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Climate change and extension of the Ginkgo biloba L. growing season in Japan

机译:日本的气候变化和银杏生长季节的延长

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摘要

To understand the effects of climate change on the growing season of plants in Japan, we conducted trend analysis of phenological phases and examined the relationship between phenology and air temperatures. We used phenological data for Ginkgo biloba L., collected from 1953 to 2000. We defined the beginning and the end of the growing season (BGS and EGS) as the dates of budding and leaf fall, respectively. Changes in the air temperature in the 45 days before the date of BGS affected annual variation in BGS. The annual variation in air temperature over the 85 days before EGS affected the date of EGS. The average annual air temperature in Japan has increased by 1.3degreesC over the last four decades (1961-2000), and this increase has caused changes in ginkgo phenology. In the last five decades (1953-2000), BGS has occurred approximately 4 days earlier than previously, and EGS has occurred about 8 days later. Consequently, since 1953 the length of the growing season (LGS) has been extended by 12 days. Since around 1970, LGS and air temperatures have shown increasing trends. Although many researchers have stated that phenological events are not affected by the air temperature in the fall, we found high correlations not only between budding dates and air temperatures in spring but also between leaf-fall dates and air temperatures in autumn. If the mean annual air temperature increases by 1degreesC, LGS could be extended by 10 days. We also examined the spatial distribution of the rate of LGS extension, but we did not find an obvious relationship between LGS extension and latitude.
机译:为了了解气候变化对日本植物生长季节的影响,我们对物候期进行了趋势分析,并研究了物候与气温之间的关系。我们使用从1953年到2000年收集的银杏的物候数据。我们将生长季节的开始和结束(BGS和EGS)分别定义为出芽和叶片倒落的日期。 BGS日期前45天的气温变化影响BGS的年度变化。 EGS之前的85天内,气温的年度变化影响了EGS的日期。在过去的四个十年中(1961-2000年),日本的年平均气温升高了1.3摄氏度,这种升高引起了银杏物候的变化。在过去的五十年(1953-2000年)中,BGS发生的时间比以前大约早了4天,而EGS发生的时间大约是在8天后。因此,自1953年以来,生长季节(LGS)的长度延长了12天。自1970年左右以来,LGS和气温呈上升趋势。尽管许多研究人员指出,物候事件不受秋季气温的影响,但我们发现不仅春季发芽日期与气温之间存在高度相关性,秋季落叶日期与气温之间也具有高度相关性。如果年平均气温升高1摄氏度,LGS可能会延长10天。我们还研究了LGS扩展率的空间分布,但没有发现LGS扩展与纬度之间存在明显的关系。

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