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SimiR396d靶向SiGRF1以调控谷子的耐旱性和根系生长。

SimiR396d targets SiGRF1 to regulate drought tolerance and root growth in foxtail millet.

作者信息

Zhang Yifan, Xiao Tong, Yi Fei, Yu Jingjuan

机构信息

State Key Laboratory of Agrobiotechnology, College of Biological Sciences, China Agricultural University, Beijing 100193, China.

State Key Laboratory of Agrobiotechnology, College of Biological Sciences, China Agricultural University, Beijing 100193, China; State Key Laboratory of Plant Physiology and Biochemistry, Engineering Research Center of Plant Growth Regulator, Ministry of Education, College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, China.

出版信息

Plant Sci. 2023 Jan;326:111492. doi: 10.1016/j.plantsci.2022.111492. Epub 2022 Oct 13.

Abstract

MicroRNAs play critical roles in growth, development and abiotic stress responses. SimR396d is a miRNA whose expression level is much higher in foxtail millet roots than other tissues. Whether SimR396d is involved in foxtail millet root growth and response to abiotic stress is still unknown. Here, we demonstrate that SimiR396d modulates both drought response and root growth in foxtail millet. The expression of SimiR396d is induced by PEG treatment. Overexpression of SimiR396d enhances drought tolerance and root length, while knockdown SimiR396d expression using target mimics of SimiR396d (MIM396) resulted in reduced drought tolerance and shortened root length. Furthermore, we identified and confirmed a plant-specific transcription factor, growth-regulating factor 1 (SiGRF1), as a direct target of SimiR396d. Overexpression of SiGRF1 in foxtail millet resulted in suppressed root growth and reduced sensitivity to drought stress. Moreover, ethylene signaling is necessary for SimiR396d and SiGRF1 to participate in the regulation of plant root growth. These results revealed a pivotal role of SimiR396d in drought tolerance and root growth in foxtail millet. SimiR396d-SiGRF1 regulatory module provides a strategy to improve drought-stress resistance of crop.

摘要

微小RNA在生长、发育及非生物胁迫应答中发挥着关键作用。SimR396d是一种在谷子根部的表达水平远高于其他组织的微小RNA。SimR396d是否参与谷子根系生长及对非生物胁迫的应答仍不清楚。在此,我们证明SimiR396d调控谷子的干旱应答及根系生长。SimiR396d的表达受聚乙二醇(PEG)处理诱导。过表达SimiR396d增强了耐旱性及根长,而使用SimiR396d的靶标模拟物(MIM396)敲低SimiR396d的表达导致耐旱性降低和根长缩短。此外,我们鉴定并证实了一种植物特异性转录因子——生长调节因子1(SiGRF1)是SimiR396d的直接靶标。在谷子中过表达SiGRF1导致根系生长受抑制且对干旱胁迫的敏感性降低。此外,乙烯信号传导对于SimiR396d和SiGRF1参与植物根系生长调控是必需的。这些结果揭示了SimiR396d在谷子耐旱性和根系生长中的关键作用。SimiR396d-SiGRF1调控模块为提高作物的干旱胁迫抗性提供了一种策略。

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