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生态学杂志 ›› 2026, Vol. 45 ›› Issue (6): 1870-1879.doi: 10.13292/j.1000-4890.202606.003

• 研究报告 • 上一篇    下一篇

干旱胁迫和复水对大豆叶片光合特性及品质产量的影响

何佩瑾1,孙安妮2,李琳3,徐庆喆2,惠蒙蒙1,高西宁1,4*,王立为1,殷红1   

  1. (1沈阳农业大学农学院, 沈阳 110866; 2鞍山市气象局, 辽宁鞍山 114000; 3辽宁省气象装备保障中心, 沈阳 110166; 4沈阳农业与生态气象研究院, 沈阳 110166)
  • 出版日期:2026-06-10 发布日期:2026-12-01

Effects of drought stress and rehydration on leaf photosynthetic characteristics, quality and yield of soybean.

HE Peijin1, SUN Anni2, LI Lin3, XU Qingzhe2, HUI Mengmeng1, GAO Xining1,4*, WANG Liwei1, YIN Hong1   

  1.  (1College of Agronomy, Shenyang Agricultural University, Shenyang 110866, China; 2Anshan Meteorological Bureau, Anshan, 114000, Liaoning, China; 3Liaoning Meteorological Equipment Support Center, Shenyang 110166, China; 4Shenyang Academy of Agricultural and Ecological Meteorology, Shenyang 110166, China).

  • Online:2026-06-10 Published:2026-12-01

摘要: 全球变暖加剧,干旱事件频发,严重影响农业生产。为揭示大豆抗旱性及灾变恢复过程,本研究以“辽豆15”为对象,分别于大豆进入三叶期和开花期开始控水,设置轻度、中度和重度3种干旱胁迫强度,在胁迫结束后复水至对照水平(土壤相对湿度保持在80%±5%),研究干旱胁迫和复水条件下,大豆光合特性及品质产量的变化。结果表明:干旱胁迫使大豆净光合速率、脂肪、荚数、荚重、粒数及产量减少,水分利用效率、蛋白质、秕荚数和秕粒数增加,且胁迫强度越大,影响越大;轻、中度胁迫处理下的大豆在复水后10~15 d,基本恢复至对照水平,而重度胁迫处理未恢复,转为非气孔限制;相较于苗期,大豆在花荚期对干旱胁迫响应更为显著。本研究引入光合弹性力、抵抗力和回弹力等动态抗逆指标,构建了全面的抗旱性评价体系,为大豆抗旱育种与水分管理提供了重要的理论依据。


关键词: 干旱和复水, 净光合速率, 蒸腾速率, 水分利用效率, 光合适应性指标, 品质和产量

Abstract: Drought events have occurred more frequently under climate change, which greatly threaten agricultural development. With the cultivar “Liaodou 15”, we examined the drought resistance and the post-disaster recovery process of soybeans. There were three drought stress intensities (mild, moderate, and severe), with water being controlled at the beginning of the three-leaf stage and flowering stage of soybeans. After the stress was over, water was restored to the control level (with soil relative humidity maintained at 80% ± 5%). The changes in photosynthetic characteristics, quality and yield of soybeans under drought stress and re-watering conditions were investigated. The results showed that drought stress reduced net photosynthetic rate, fat content, pod number, pod weight, number of seeds, and the yield of soybeans, but increased water use efficiency, protein content, number of shriveled pods, and number of shriveled seeds. The more severe the drought stress, the greater the impacts were. After re-watering for 10 to 15 days, soybean plants under mild and moderate drought  nearly recovered to the control level, whereas those under severe drought  were irrecoverable and became non-stomatal. Compared to the seedling stage, soybeans showed a more significant response to drought stress during the flowering and podding stages. By investigating dynamic stress resistance indicators such as photosynthetic elasticity, resistance, and resilience, establishing a more comprehensive drought resistance evaluation system, this study provides important theoretical basis for drought-resistant soybean breeding and water management.


Key words: drought and rehydration, net photosynthetic rate, transpiration rate, water use efficiency, photosynthetic adaptability index, quality and yield