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首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Climate-induced overwintering challenges for wheat and rye in northern agriculture
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Climate-induced overwintering challenges for wheat and rye in northern agriculture

机译:气候对北方农业中小麦和黑麦的越冬挑战

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Winters are typically harsh in the northernmost agricultural areas of Europe, and winter rye (Secale cereale L.) and wheat (Triticum aestivum L.) are the only winter grain crops that can be grown. However, climate change is projected to result in milder winters, which may enable cultivation of winter crops to a greater extent in the future than is possible today. In this study we aimed at identifying main temperature, precipitation events and characteristics that have resulted in past poor overwintering of rye and wheat in their current production areas in Finland. Using long-term (1970-2006), multi-location datasets, we compared our findings with the projected major changes attributable to climate change. Mixed models were used to estimate mutually comparable overwintering damage to all experiments and logistic regression was used to determine whether climatic parameters are related to high levels of overwintering damage. Severity of overwintering damage, and associated yield penalties, fluctuate considerably on a year-to-year basis and no consistent reduction in variability was recorded during the study period. Particularly for wheat, severity of winter damage in any one year was associated negatively with area sown in the following year. There was no evidence of consistent genetic improvements in winter hardiness, but rye was more winter hardy than wheat. Current risks associated with rye production related to low temperatures could be alleviated in the future, although overwintering damage currently enhanced by high autumn precipitation could increase due to climate change. For wheat, fluctuating conditions hampered overwintering, which may be an even harder challenge in future when weather variation is projected to increase and extreme weather events are projected to become more common.
机译:在欧洲最北端的农业地区,冬季通常比较严酷,黑麦(Secale graine L.)和小麦(Triticum aestivum L.)是唯一可以种植的冬季谷物。但是,预计气候变化将导致冬季更温和,这可能使冬季作物的种植比今天更大。在这项研究中,我们旨在确定导致黑麦和小麦过去在芬兰当前生产地区过冬的较差冬季的主要温度,降水事件和特征。使用长期(1970-2006年)的多地点数据集,我们将我们的发现与预计的可归因于气候变化的主要变化进行了比较。混合模型用于估计所有实验的相互可比较的越冬损害,逻辑回归用于确定气候参数是否与高水平的越冬损害相关。越冬破坏的严重程度以及相关的产量损失,每年都在大幅波动,并且在研究期间未记录到变异性的持续降低。特别是对于小麦,任何一年的冬季破坏严重程度都与第二年播种面积成负相关。没有证据表明抗寒性在遗传上有持续的改善,但是黑麦的抗寒性比小麦强。尽管与气候变化有关的秋冬降水可能会增加目前对越冬造成的越冬损害,但今后可减轻与低温有关的黑麦生产相关的当前风险。对于小麦而言,波动的状况阻碍了越冬,当预计天气变化会增加并且极端天气事件预计会变得更加普遍时,这可能是未来的更大挑战。

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