Exogenously applied ABA alleviates dysplasia of maize (Zea mays L.) ear under drought stress by altering photosynthesis and sucrose transport.

Plant signaling & behavior Pub Date : 2025-12-01 Epub Date: 2025-02-05 DOI:10.1080/15592324.2025.2462497
Zizhu Jiang, Yu Peng Li, Ping Zhuo Gai, Jinsheng Gao, Lijian Xu
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Abstract

Drought stress inhibits the development of maize ears. Abscisic acid (ABA) is a plant hormone that can regulate the physicology metabolism under abiotic stress. In this study, maize varieties Zhengdan 958 (ZD958) and Xianyu 335 (XY335) with different filling stages were used as materials. Three treatments were set in the filling period: normal irrigation (CK), drought stress (stress); exogenous ABA + drought stress (ABA+stress). They were used to study the physiological regulation of exogenous ABA on maize ears development during drought stress. Exogenous ABA inhibited bald tip and the decline of maize plant biomass, and increased the number and weight of grains per ear at harvest under drought stress by regulating photosynthetic pigment content (Chla, Chlb, Car), gas exchange parameters (Pn, Tr, gs, Ci, Ls), Chla fluorescence parameters (Fv/Fm, ФPSII, ETR, qP, NPQ), chloroplast structure and function, photosynthetic enzyme activity, and the transcription level of genes coding SUTs (ZmSUT1, ZmSUT2, ZmSUT4, ZmSUT6). There was a significant correlation between physiological indexes of sucrose loading in maize and yield factors. This study discussed the mechanism of exogenous ABA alleviating maize ear dysplasia at grain filling stage under drought stress from the perspective of photosynthesis and sucrose transport.

外源外源ABA通过改变玉米的光合作用和蔗糖转运来缓解干旱胁迫下玉米穗发育不良。
干旱胁迫抑制玉米穗的发育。脱落酸(ABA)是植物在非生物胁迫下调节生理代谢的激素。本试验以不同灌浆期的玉米品种郑单958 (ZD958)和鲜玉335 (XY335)为材料。灌浆期设3个处理:正常灌水(CK)、干旱胁迫(stress);外源ABA+干旱胁迫(ABA+胁迫)。研究了干旱胁迫下外源ABA对玉米穗发育的生理调控作用。外源ABA通过调控光合色素含量(Chla、Chlb、Car)、气体交换参数(Pn、Tr、gs、Ci、Ls)、Chla荧光参数(Fv/Fm、ФPSII、ETR、qP、NPQ)、叶绿体结构和功能、光酶活性以及SUTs编码基因(ZmSUT1、ZmSUT2、ZmSUT4、ZmSUT6)的转录水平,抑制干旱胁迫下玉米植株的秃顶和生物量下降,提高收获时穗粒数和重量。玉米蔗糖负荷生理指标与产量因子呈极显著相关。本研究从光合作用和蔗糖转运的角度探讨了外源ABA缓解干旱胁迫下灌浆期玉米穗发育不良的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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