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杨树物种中叶肉导度与主要非生物胁迫关系的元分析。

A meta-analysis of mesophyll conductance to CO2 in relation to major abiotic stresses in poplar species.

机构信息

Quebec Network for Reforestation and Intensive Silviculture, TELUQ University, Montreal, QC, H2S 3L5, Canada.

Forest Research Institute, University of Quebec in Abitibi-Temiscamingue, Rouyn-Noranda, QC, J9X 5E4, Canada.

出版信息

J Exp Bot. 2021 May 28;72(12):4384-4400. doi: 10.1093/jxb/erab127.

Abstract

Mesophyll conductance (gm) determines the diffusion of CO2 from the substomatal cavities to the site of carboxylation in the chloroplasts and represents a critical component of the diffusive limitation of photosynthesis. In this study, we evaluated the average effect sizes of different environmental constraints on gm in Populus spp., a forest tree model. We collected raw data of 815 A-Ci response curves from 26 datasets to estimate gm, using a single curve-fitting method to alleviate method-related bias. We performed a meta-analysis to assess the effects of different abiotic stresses on gm. We found a significant increase in gm from the bottom to the top of the canopy that was concomitant with the increase of maximum rate of carboxylation and light-saturated photosynthetic rate (Amax). gm was positively associated with increases in soil moisture and nutrient availability, but was insensitive to increasing soil copper concentration and did not vary with atmospheric CO2 concentration. Our results showed that gm was strongly related to Amax and to a lesser extent to stomatal conductance (gs). Moreover, a negative exponential relationship was obtained between gm and specific leaf area, which may be used to scale-up gm within the canopy.

摘要

叶肉导度(gm)决定了 CO2 从叶肉间隙扩散到叶绿体羧化部位的速度,是光合作用扩散限制的关键组成部分。本研究评估了不同环境限制因素对杨树属(Populus spp.)中 gm 的平均效应大小,杨树属是一种森林树木模式物种。我们收集了 26 个数据集的 815 个 A-Ci 响应曲线的原始数据,使用单一曲线拟合方法来减轻方法相关的偏差,以估计 gm。我们进行了荟萃分析以评估不同非生物胁迫对 gm 的影响。我们发现 gm 从树冠底部到顶部呈显著增加趋势,与最大羧化速率和光饱和光合速率(Amax)的增加相一致。gm 与土壤水分和养分供应的增加呈正相关,但对土壤铜浓度的增加不敏感,也不受大气 CO2 浓度变化的影响。我们的结果表明,gm 与 Amax 密切相关,与气孔导度(gs)的关系较小。此外,gm 与比叶面积之间呈负指数关系,这可能用于在树冠内对 gm 进行比例缩放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c677/8163042/a1f7614c2e31/erab127f0001.jpg

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