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IbPYL8-IbbHLH66-IbbHLH118复合物介导甘薯中脱落酸依赖的干旱响应。

The IbPYL8-IbbHLH66-IbbHLH118 complex mediates the abscisic acid-dependent drought response in sweet potato.

作者信息

Xue Luyao, Wei Zihao, Zhai Hong, Xing Shihan, Wang Yuxin, He Shaozhen, Gao Shaopei, Zhao Ning, Zhang Huan, Liu Qingchang

机构信息

Key Laboratory of Sweet Potato Biology and Biotechnology, Ministry of Agriculture and Rural Affairs/Beijing Key Laboratory of Crop Genetic Improvement/Laboratory of Crop Heterosis & Utilization and Joint Laboratory for International Cooperation in Crop Molecular Breeding, Ministry of Education, College of Agronomy & Biotechnology, China Agricultural University, Beijing, 100193, China.

出版信息

New Phytol. 2022 Dec;236(6):2151-2171. doi: 10.1111/nph.18502. Epub 2022 Oct 11.

Abstract

Drought limits crop development and yields. bHLH (basic helix-loop-helix) transcription factors play critical roles in regulating the drought response in many plants, but their roles in this process in sweet potato are unknown. Here, we report that two bHLH proteins, IbbHLH118 and IbbHLH66, play opposite roles in the ABA-mediated drought response in sweet potato. ABA treatment repressed IbbHLH118 expression but induced IbbHLH66 expression in the drought-tolerant sweet potato line Xushu55-2. Overexpressing IbbHLH118 reduced drought tolerance, whereas overexpressing IbbHLH66 enhanced drought tolerance, in sweet potato. IbbHLH118 directly binds to the E-boxes in the promoters of ABA-insensitive 5 (IbABI5), ABA-responsive element binding factor 2 (IbABF2) and tonoplast intrinsic protein 1 (IbTIP1) to suppress their transcription. IbbHLH118 forms homodimers with itself or heterodimers with IbbHLH66. Both of the IbbHLHs interact with the ABA receptor IbPYL8. ABA accumulates under drought stress, promoting the formation of the IbPYL8-IbbHLH66-IbbHLH118 complex. This complex interferes with IbbHLH118's repression of ABA-responsive genes, thereby activating ABA responses and enhancing drought tolerance. These findings shed light on the role of the IbPYL8-IbbHLH66-IbbHLH118 complex in the ABA-dependent drought response of sweet potato and identify candidate genes for developing elite crop varieties with enhanced drought tolerance.

摘要

干旱限制作物生长发育及产量。bHLH(碱性螺旋-环-螺旋)转录因子在调控多种植物的干旱响应中发挥关键作用,但它们在甘薯这一过程中的作用尚不清楚。在此,我们报道了两个bHLH蛋白IbbHLH118和IbbHLH66在甘薯ABA介导的干旱响应中发挥相反作用。ABA处理抑制了耐旱甘薯品种徐薯55-2中IbbHLH118的表达,但诱导了IbbHLH66的表达。在甘薯中,过表达IbbHLH118降低了耐旱性,而过表达IbbHLH66增强了耐旱性。IbbHLH118直接结合到脱落酸不敏感5(IbABI5)、脱落酸响应元件结合因子2(IbABF2)和液泡膜内在蛋白1(IbTIP1)启动子中的E-boxes上,以抑制它们的转录。IbbHLH118与自身形成同二聚体或与IbbHLH66形成异二聚体。这两个IbbHLH蛋白均与ABA受体IbPYL8相互作用。干旱胁迫下ABA积累,促进了IbPYL8-IbbHLH66-IbbHLH118复合物的形成。该复合物干扰IbbHLH118对ABA响应基因的抑制作用,从而激活ABA反应并增强耐旱性。这些发现揭示了IbPYL8-IbbHLH66-IbbHLH118复合物在甘薯ABA依赖的干旱响应中的作用,并鉴定出用于培育耐旱优良作物品种的候选基因。

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