B-box domain-containing proteins (BBXs) comprise a family of transcription factors that regulate several processes, such as photomorphogenesis, flowering, and stress responses. For this reason, attention is being directed toward the functional characterization of these proteins, although knowledge in species other than Arabidopsis thaliana remains scarce. Particularly in the tomato, Solanum lycopersicum, only three out of 31 SlBBX proteins have been functionally characterized to date. To deepen the understanding of the role of these proteins in tomato plant development and yield, SlBBX28, a light-responsive gene, was constitutively silenced, resulting in plants with smaller leaves and fewer flowers per inflorescence. Moreover, SlBBX28 knockdown reduced hypocotyl elongation in darkness-grown tomato. Analyses of auxin content and responsiveness revealed that SlBBX28 promotes auxin-mediated responses. Altogether, the data revealed that SlBBX28 promotes auxin production and signaling, ultimately leading to proper hypocotyl elongation, leaf expansion, and inflorescence development, which are crucial traits determining tomato yield.

摘要

SlBBX28 是生长素代谢和信号的正调控因子,影响番茄的生长和花数。B-box 结构域包含蛋白(BBXs)在植物中构成转录因子家族,调节多种过程,如光形态建成、开花和应激反应。出于这个原因,人们对这些蛋白质的功能特征进行了研究,尽管除拟南芥以外的物种的知识仍然匮乏。特别是在番茄中,仅对 31 个 SlBBX 蛋白中的 3 个进行了功能特征研究。为了深入了解这些蛋白质在番茄植物发育和产量中的作用,对光响应基因 SlBBX28 进行了组成型沉默,导致植物的叶片变小,花序上的花数减少。此外,SlBBX28 的敲低减少了黑暗中生长的番茄的下胚轴伸长。生长素含量和响应分析表明,SlBBX28 促进了生长素介导的反应。总之,数据表明 SlBBX28 促进了生长素的产生和信号转导,最终导致适当的下胚轴伸长、叶片扩张和花序发育,这是决定番茄产量的关键特征。

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本文引用的文献

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BBX17 Interacts with CO and Negatively Regulates Flowering Time in Arabidopsis thaliana.
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