生物
光形态发生
串扰
转录因子
细胞生物学
拟南芥
基因
灰葡萄孢菌
突变体
生长素
主调节器
WRKY蛋白质结构域
遗传学
调节器
植物
物理
光学
作者
Lumi Shiose,Juliene dos Reis Moreira,Bruno Silvestre Lira,Gabriel Ponciano,Gabriel Gómez‐Ocampo,Raquel Tsu Ay Wu,José Laurindo dos Santos Júnior,Nikolaos Ntelkis,Elke Clicque,Maria José Oliveira,Greice Lubini,Eny Iochevet Segal Floh,Javier F. Botto,Marcelo J. P. Ferreira,Alain Goossens,Luciano Freschi,Magdalena Rossi
摘要
Abstract During the last decade, knowledge about BBX proteins has greatly increased. Genome-wide studies identified the BBX gene family in several ornamental, industry, and food crops; however, reports regarding the role of these genes as regulators of agronomically important traits are scarce. Here, by phenotyping a knockout mutant, we performed a comprehensive functional characterization of the tomato locus Solyc12g089240, hereafter called SlBBX20. The data revealed the encoded protein as a positive regulator of light signaling affecting several physiological processes during the life span of plants. Through inhibition of PHYTOCHROME INTERACTING FACTOR 4 (SlPIF4)–auxin crosstalk, SlBBX20 regulates photomorphogenesis. Later in development, it controls the balance between cell division and expansion to guarantee correct vegetative and reproductive development. In fruits, SlBBX20 is transcriptionally induced by the master transcription factor RIPENING INHIBITOR (SlRIN) and, together with ELONGATED HYPOCOTYL 5 (SlHY5), up-regulates flavonoid biosynthetic genes. Finally, SlBBX20 promotes the accumulation of steroidal glycoalkaloids and attenuates Botrytis cinerea infection. This work clearly demonstrates that BBX proteins are multilayer regulators of plant physiology because they affect not only multiple processes during plant development but they also regulate other genes at the transcriptional and post-translational levels.
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