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水分亏缺下CAM 低效途径对凤梨科植物光合代谢活性的贡献。

The contribution of weak CAM to the photosynthetic metabolic activities of a bromeliad species under water deficit.

机构信息

Departamento de Biologia Vegetal, Instituto de Biologia, Universidade Estadual de Campinas, CP 6109, CEP 13083-970, Campinas, Brazil; Departamento de Botânica, Instituto de Biociências, Universidade de São Paulo, Rua do Matão, nº277, CEP 05508-090, São Paulo, Brazil.

Núcleo de Pesquisa em Fisiologia e Bioquímica, Instituto de Botânica, CP 3005, CEP 01061-970, São Paulo, Brazil.

出版信息

Plant Physiol Biochem. 2018 Feb;123:297-303. doi: 10.1016/j.plaphy.2017.12.030. Epub 2017 Dec 19.

Abstract

The Crassulacean acid metabolism (CAM) can be a transitory strategy for saving water during unfavourable conditions, like a dry season. In some cases, CAM can also contribute to the maintenance of photosynthetic integrity, even if carbon gain and growth are impaired. CAM occurs in different intensities, being stronger or weaker depending on the degree of nocturnal malic acid accumulation. For example, Guzmania monostachia is an epiphytic tank bromeliad that shows an increase in its nocturnal organic acid accumulation and a variable CAM behaviour when exposed to water deficit. In this context, this study aimed at investigating whether the weak CAM displayed by this species may mitigate the harmful effects of water limitation on its photosynthetic activity. To this, bromeliads were submitted to well-watered and water deficit conditions. Guzmania monostachia plants under water deficiency conditions showed a reduction on atmospheric carbon assimilation without exhibiting changes in PSII integrity and carbohydrate production while showed an increase in nocturnal malic acid accumulation. Additionally, spots with high PSII efficiency in the leaf portion with a greater nocturnal malic acid accumulation were observed in plants exposed to water shortage conditions. These high-efficiency spots might be associated with a greater malate decarboxylation capacity. Also, the malic acid contributed to approximately 50% of the total carbon assimilated under water deficit. These results suggest that weak CAM may participate in photo-protection and it appears to meaningfully contribute to the overall carbon balance, being an important metabolic strategy to maintain plant fitness during water deficit periods.

摘要

景天酸代谢(CAM)可以是一种在不利条件下(如旱季)保存水分的过渡策略。在某些情况下,CAM 甚至可以有助于维持光合作用的完整性,即使碳的获取和生长受到损害。CAM 以不同的强度发生,其强度取决于夜间苹果酸积累的程度,即夜间苹果酸积累越强,CAM 就越强。例如,孤挺花是一种附生槽凤梨科植物,当暴露在水分亏缺下时,其夜间有机酸积累增加,CAM 行为也随之变化。在这种情况下,本研究旨在探讨该物种表现出的弱 CAM 是否可以减轻水分限制对其光合作用活动的有害影响。为此,将凤梨科植物置于充分供水和水分亏缺条件下。水分亏缺条件下的孤挺花植物表现出大气碳同化减少,而 PSII 完整性和碳水化合物产生没有变化,同时夜间苹果酸积累增加。此外,在暴露于水分短缺条件下的植物中,在叶片部分具有较高 PSII 效率的斑点与较高的夜间苹果酸积累有关。这些高效斑点可能与更大的苹果酸脱羧能力有关。此外,苹果酸约占水分亏缺下总碳同化的 50%。这些结果表明,弱 CAM 可能参与光保护,并且似乎对整体碳平衡有重要贡献,是在水分亏缺期间维持植物适应性的重要代谢策略。

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