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云使弗雷泽冷杉(Pursh.)Poiret树冠内的嫩枝温度、蒸腾作用和光合作用趋于均匀。

Clouds homogenize shoot temperatures, transpiration, and photosynthesis within crowns of Abies fraseri (Pursh.) Poiret.

作者信息

Hernandez-Moreno J Melissa, Bayeur Nicole M, Coley Harold D, Hughes Nicole M

机构信息

Department of Biology, High Point University, 1 N University Pkwy, High Point, NC, 27268, USA.

出版信息

Oecologia. 2017 Mar;183(3):667-676. doi: 10.1007/s00442-016-3799-7. Epub 2017 Jan 10.

Abstract

Multiple studies have examined the effects of clouds on shoot and canopy-level microclimate and physiological processes; none have yet done so on the scale of individual plant crowns. We compared incident photosynthetically active radiation (PAR), leaf temperatures, chlorophyll fluorescence, and photosynthetic gas exchange of shoots in three different spatial locations of Abies fraseri crowns on sunny (clear to partly cloudy) versus overcast days. The field site was a Fraser fir farm (1038 m elevation) in the Appalachian mountains, USA. Ten saplings of the same age class were marked and revisited for all measurements. Sunny conditions corresponded with 5-10× greater sunlight incidence on south-facing outer shoots compared to south-facing inner and north-facing outer shoots, which were shaded and received only indirect (diffuse) sunlight. Differences in spatial distribution of irradiance were mirrored in differences in shoot temperatures, photosynthesis, and transpiration, which were all greater in south-facing outer shoots compared to more shaded crown locations. In contrast, overcast conditions corresponded with more homogeneous sunlight distribution between north and south-facing outer shoots, and similar shoot temperatures, chlorophyll fluorescence (ΦPSII), photosynthesis, and transpiration; these effects were observed in south-facing inner shoots as well, but to a lesser extent. There was no significant difference in conductance between different crown locations on sunny or overcast days, indicating spatial differences in transpiration under sunny conditions were likely driven by leaf temperature differences. We conclude that clouds can affect spatial distribution of sunlight and associated physiological parameters not only within forest communities, but within individual crowns as well.

摘要

多项研究探讨了云层对嫩枝和冠层微气候以及生理过程的影响;但尚无研究在单株树冠尺度上开展此类研究。我们比较了弗雷泽冷杉树冠三个不同空间位置的嫩枝在晴天(晴到少云)和阴天条件下的光合有效辐射(PAR)入射量、叶片温度、叶绿素荧光以及光合气体交换情况。研究地点是美国阿巴拉契亚山脉一个海拔1038米的弗雷泽冷杉林场。选取了10株同龄幼树进行标记,并对其进行所有测量。晴天时,朝南的外侧嫩枝接收到的阳光入射量比朝南的内侧嫩枝和朝北的外侧嫩枝多5 - 10倍,后两者处于荫蔽状态,仅接收到间接(漫射)阳光。光照空间分布的差异反映在嫩枝温度、光合作用和蒸腾作用的差异上,朝南的外侧嫩枝的这些指标均高于树冠中更荫蔽的位置。相比之下,阴天时,朝南和朝北的外侧嫩枝之间的阳光分布更为均匀,嫩枝温度、叶绿素荧光(ΦPSII)、光合作用和蒸腾作用也相似;朝南的内侧嫩枝也观察到了这些效应,但程度较小。晴天或阴天时,不同树冠位置之间的导度没有显著差异,这表明晴天条件下蒸腾作用的空间差异可能是由叶片温度差异驱动的。我们得出结论,云层不仅会影响森林群落内,还会影响单株树冠内阳光的空间分布以及相关生理参数。

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