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蕨类植物不存在普遍的二氧化碳不敏感性证据:所有陆地植物都有同一种气孔控制机制?

No evidence of general CO2 insensitivity in ferns: one stomatal control mechanism for all land plants?

作者信息

Franks Peter J, Britton-Harper Zoe J

机构信息

Faculty of Agriculture and Environment, University of Sydney, Sydney, NSW, 2006, Australia.

出版信息

New Phytol. 2016 Aug;211(3):819-27. doi: 10.1111/nph.14020. Epub 2016 May 23.

Abstract

Stomatal regulation of plant carbon uptake and water loss under changing environmental conditions was a crucial evolutionary step in the colonization of land by plants. There are currently two conflicting models describing the nature of stomatal regulation across terrestrial vascular plants: the first is characterized by a fundamental mechanistic similarity across all lineages, and the second is characterized by the evolution of major differences in angiosperms compared with more ancient lineages. Specifically, the second model posits that stomata of ferns lack a response to elevated atmospheric CO2 concentration (ca ) and therefore cannot regulate leaf intercellular CO2 concentration (ci ). We compared stomatal sensitivity to changes in ca in three distantly related fern species and a representative angiosperm species. Fern and angiosperm stomata responded strongly and similarly to changes in ca . As a result, ci /ca was maintained within narrow limits during ca changes. Our results challenge the model in which stomata of ferns generally lack a response to elevated ca and that angiosperms evolved new dynamic mechanisms for regulating leaf gas exchange that differ fundamentally from ferns. Instead, the results are consistent with a universal stomatal control mechanism that is fundamentally conserved across ferns and angiosperms, and therefore likely all vascular plant divisions.

摘要

在不断变化的环境条件下,植物气孔对碳吸收和水分流失的调节是植物在陆地定殖过程中的关键进化步骤。目前有两种相互冲突的模型描述陆地维管植物气孔调节的本质:第一种模型的特点是所有谱系在基本机制上具有相似性,第二种模型的特点是与更古老的谱系相比,被子植物存在重大差异的进化。具体而言,第二种模型认为蕨类植物的气孔对大气CO₂浓度(ca)升高缺乏响应,因此无法调节叶片细胞间CO₂浓度(ci)。我们比较了三种亲缘关系较远的蕨类植物和一种代表性被子植物物种的气孔对ca变化的敏感性。蕨类植物和被子植物的气孔对ca变化的反应强烈且相似。因此,在ca变化期间,ci/ca保持在狭窄范围内。我们的结果挑战了这样一种模型,即蕨类植物的气孔通常对ca升高缺乏响应,以及被子植物进化出了与蕨类植物根本不同的调节叶片气体交换的新动态机制。相反,这些结果与一种普遍的气孔控制机制一致,该机制在蕨类植物和被子植物中基本保守,因此可能在所有维管植物类群中都存在。

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