谭凯炎, 房世波, 任三学. 2012: 增温对华北冬小麦生产影响的试验研究. 气象学报, (4): 902-908. DOI: 10.11676/qxxb2012.076
引用本文: 谭凯炎, 房世波, 任三学. 2012: 增温对华北冬小麦生产影响的试验研究. 气象学报, (4): 902-908. DOI: 10.11676/qxxb2012.076
TAN Kaiyan, FANG Shibo, REN Sanxue. 2012: Experiment study of winter wheat growth and yield response to climate warming. Acta Meteorologica Sinica, (4): 902-908. DOI: 10.11676/qxxb2012.076
Citation: TAN Kaiyan, FANG Shibo, REN Sanxue. 2012: Experiment study of winter wheat growth and yield response to climate warming. Acta Meteorologica Sinica, (4): 902-908. DOI: 10.11676/qxxb2012.076

增温对华北冬小麦生产影响的试验研究

Experiment study of winter wheat growth and yield response to climate warming

  • 摘要: 为了探索和验证未来地表气温升高对中国冬小麦生产的影响,了解冬小麦生长发育和产量对增温响应的基本特征,在田间条件下采用红外辐射器增温的方法(FATI)对冬小麦全生育期进行昼夜增温处理,分析了增温对冬小麦生长发育和产量构成及其耗水量的影响。结果表明,全生育期增温使冬小麦返青期显著提前,冬后生育阶段整体前移10 d以上,全生育期天数减少,但营养生长时间大幅增加,开花至乳熟时间延长,乳熟至成熟时间缩短;在偏冷年份,增温处理保障了小麦的正常分蘖和生长,株高显著提高,有效穗数比对照增加27.4%,籽粒产量比对照大幅增加;在偏暖年份,增温导致小麦穗分化时间延长,穗粒数增加,灌浆中后期遭受高温危害,千粒重显著降低,产量下降;增温致使冬小麦生产耗水量增加。就华北冬小麦而言,冬季及早春一定幅度的升温有利于小麦生产,但增幅过大可能会导致不利结果;而春末夏初升温对小麦生产是不利的。

     

    Abstract: In order to explore and validate the impact of further climate warming on winter wheat growth and yield, and to obtain basic features of winter wheat’s response to temperature increase, the experiments with temperature increase on all day (TI) during the whole growing season of winter wheat were carried out by using the technique of Free Air Temperature Increase (FATI) in the field. The impacts of TI on yield, growth and water consumption of winter wheat were also analyzed. The results showed: (1) Compared with control treatment (CK), phenological phase of return green was earlier significantly in TI, and all phenological phases after wintering period were earlier more than 10 d. The duration of vegetative growth was increased, the duration from flowering to milky was prolonged, and the duration from milky to maturity was shortened in TI. In the relatively colder years, temperature increase could safeguard normal tiller and growth of winter wheat against low-temperature, and TI could significantly increase plant height, produce more panicles (by 24.7% than CK), and enhance grain yield. In relatively warmer years, TI caused the duration of spike differentiation extend, kernels per panicle increase, and 1000 grain weight decreased owing to heat injury in the late period of grain filling and yield. Besides, the water consumption of wheat increased. For winter wheat in north China, a certain level of warming in the winter and early spring would be beneficial to wheat production, but if the temperature increased is too high it might lead to adverse results. The temperature increase in spring and early summer would be disadvantageous to wheat production.

     

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