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Ongoing seasonally uneven climate warming leads to earlier autumn growth cessation in deciduous trees

机译:持续季节性不均匀的气候变暖导致落叶树的早期秋季生长

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Ongoing global warming is causing phenological shifts that affect photosynthesis and growth rates in temperate woody species. However, the effects of seasonally uneven climate warmingas is occurring in much of Europe, where the winter/spring months are warming twice as fast than the summer/autumn monthson autumn growth cessation (completion of overwintering buds) and leaf senescence, and possible carry-over effects between phenophases, remain under-investigated. We conducted experiments in which we exposed saplings of canopy and understory species to 4 degrees C warming in winter/spring, summer/autumn, or all year to disentangle how the timing of bud break, bud set completion, and leaf senescence is affected by seasonally uneven warming. All-year warming led to significantly delayed leaf senescence, but advanced bud set completion; summer/autumn warming only delayed leaf senescence; and winter/spring warming advanced both bud set and senescence. The non-parallel effects of warming on bud completion and leaf senescence show that leaf senescence alone is an inadequate proxy for autumn growth cessation in trees and counterintuitively suggest that continued uneven seasonal warming will advance cessation of primary growth in autumn, even when leaf senescence is delayed. Phenological responses to warming treatments (earlier spring onset, later autumn senescence) were more than twice as high in understory species than in canopy species, which can partly be explained by the absence of carry-over effects among phenophases in the former group. This underscores the need to consider differences among plant functional types when forecasting the future behaviour of ecosystems.
机译:正在进行的全球变暖导致鉴于影响温带木质物种的光合作用和生长速率的毒性变化。然而,季节性不均匀的气候变暖的影响是在欧洲的大部分内发生的,冬季/春季的变暖比夏季/秋季的秋季生长停止(完全冬季芽)和叶片衰老,以及可能的携带 - 在苯脱硫之间的影响,仍然受到研究。我们进行了实验,在冬季/春季,夏季/秋季,夏季/秋季,夏季/秋季或全年曝光冠层和林藏树苗的实验,以便解开萌芽,芽系列的时间,芽面衰老以及季节性的季节性变暖不均匀。全年变暖导致叶片衰老明显延迟,但芽套装完成;夏季/秋季变暖只有延迟叶衰老;和冬季/春季变暖先进的芽组和衰老。芽完成和叶片衰老的不平行效应表明,单独的叶片衰老是树木中秋季生长停止的不足,并违反季节性变暖将在秋季的秋季进行急转生长的停止,即使叶片衰老延迟。对加热处理的鉴别反应(早期的春季发病,后来秋季衰老)比床边物种的较高的含量超过冠层物种,这可以部分地通过在前组的苯苯磺酶中的缺失的缺失效应部分解释。这强调了在预测生态系统的未来行为时需要考虑植物功能类型之间的差异。

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