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KNOX蛋白KNAT1通过抑制乙烯生物合成基因来调控荔枝幼果脱落。

KNOX protein KNAT1 regulates fruitlet abscission in litchi by repressing ethylene biosynthetic genes.

作者信息

Zhao Minglei, Li Caiqin, Ma Xingshuai, Xia Rui, Chen Jianye, Liu Xuncheng, Ying Peiyuan, Peng Manjun, Wang Jun, Shi Chun-Lin, Li Jianguo

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, China Litchi Research Center, South China Agricultural University, Guangzhou, China.

Guangdong Litchi Engineering Research Center, College of Horticulture, South China Agricultural University, Guangzhou, China.

出版信息

J Exp Bot. 2020 Jul 6;71(14):4069-4082. doi: 10.1093/jxb/eraa162.

Abstract

Abscission is triggered by multiple environmental and developmental cues, including endogenous plant hormones. KNOTTED-LIKE HOMEOBOX (KNOX) transcription factors (TFs) play an important role in controlling abscission in plants. However, the underlying molecular mechanism of KNOX TFs in abscission is largely unknown. Here, we identified LcKNAT1, a KNOTTED-LIKE FROM ARABIDOPSIS THALIANA1 (KNAT1)-like protein from litchi, which regulates abscission by modulating ethylene biosynthesis. LcKNAT1 is expressed in the fruit abscission zone and its expression decreases during fruitlet abscission. Furthermore, the expression of the ethylene biosynthetic genes LcACS1, LcACS7, and LcACO2 increases in the fruit abscission zone, in parallel with the emission of ethylene in fruitlets. In vitro and in vivo assays revealed that LcKNAT1 inhibits the expression of LcACS/ACO genes by directly binding to their promoters. Moreover, ectopic expression of LcKNAT1 represses flower abscission in tomatoes. Transgenic plants expressing LcKNAT1 also showed consistently decreased expression of ACS/ACO genes. Collectively, these results indicate that LcKNAT1 represses abscission via the negative regulation of ethylene biosynthesis.

摘要

脱落是由多种环境和发育信号触发的,包括植物内源激素。类结瘤同源框(KNOX)转录因子在控制植物脱落过程中起重要作用。然而,KNOX转录因子在脱落过程中的潜在分子机制尚不清楚。在这里,我们鉴定了LcKNAT1,一种来自荔枝的拟南芥类结瘤1(KNAT1)样蛋白,它通过调节乙烯生物合成来调控脱落。LcKNAT1在果实脱落区表达,其表达在小果脱落期间降低。此外,乙烯生物合成基因LcACS1、LcACS7和LcACO2在果实脱落区的表达增加,与小果中乙烯的释放同步。体外和体内试验表明,LcKNAT1通过直接结合LcACS/ACO基因的启动子来抑制其表达。此外,LcKNAT1的异位表达抑制了番茄的花脱落。表达LcKNAT1的转基因植物也显示ACS/ACO基因的表达持续降低。总的来说,这些结果表明LcKNAT1通过对乙烯生物合成的负调控来抑制脱落。

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