附着和脱落冷杉叶片的光合参数和气孔导度。

Q3 Agricultural and Biological Sciences
Plant-environment interactions (Hoboken, N.J.) Pub Date : 2021-08-05 eCollection Date: 2021-08-01 DOI:10.1002/pei3.10059
Matthew E Akalusi, Fan-Rui Meng, Charles P-A Bourque
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引用次数: 0

摘要

叶面气体交换测量可在脱落的叶片上进行,以解决难以进入高大树木树冠的难题。不过,分离可能会影响叶片的气体交换。因此有必要研究分离枝条上叶片的气体交换特性,以评估使用分离枝条进行气体交换分析的可行性。我们比较了生长季节香冷杉(Abies balsamea (L.) Mill.)附着枝条和分离枝条叶片的光合参数和气孔导度。数据采用线性混合效应模型进行分析,其中有固定效应和随机效应(分别为枝条状态和测量月份以及树的数量)。树枝脱落对以下方面没有明显影响:(i) 当前环境二氧化碳浓度(400 µmol mol-1, A 400)下的光合作用;(ii) 核酮糖-1,5-二磷酸(RuBP)羧化(V cmax)和再生(J max)的最大速率;(iii) J max 与 V cmax 的比率(即 J max:V cmax);以及 (iv) 研究期间的气孔导度(g s)(p = 0.120-0.335)。所有气体交换变量都有很强的季节效应(p ≤ 0.001-0.015)。在温暖的夏季对脱落叶片进行气体交换测量时应小心谨慎。在生长季节较凉爽的月份,可以使用长度为 50-80 厘米的香冷杉分离枝条上的叶片,在分离后 30 分钟内进行可靠的气体交换测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Photosynthetic parameters and stomatal conductance in attached and detached balsam fir foliage.

Photosynthetic parameters and stomatal conductance in attached and detached balsam fir foliage.

Photosynthetic parameters and stomatal conductance in attached and detached balsam fir foliage.

Photosynthetic parameters and stomatal conductance in attached and detached balsam fir foliage.

Leaf level gas-exchange measurements can be made on detached foliage to address the challenge of access to the crown of tall trees. However, detachment may impact leaf gas exchange. This necessitates the study of gas-exchange characteristics of foliage on detached branches to assess the feasibility of using detached branches for gas-exchange analysis. We compared photosynthetic parameters and stomatal conductance in foliage of attached and detached branches of balsam fir [Abies balsamea (L.) Mill.] during the growing season. Data were analyzed using a linear mixed-effect model, with fixed and random effects (branch status and measurement month, and tree number, respectively). Branch detachment had no significant effects on: (i) photosynthesis at the current ambient CO2 concentration (400 µmol mol-1, A 400); (ii) maximum rates of Ribulose-1,5-bisphosphate (RuBP) carboxylation (V cmax) and regeneration (J max); (iii) the ratio of J max to V cmax (i.e., J max:V cmax), and (iv) stomatal conductance (g s) during the study period (p = 0.120-0.335). There was a strong seasonal effect on all gas-exchange variables (p ≤ 0.001-0.015). Gas-exchange measurements made on detached foliage during the warm summer months should be performed with care. Reliable gas-exchange measurements can be obtained using balsam fir foliage on detached branches 50-80 cm in length, in cooler growing-season months, up to 30 min after detachment.

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来源期刊
CiteScore
2.70
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