在长期严重干旱条件下,C3-CAM 转变对维持 Pereskia aculeata 光合作用装置的完整性至关重要

IF 2.4 4区 生物学 Q2 PLANT SCIENCES Acta Physiologiae Plantarum Pub Date : 2024-11-14 DOI:10.1007/s11738-024-03738-5
João Paulo Alves de Barros, Milton Costa Lima Neto, Nielson Dinivan da Silva Brito, Pedro José Herminio, Hugo Rafael Bentzen Santos, Adriano do Nascimento Simões, Vitor Gomes Nunes, André Luiz Alves de Lima, Eduardo Soares de Souza, Sérgio Luiz Ferreira-Silva
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引用次数: 0

摘要

本研究旨在评估 C3-CAM 的转变如何有助于光保护和减轻 Pereskia aculeata 植物在水分胁迫下的二氧化碳吸收损失。在两种实验条件下(温室和生长室)对植物进行了处理:水分充足(WW)、水分亏缺(WD)和恢复(Rec)。通过叶片酸化、碳水化合物含量、光化学活性、气体交换以及昼间和夜间的气孔密度和关闭情况来评估干旱对 C3-CAM 转变的诱导作用。在夜间,WW 植物的叶片酸度降低,而 WD 植物的叶片酸度升高,这表明与干旱诱导 CAM 有关的有机酸积累活跃。WD 植物的这种明显的 CAM 诱导与碳水化合物的增加和叶片水势(ΨW)的显著降低有关。与 WW-plants 相比,WD-plants 表现出正的碳平衡,与夜间较高的二氧化碳净吸收量(PN)有关。此外,WW-植株的 PN 值为负值,与夜间的负碳平衡有关。在两种条件下(WW 和 WD),植物夜间的 PN 值均接近零。然而,WD-植株的碳平衡为正值,且白天气孔微微张开,夜间气孔强烈关闭,这表明能够维持二氧化碳吸收的 C3-CAM 转变更倾向于 CAM 循环模式。本研究结果表明,在干旱条件下,C3-CAM转变所带来的二氧化碳吸收有助于光保护和Pereskia aculeata植物在补水后更好地恢复光合作用。
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The C3-CAM shift is crucial to the maintenance of the photosynthetic apparatus integrity in Pereskia aculeata under prolonged and severe drought

This work aimed to evaluate how the C3-CAM shift could contribute to photoprotection and attenuate losses of CO2 uptake in Pereskia aculeata plants under water stress. Plants were subjected to treatments: well-watered (WW), water deficit (WD), and recovery (Rec) in two experimental conditions (greenhouse and growth chamber). Induction of the C3-CAM shift by drought was assessed by leaf acidification, carbohydrate content, photochemical activity, gas exchange, and stomata density and closure during diurnal and nocturnal periods. Leaf acidity was reduced during the night period in WW-plants and increased in WD-plants, suggesting active accumulation of organic acids associated with CAM induction by drought. This apparent CAM induction in WD-plants was associated to increase carbohydrates and significant reduction of leaf water potential (ΨW). WD-plants showed a positive carbon balance associated with a higher net-CO2 uptake (PN) during night period compared to WW-plants. Moreover, WW-plants presented negative values for PN associated with a negative carbon balance at night. In both conditions (WW and WD) plants showed PN near zero at night. However, a positive carbon balance associated with a slight stomatal aperture at during the day and strong closure during night in the WD-plants, suggests that C3-CAM shift, able to maintain CO2 uptake, presented a better trend toward the CAM-cycling model. Together, this study shows that CO2 uptake conferred by C3-CAM shift under drought contributed to photoprotection and better photosynthetic recovery after rehydration of Pereskia aculeata plants.

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来源期刊
Acta Physiologiae Plantarum
Acta Physiologiae Plantarum 生物-植物科学
CiteScore
5.10
自引率
3.80%
发文量
125
审稿时长
3.1 months
期刊介绍: Acta Physiologiae Plantarum is an international journal established in 1978 that publishes peer-reviewed articles on all aspects of plant physiology. The coverage ranges across this research field at various levels of biological organization, from relevant aspects in molecular and cell biology to biochemistry. The coverage is global in scope, offering articles of interest from experts around the world. The range of topics includes measuring effects of environmental pollution on crop species; analysis of genomic organization; effects of drought and climatic conditions on plants; studies of photosynthesis in ornamental plants, and more.
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