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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Responses of bud-break phenology to daily-asymmetric warming: daytime warming intensifies the advancement of bud break
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Responses of bud-break phenology to daily-asymmetric warming: daytime warming intensifies the advancement of bud break

机译:萌芽候选对日常不对称变暖的反应:白天变暖加剧了芽突破的进步

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There is evidence that the ongoing climate change is happening through nighttime rather than daytime warming. How such a daily-asymmetric warming modifies plant phenology is still unclear. We investigated the effects of asymmetric warming on bud break by daily monitoring seedlings belonging to 26 black spruce [Picea mariana (Mill.) BSP.] and 15 balsam fir [Abies balsamea (L.) Mill.] provenances from the native range in Canada. Seedlings were subjected to either daytime or nighttime warming in three growth chambers at temperatures ranging between 10 and 24 degrees C. On average, a warming of 4 degrees C advanced the timings of bud break in both species by 2.4 days, with the later phases being more sensitive to the treatment. Bud break of both species responded more strongly to daytime warming, with the bud break occurred 1.2 and 3.2 days earlier under daytime than nighttime warming in black spruce and balsam fir, respectively. A marked ecotypic differentiation was only observed in black spruce that originated from provenances distributed broadly across Canada, with seedlings from the warmest provenance completing bud break 8.3 days later than those from the coldest one. However, no significant effect of provenance was observed for balsam fir, the narrowly distributed species. Overall, the above results suggest that a higher temporal resolution such as temperatures during daytime and nighttime, and higher spatial resolution should be taken into account to improve the accuracy of phenological model predictions under global change scenarios. Phenological models based on daily average temperature should take into account the diverging impacts of asymmetric warming on plant phenology. Our findings may indicate that the influence of warming on plant phenology may be less dramatic than expected.
机译:有证据表明,正在进行的气候变化正在通过夜间而不是白天变暖。如何如此日常不对称变暖改变植物候选仍然不清楚。我们研究了属于26黑色云杉的日常监测幼苗对26黑色云杉(Mill.)BSP。]和15 Balsamea(L.)磨坊的芽脉冲对芽突破的影响。在三个生长室中进行幼苗在10到24℃的温度下进行白天或夜间升温。平均而言,4摄氏度的变暖提前2.4天的芽突破的定时,后期阶段对治疗更敏感。两种物种的芽突破更加强烈地变暖,芽突破发生在白天早些时候比黑色云杉和香脂冷却中的夜间温暖,分别发生了1.2和3.2天。只有明显的生态型分化仅在黑色云杉中观察到源自加拿大泛滥分布的销量,幼苗从最温暖的出处完成芽突破8.3天后比从最寒冷的人的那些。然而,对于Balsam FIR,狭窄分布的物种没有观察到出处的显着效果。总的来说,上述结果表明,应考虑到白天和夜间温度和更高的空间分辨率等较高的时间分辨率,以提高全球变化方案下的鉴别模型预测的准确性。基于每日平均气温的酚类模型应考虑到不对称变暖对植物候选的影响。我们的研究结果可能表明,植物候热的影响可能比预期的戏剧性较小。

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