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中国农学通报 ›› 2017, Vol. 33 ›› Issue (31): 15-21.doi: 10.11924/j.issn.1000-6850.casb17030084

所属专题: 玉米 农业气象

• 农学 农业基础科学 • 上一篇    下一篇

高湿和干旱对夏玉米灌浆期叶片光合特性的影响

赵花荣,任三学,齐 月   

  1. 中国气象科学研究院,北京,中国气象科学研究院,北京,中国气象局兰州干旱气象研究所/甘肃省干旱气候变化与减灾重点实验室/中国气象局干旱气候变化与减灾重点实验室
  • 收稿日期:2017-03-14 修回日期:2017-10-10 接受日期:2017-08-19 出版日期:2017-11-27 发布日期:2017-11-27
  • 通讯作者: 齐 月
  • 基金资助:
    国家自然科学基金青年项目“灌浆期高温与水分胁迫交互作用对半干旱区春玉米生长和产量影响”(41505098);国家自然科学基金面上项 目“干旱胁迫下作物冠层日光诱导叶绿素荧光响应规律研究”(D010702)。

High Humidity and Drought: Effects on Photosynthetic Characteristics of Summer Maize at Grain Filling Stage

  • Received:2017-03-14 Revised:2017-10-10 Accepted:2017-08-19 Online:2017-11-27 Published:2017-11-27

摘要: [目的]针对土壤高湿和干旱影响夏玉米籽粒灌浆并对其造成减产的灾害问题,为了揭示其致灾的生理机制,[方法]2016年在夏玉米生长季通过人工控制土壤水分,设计了土壤高湿、干旱和对照3种处理,在玉米灌浆期测定叶片的光合特性日变化、光饱和点和光补偿点、夜间叶片暗呼吸等。[结果]结果表明:对照玉米叶片的净光合速率日变化曲线呈双峰型,即“M”型,而高湿处理被弱化为单峰型,干旱处理全天持续走低。气孔导度(Gs)和蒸腾速率(Tr)的日变化规律一致,呈显著正相关;胞间CO2浓度(Ci)和水分利用效率(WUE)的日变化曲线呈反向变化,呈显著负相关。高湿处理的叶片暗呼吸比对照提高0.5800-0.7767μmolCO2m-2.s-1,干旱处理比对照降低0.1767-0.4933μmolCO2m-2.s-1,可能因为土壤高湿情况下,玉米叶片等绿色器官呼吸作用强导致果穗籽粒养分积累少进而造成减产;分析光饱和点和光补偿点发现,高湿处理光合作用有效利用光强的区间拉大,干旱胁迫下,光合作用有效利用光强的区间缩小,这可能是玉米灌浆期干旱造成减产的主要生理原因。

关键词: 太阳高度, 太阳高度, 太阳辐射能, 纬度, 季节, 分布规律

Abstract: Aiming at the effects of high humidity and drought on grain filling and yield reduction of summer maize, and revealing its physiological mechanism to disaster, the authors designed 3 treatments of high humidity, drought and control of soil in the summer maize growing season by artificially controlling soil moisture in 2016, and measured the diurnal variation of photosynthetic characteristics, light saturation point, light compensation point and dark respiration of leaves at night at the grain filling stage. The results showed that: the diurnal variation curve of the net photosynthetic rate of maize leaves was bimodal, that was“M”, while that of the high humidity treatment was weakened into a single-peak pattern, and that of the drought treatment continued to decline throughout the day; the diurnal variation law of stomatal conductance (Gs) and transpiration rate (Tr) was consistent and they had a significant positive correlation; while that of intercellular CO2 concentration (Ci) and water use efficiency (WUE) showed a negative correlation; the dark respiration under the high humidity treatment increased by 0.5800-0.7767 μmol CO2/(m2 ·s) compared with that of the control, while that of the drought treatment reduced by 0.1767-0.4933 μmol CO2/(m2·s) compared with that of the control, the reason for this situation might be that the high humidity condition led to the intensified respiration process of maize leaves and other green organs, which resulted in the decrease of nutrient accumulation in grains and ergo the drop of yield; according to the analysis of light saturation points and light compensation points, the interval of photosynthesis effectively using light under high humidity treatment expanded, while under drought stress, that value went down, which might be the main physiological reason for the reduction of maize yield resulting from drought at the grain filling stage.

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