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提示 PSII 的光化学效率增强有助于在盐胁迫下入侵并超越本地 C 盐生植物。

Enhanced photochemical efficiency of PSII in suggests contribution to invasion advantage over native C xero-halophytes under salt stress.

机构信息

Department of Biology, University of Hafr Al-Batin, Hafr Al-Batin 31991, Saudi Arabia.

Institute of Sustainable Halophyte Utilization, University of Karachi, Karachi 75270, Pakistan.

出版信息

Funct Plant Biol. 2024 Apr;51. doi: 10.1071/FP23272.

Abstract

Chlorophyll a fluorescence parameters related to PSII photochemistry, photoprotection and photoinhibition were investigated in four C3 plant species growing in their natural habitat: Prosopis juliflora ; Abutilon indicum ; Salvadora persica ; and Phragmites karka . This study compared the light reaction responses of P. juliflora , an invasive species, with three native co-existing species, which adapt to varying water deficit and high salt stress. Chlorophyll a fluorescence quenching analyses revealed that P. juliflora had the highest photochemical quantum efficiency and yield, regulated by higher fraction of open reaction centres and reduced photoprotective energy dissipation without compromising the integrity of photosynthetic apparatus due to photoinhibition. Moreover, the elevated values of parameters obtained through polyphasic chlorophyll a fluorescence induction kinetics, which characterise the photochemistry of PSII and electron transport, highlighted the superior performance index of energy conservation in the transition from excitation to the reduction of intersystem electron carriers for P. juliflora compared to other species. Enhanced pigment contents and their stoichiometry in P. juliflora apparently contributed to upregulating fluxes and yields of energy absorbance, trapping and transport. This enhanced photochemistry, along with reduced non-photochemical processes, could explain the proclivity for invasion advantage in P. juliflora across diverse stress conditions.

摘要

本研究比较了入侵物种长叶相思(Prosopis juliflora)与三种适应不同水分亏缺和高盐胁迫的本地共存种的光反应响应。叶绿素荧光淬灭分析表明,长叶相思具有最高的光化学量子效率和产量,这是通过开放反应中心的更高分数和减少光保护能量耗散来调节的,而不会因光抑制而损害光合机构的完整性。此外,通过多相叶绿素荧光诱导动力学获得的参数值升高,这些参数特征化了 PSII 的光化学和电子传递,突出了与其他物种相比,长叶相思在从激发态到电子传递体系还原过程中能量保存的优越性能指标。增强的色素含量及其在长叶相思中的化学计量学显然有助于上调能量吸收、捕获和传递的通量和产量。这种增强的光化学,以及减少的非光化学过程,可以解释长叶相思在各种胁迫条件下具有入侵优势的倾向。

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