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SbbHLH85, a bHLH member, modulates resilience to salt stress by regulating root hair growth in sorghum.
Song, Yushuang; Li, Simin; Sui, Yi; Zheng, Hongxiang; Han, Guoliang; Sun, Xi; Yang, Wenjing; Wang, Hailian; Zhuang, Kunyang; Kong, Fanying; Meng, Qingwei; Sui, Na.
Afiliación
  • Song Y; Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Jinan, 250014, China.
  • Li S; Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Jinan, 250014, China.
  • Sui Y; Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
  • Zheng H; Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Jinan, 250014, China.
  • Han G; Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Jinan, 250014, China.
  • Sun X; Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Jinan, 250014, China.
  • Yang W; Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Jinan, 250014, China.
  • Wang H; Crop Research Institute, Shandong Academy of Agricultural Sciences, Jinan, 250100, China.
  • Zhuang K; State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian, 271018, China.
  • Kong F; State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian, 271018, China.
  • Meng Q; State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian, 271018, China.
  • Sui N; Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Jinan, 250014, China. suina@sdnu.edu.cn.
Theor Appl Genet ; 135(1): 201-216, 2022 Jan.
Article en En | MEDLINE | ID: mdl-34633473
ABSTRACT
bHLH family proteins play an important role in plant stress response. However, the molecular mechanism regulating the salt response of bHLH is largely unknown. This study aimed to investigate the function and regulating mechanism of the sweet sorghum SbbHLH85 during salt stress. The results showed that SbbHLH85 was different from its homologs in other species. Also, it was a new atypical bHLH transcription factor and a key gene for root development in sweet sorghum. The overexpression of SbbHLH85 resulted in significantly increased number and length of root hairs via ABA and auxin signaling pathways, increasing the absorption of Na+. Thus, SbbHLH85 plays a negative regulatory role in the salt tolerance of sorghum. We identified a potential interaction partner of SbbHLH85, which was phosphate transporter chaperone PHF1 and modulated the distribution of phosphate, through screening a yeast two-hybrid library. Both yeast two-hybrid and BiFC experiments confirmed the interaction between SbbHLH85 and PHF1. The overexpression of SbbHLH85 led to a decrease in the expression of PHF1 as well as the content of Pi. Based on these results, we suggested that the increase in the Na+ content and the decrease in the Pi content resulted in the salt sensitivity of transgenic sorghum.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Proteínas de Plantas / Raíces de Plantas / Sorghum / Factores de Transcripción con Motivo Hélice-Asa-Hélice Básico / Tolerancia a la Sal Tipo de estudio: Prognostic_studies Idioma: En Revista: Theor Appl Genet Año: 2022 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Proteínas de Plantas / Raíces de Plantas / Sorghum / Factores de Transcripción con Motivo Hélice-Asa-Hélice Básico / Tolerancia a la Sal Tipo de estudio: Prognostic_studies Idioma: En Revista: Theor Appl Genet Año: 2022 Tipo del documento: Article País de afiliación: China
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