Short-term physiological responses to drought stress in seedling of tropical and temperate maize (Zea mays L.) cultivars

P. Zhao, Jin Wang, N. Juntawong, C. Aekatasanawan, P. Kermanee, S. Roytrakul, Yinsuo Jia, Chunhong Ma
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Abstract

Understanding of the response of tropical and temperate maize (Zea mays L.) to drought is the first step for tolerant temperate maize improvement. Eight maize hybrids were used to investigate physiology responses under drought stress, four of them were tropical maize and the others were temperate maize. Results showed that there were different drought tolerances but similar trends in both tropical maize and temperate maize. Gas exchange parameters revealed different strategies of maize under the stress. In our study, most of the temperate hybrids maintained open stomata to keep a higher photosynthesis rate at the beginning of stress, while the other hybrids decreased stomatal conductance. Compared to temperate maize, the tropical maize had higher antioxidase activity and greater physiological parameter variation among hybrids. KS5731 and ZD309 had stronger drought resistance among tropical and temperate maize hybrids separately. Tolerant hybrids maintained active photosynthesis, have higher osmotic adjustment ability and antioxidase activities but lower malonaldehyde content than the sensitive ones. Our results led to a better understanding of the physiological responses of tropical and temperate maize plants to drought stress and may provide an insight of breeding for drought resistance in maize.
热带和温带玉米品种幼苗对干旱胁迫的短期生理响应
了解热带和温带玉米(Zea mays L.)对干旱的响应是进行温带玉米耐受性改良的第一步。以8个热带玉米和4个温带玉米杂交组合为材料,研究了干旱胁迫下玉米的生理反应。结果表明,热带玉米和温带玉米的耐旱性不同,但趋势相似。气体交换参数揭示了胁迫下玉米的不同策略。在我们的研究中,大多数温带杂交种在胁迫开始时保持气孔开放以保持较高的光合速率,而其他杂交种则降低气孔导度。与温带玉米相比,热带玉米具有更高的抗氧化酶活性和更大的杂交生理参数变异。KS5731和ZD309分别在热带和温带玉米杂交种中抗旱性较强。抗性杂交种保持了较好的光合活性,具有较高的渗透调节能力和抗氧化酶活性,但丙二醛含量低于敏感杂交种。我们的研究结果有助于更好地了解热带和温带玉米植物对干旱胁迫的生理反应,并可能为玉米抗旱性育种提供见解。
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