首页> 外文期刊>BMC Plant Biology >The effect of exogenous calcium on cucumber fruit quality, photosynthesis, chlorophyll fluorescence, and fast chlorophyll fluorescence during the fruiting period under hypoxic stress
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The effect of exogenous calcium on cucumber fruit quality, photosynthesis, chlorophyll fluorescence, and fast chlorophyll fluorescence during the fruiting period under hypoxic stress

机译:低氧胁迫在结实期外源钙对黄瓜果实品质,光合作用,叶绿素荧光和快速叶绿素荧光的影响

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Plants often suffer from hypoxic stress during waterlogging and hydroponic culturing. This study investigated the response of cucumber (Cucumis sativus L.) plant growth parameters, leaf photosynthesis, chlorophyll fluorescence, fast chlorophyll a fluorescence transient (OJIP), and fruit quality parameters to hypoxic stress alleviated by exogenous calcium. During the fruiting period, cucumber plants were exposed to hypoxia and hypoxia + Ca2+ treatment (4?mM Ca2+) for 9 d. Exogenous calcium application enhanced the biomass and fruit quality of hypoxic stressed cucumber and also increased the net photosynthesis rate, stomatal conductance, intercellular CO2 concentration, maximum quantum efficiency of photosystem II photochemistry, actual photochemical efficiency of PSII, photochemical quenching coefficient, and non-photochemical quenching coefficient. Additionally, measurement of chlorophyll a fluorescence transients showed the positive K- and L-bands were more pronounced in leaves treated with hypoxia compared with those with hypoxia + Ca2+, indicating that hypoxic treatment induced uncoupling of the oxygen-evolving complex and inhibited electron transport beyond plastoquinone pool (Qa, Qb) including possible constraints on the reduction of end electron acceptors of photosystem I. Exogenous calcium can reduce these stress-induced damages in cucumber. This research focused the effect of exogenous calcium on cucumber photosynthesis during the fruiting period under hypoxic stress. Hypoxic stress might impair the photosynthetic electron-transport chain from the donor side of PSII up to the reduction of end acceptors of PSI, and exogenous calcium enhanced electron transport capacity and reduced hypoxic damage of cucumber leaves.
机译:植物在涝渍和水培栽培期间经常遭受低氧胁迫。这项研究调查了黄瓜(Cucumis sativus L.)植物生长参数,叶片光合作用,叶绿素荧光,快速叶绿素a荧光瞬态(OJIP)和果实品质参数对外源钙缓解的低氧胁迫的响应。在结果期,黄瓜植株接受低氧和低氧+ Ca2 +处理(4?mM Ca2 +)9天。外源钙的施用提高了低氧胁迫黄瓜的生物量和果实品质,并提高了净光合速率,气孔导度,细胞间CO2浓度,光系统II光化学的最大量子效率,PSII的实际光化学效率,光化学猝灭系数和非光化学淬灭系数。此外,对叶绿素a荧光瞬变的测量表明,与低氧+ Ca2 +处理相比,低氧处理的叶片中的正K带和L带更为明显,这表明低氧处理诱导了放氧复合物的解偶联并抑制了超过质体醌库(Qa,Qb)包括可能减少光系统I末端电子受体的限制。外源钙可减少这些胁迫诱导的黄瓜损伤。这项研究集中在缺氧胁迫下,在结实期外源钙对黄瓜光合作用的影响。低氧胁迫可能会损害从PSII供体侧到PSI末端受体减少的光合电子传输链,而外源钙增强了电子传输能力并减少了黄瓜叶片的低氧损伤。

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