Transcription factors MhDREB2A/MhZAT10 play a role in drought and cold stress response crosstalk in apple.

IF 6.5 1区 生物学 Q1 PLANT SCIENCES
Xing-Liang Li, Dong Meng, Min-Ji Li, Jia Zhou, Yu-Zhang Yang, Bei-Bei Zhou, Qin-Ping Wei, Jun-Ke Zhang
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引用次数: 5

Abstract

Drought and cold stresses seriously affect tree growth and fruit yield during apple (Malus domestica) production, with combined stress causing injury such as shoot shriveling. However, the molecular mechanism underlying crosstalk between responses to drought and cold stress remains to be clarified. In this study, we characterized the zinc finger transcription factor ZINC FINGER OF ARABIDOPSIS THALIANA 10 (ZAT10) through comparative analysis of shoot-shriveling tolerance between tolerant and sensitive apple rootstocks. MhZAT10 responded to both drought and cold stresses. Heterologous expression of MhZAT10 in the sensitive rootstock 'G935' from domesticated apple (Malus domestica) promoted shoot-shriveling tolerance, while silencing of MhZAT10 expression in the tolerant rootstock 'SH6' of Malus honanensis reduced stress tolerance. We determined that the apple transcription factor DEHYDRATION RESPONSE ELEMENT-BINDING PROTEIN 2A (DREB2A) is a direct regulator activating the expression of MhZAT10 in response to drought stress. Apple plants overexpressing both MhDREB2A and MhZAT10 genes exhibited enhanced tolerance to drought and cold stress, while plants overexpressing MhDREB2A but with silenced expression of MhZAT10 showed reduced tolerance, suggesting a critical role of MhDREB2A-MhZAT10 in the crosstalk between drought and cold stress responses. We further identified drought-tolerant MhWRKY31 and cold-tolerant MhMYB88 and MhMYB124 as downstream regulatory target genes of MhZAT10. Our findings reveal a MhDREB2A-MhZAT10 module involved in crosstalk between drought and cold stress responses, which may have applications in apple rootstock breeding programs aimed at developing shoot-shriveling tolerance.

转录因子MhDREB2A/MhZAT10在苹果干旱和寒冷胁迫响应串扰中起作用。
干旱和寒冷胁迫严重影响苹果(Malus domestica)生产过程中果树的生长和产量,并引起茎干等伤害。然而,干旱和寒冷胁迫反应之间串扰的分子机制尚不清楚。本研究以拟南芥10号(ZAT10)锌指转录因子锌指为研究对象,通过对苹果砧木耐干缩性和耐干缩性的比较分析,鉴定了ZAT10的锌指转录因子。MhZAT10对干旱和寒冷的压力都有反应。MhZAT10在驯化苹果(Malus domestica)敏感砧木‘G935’中的异源表达提高了植株的抗逆性,而在苹果(Malus honanensis)抗性砧木‘SH6’中的沉默则降低了植株的抗逆性。我们确定苹果转录因子脱水反应元件结合蛋白2A (DREB2A)是在干旱胁迫下激活MhZAT10表达的直接调节剂。过表达MhDREB2A和MhZAT10基因的苹果植株对干旱和冷胁迫的耐受性增强,而过表达MhDREB2A而沉默表达MhZAT10的植株对干旱和冷胁迫的耐受性降低,这表明MhDREB2A-MhZAT10在干旱和冷胁迫应答之间的串串中起着关键作用。我们进一步鉴定出耐旱的MhWRKY31和耐寒的MhMYB88和MhMYB124作为MhZAT10的下游调控靶基因。我们的研究结果揭示了MhDREB2A-MhZAT10模块参与干旱和冷胁迫响应之间的串扰,这可能在苹果砧木育种计划中具有应用价值,旨在培养耐茎干性。
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来源期刊
Plant Physiology
Plant Physiology 生物-植物科学
CiteScore
12.20
自引率
5.40%
发文量
535
审稿时长
2.3 months
期刊介绍: Plant Physiology® is a distinguished and highly respected journal with a rich history dating back to its establishment in 1926. It stands as a leading international publication in the field of plant biology, covering a comprehensive range of topics from the molecular and structural aspects of plant life to systems biology and ecophysiology. Recognized as the most highly cited journal in plant sciences, Plant Physiology® is a testament to its commitment to excellence and the dissemination of groundbreaking research. As the official publication of the American Society of Plant Biologists, Plant Physiology® upholds rigorous peer-review standards, ensuring that the scientific community receives the highest quality research. The journal releases 12 issues annually, providing a steady stream of new findings and insights to its readership.
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