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短期渍水事件对两个黄瓜(L.)品种的形态和光合作用有不同影响。

Short waterlogging events differently affect morphology and photosynthesis of two cucumber ( L.) cultivars.

作者信息

Olorunwa Omolayo J, Adhikari Bikash, Brazel Skyler, Popescu Sorina C, Popescu George V, Barickman T Casey

机构信息

Department of Plant and Soil Sciences, North Mississippi Research and Extension Center, Mississippi State University, Starkville, MS, United States.

Department of Biochemistry, Molecular Biology, Entomology, and Plant Pathology, Mississippi State University, Starkville, MS, United States.

出版信息

Front Plant Sci. 2022 Jul 22;13:896244. doi: 10.3389/fpls.2022.896244. eCollection 2022.

Abstract

Waterlogging induces growth and developmental changes in sensitive crops such as cucumber ( L.) during early plant development. However, information on the physiological mechanisms underpinning the response of cucumber plants to waterlogging conditions is limited. Here, we investigated the effects of 10-day waterlogging stress on the morphology, photosynthesis, and chlorophyll fluorescence parameters in two cultivars of cucumber seedlings. Waterlogging stress hampered cultivars' growth, biomass accumulation, and photosynthetic capacity. Both cultivars also developed adventitious roots (ARs) after 10 days of waterlogging (DOW). We observed differential responses in the light- and carbon-dependent reactions of photosynthesis, with an increase in light-dependent reactions. At the same time, carbon assimilation was considerably inhibited by waterlogging. Specifically, the CO assimilation rate () in leaves was significantly reduced and was caused by a corresponding decrease in stomatal conductance (g). The downregulation of the maximum rate of Rubisco efficiency (V) and the maximum rate of photosynthetic electron transport (J) were non-stomatal limiting factors contributing to reduction. Exposure of cucumber to 10 DOW affected the PSII photochemistry by downregulating the PSII quantum yield (Φ). The redox state of the primary quinone acceptor in the lake model (1-qL), a measure of the regulatory balance of the light reactions, became more oxidized after 10 DOW, indicating enhanced electron sink capacity despite a reduced . Overall, the results suggest that waterlogging induces alterations in the photochemical apparatus efficiency of cucumber. Thus, developing cultivars that resist inhibition of PSII photochemistry while maintaining carbon metabolism is a potential approach for increasing crops' tolerance to waterlogged environments.

摘要

在植物发育早期,涝害会导致黄瓜(Cucumis sativus L.)等敏感作物的生长和发育发生变化。然而,关于黄瓜植株对涝害条件响应的生理机制的信息有限。在此,我们研究了10天涝害胁迫对两个黄瓜品种幼苗的形态、光合作用和叶绿素荧光参数的影响。涝害胁迫阻碍了品种的生长、生物量积累和光合能力。两个品种在涝害10天后也都长出了不定根(ARs)。我们观察到光合作用中光依赖反应和碳依赖反应的差异响应,光依赖反应增加。同时,碳同化受到涝害的显著抑制。具体而言,叶片中的CO₂同化速率(A)显著降低,这是由气孔导度(g)相应下降引起的。核酮糖-1,5-二磷酸羧化酶/加氧酶最大效率(Vₘₐₓ)和光合电子传递最大速率(Jₘₐₓ)的下调是非气孔限制因素,导致了A的降低。黄瓜在涝害10天后,通过下调PSII量子产率(ΦPSII)影响了PSII光化学。湖泊模型中初级醌受体的氧化还原状态(1-qL),即光反应调节平衡的一种度量,在涝害10天后变得更加氧化,表明尽管ΦPSII降低,但电子汇能力增强。总体而言,结果表明涝害诱导了黄瓜光化学装置效率的改变。因此,培育在维持碳代谢的同时抵抗PSII光化学抑制的品种是提高作物对涝渍环境耐受性的一种潜在方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89ef/9355484/4452fcb1ea6a/fpls-13-896244-g001.jpg

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