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资源限制和刈割对气体交换的响应与源-库关系有关吗?

Are gas exchange responses to resource limitation and defoliation linked to source:sink relationships?

机构信息

CSIRO Ecosystem Sciences and Sustainable Agriculture FlagshipUniversity of Tasmania Private Bag 55, Hobart, Tas 7001, Australia.

出版信息

Plant Cell Environ. 2011 Oct;34(10):1652-65. doi: 10.1111/j.1365-3040.2011.02361.x. Epub 2011 Jun 28.

DOI:10.1111/j.1365-3040.2011.02361.x
PMID:21707651
Abstract

Productivity of trees can be affected by limitations in resources such as water and nutrients, and herbivory. However, there is little understanding of their interactive effects on carbon uptake and growth. We hypothesized that: (1) in the absence of defoliation, photosynthetic rate and leaf respiration would be governed by limiting resource(s) and their impact on sink limitation; (2) photosynthetic responses to defoliation would be a consequence of changing source:sink relationships and increased availability of limiting resources; and (3) photosynthesis and leaf respiration would be adjusted in response to limiting resources and defoliation so that growth could be maintained. We tested these hypotheses by examining how leaf photosynthetic processes, respiration, carbohydrate concentrations and growth rates of Eucalyptus globulus were influenced by high or low water and nitrogen (N) availability, and/or defoliation. Photosynthesis of saplings grown with low water was primarily sink limited, whereas photosynthetic responses of saplings grown with low N were suggestive of source limitation. Defoliation resulted in source limitation. Net photosynthetic responses to defoliation were linked to the degree of resource availability, with the largest responses measured in treatments where saplings were ultimately source rather than sink limited. There was good evidence of acclimation to stress, enabling higher rates of C uptake than might otherwise have occurred.

摘要

树木的生产力可能会受到水和养分等资源的限制以及食草作用的影响。然而,人们对它们对碳吸收和生长的相互影响知之甚少。我们假设:(1) 在没有落叶的情况下,光合作用和叶片呼吸将受到限制资源及其对汇限制的影响的控制;(2) 对落叶的光合作用反应将是源汇关系变化和限制资源可用性增加的结果;(3) 光合作用和叶片呼吸将根据限制资源和落叶进行调整,以维持生长。我们通过检查水分和氮 (N) 供应高或低以及/或落叶如何影响桉树幼树的叶片光合作用过程、呼吸作用、碳水化合物浓度和生长速度,来检验这些假设。在低水分条件下生长的幼树的光合作用主要受到汇限制,而在低 N 条件下生长的幼树的光合作用反应表明存在源限制。落叶导致源限制。对落叶的净光合作用响应与资源可用性程度有关,在最终使幼树成为源而不是汇限制的处理中,测量到的响应最大。有充分的证据表明对压力的适应,从而能够比其他情况下吸收更多的 C。

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