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首页> 外文期刊>Global change biology >Increased heat requirement for leaf flushing in temperate woody species over 1980-2012: effects of chilling, precipitation and insolation
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Increased heat requirement for leaf flushing in temperate woody species over 1980-2012: effects of chilling, precipitation and insolation

机译:在1980-2012年间,温带木本植物叶片冲洗所需的热量增加:冷藏,降水和日晒的影响

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Recent studies have revealed large unexplained variation in heat requirement-based phenology models, resulting in large uncertainty when predicting ecosystem carbon and water balance responses to climate variability. Improving our understanding of the heat requirement for spring phenology is thus urgently needed. In this study, we estimated the species-specific heat requirement for leaf flushing of 13 temperate woody species using long-term phenological observations from Europe and North America. The species were defined as early and late flushing species according to the mean date of leaf flushing across all sites. Partial correlation analyses were applied to determine the temporal correlations between heat requirement and chilling accumulation, precipitation and insolation sum during dormancy. We found that the heat requirement for leaf flushing increased by almost 50% over the study period 1980-2012, with an average of 30 heat units per decade. This temporal increase in heat requirement was observed in all species, but was much larger for late than for early flushing species. Consistent with previous studies, we found that the heat requirement negatively correlates with chilling accumulation. Interestingly, after removing the variation induced by chilling accumulation, a predominantly positive partial correlation exists between heat requirement and precipitation sum, and a predominantly negative correlation between heat requirement and insolation sum. This suggests that besides the well-known effect of chilling, the heat requirement for leaf flushing is also influenced by precipitation and insolation sum during dormancy. However, we hypothesize that the observed precipitation and insolation effects might be artefacts attributable to the inappropriate use of air temperature in the heat requirement quantification. Rather than air temperature, meristem temperature is probably the prominent driver of the leaf flushing process, but these data are not available. Further experimental research is thus needed to verify whether insolation and precipitation sums directly affect the heat requirement for leaf flushing.
机译:最近的研究表明,基于热量需求的物候模型存在无法解释的巨大变化,从而在预测生态系统碳和水平衡对气候变化的响应时存在很大的不确定性。因此,迫切需要提高我们对春季物候的热量需求的理解。在这项研究中,我们使用来自欧洲和北美的长期物候观测结果,估计了13种温带木本植物叶片潮红的特定物种热需求。根据所有地点的平均潮吹日期,将该种类定义为早潮冲和晚潮冲。应用部分相关分析来确定休眠期间热量需求与冷量累积,降水和日照量之间的时间相关性。我们发现,在1980年至2012年的研究期间,叶片冲洗所需的热量增加了近50%,平均每10个热量单位30个热量单位。在所有物种中均观察到这种热量需求的暂时增加,但后期比早期潮红物种要大得多。与以前的研究一致,我们发现热量需求与冷却蓄积负相关。有趣的是,在消除由冷积聚引起的变化之后,热量需求和降水量之间主要存在正相关,热量需求和日照量之间主要存在负相关。这表明,除了众所周知的冷却效果以外,休眠期间降水和日照总和还影响叶片冲洗的热量需求。但是,我们假设观察到的降水和日照效应可能是由于热量需求量化中空气温度使用不当而造成的假象。分生组织温度可能不是叶子温度的主要驱动因素,而不是空气温度,但是这些数据不可用。因此,需要进一步的实验研究来验证日照和降水量是否直接影响叶片冲洗的热量需求。

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