Efficacy of chlorophyll a fluorescence kinetics and JIP test for early detection of leaf-gall disease in Cordia dichotoma

Upma Bhatt, Vipul Anjana, Vineet Soni
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Abstract

Gall-induced oxidative stress impairs photosynthesis and ultimately negatively affects a plant’s productivity and yield. Cordia dichotoma is an economically important plant that suffers from galls produced by the insect Aceria gallae. So we investigated how plants deal with such biotic stress by studying chlorophyll fluorescence OJIP transient analysis. The results indicate the intensive variations in minimum-maximum fluorescence, electron transport, light-harvesting efficiency and density of active reaction centers. When reaction centers become inactive in severely infected leaves a significant rise in ABS/RC and TR/RC indicates the expanded antenna size of Photosystem-II which shows the plant's efforts to enhance photon absorption. But the electron transport was blocked due to OECs deactivation, remarkably altered ET/RC and phenomenological fluxes (ABS/CS, TR/CS and ET/CS). The J-curve distortion confirms blockage of electron transport towards PS-I since PQ is fully reduced and unable to grape electrons from QB. Leaf galls carry out noteworthy alterations in Kp, Kn, and primary and secondary photochemistry. But more severe infection causes complete obstruction for electron transport which finally diminishes performance indices (PIabs and PIcs) quantum yield of photosynthesis (φPo), and electron transport (φEo) which increases dissipation and eventually causes the death of the most severely infested leaf. Present studies reveal that measurement of FV/F0, PIabs, and PIcs may be used as a physiological marker for the early diagnosis of gall stress in C. dichotoma. Our results also suggest that repetitive detection of photosynthetic performance through chlorophyll a fluorescence analysis and a JIP-test can be used as potent tools to prevent plants from appearing the visible symptoms of any pathogenic infection.
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叶绿素 a 荧光动力学和 JIP 试验在早期检测帘草叶瘿病方面的功效
虫瘿引起的氧化应激会损害光合作用,最终对植物的生产力和产量产生负面影响。Cordia dichotoma 是一种具有重要经济价值的植物,它饱受昆虫 Aceria gallae 产生的虫瘿之苦。因此,我们通过叶绿素荧光 OJIP 瞬态分析研究了植物如何应对这种生物胁迫。结果表明,最小-最大荧光、电子传递、光收集效率和活性反应中心的密度都发生了剧烈变化。当反应中心在严重感染的叶片中失去活性时,ABS/RC 和 TR/RC 显著上升,表明光系统-II 的天线尺寸扩大,这表明植物在努力提高光子吸收率。但由于 OEC 失活,电子传递受阻,ET/RC 和现象通量(ABS/CS、TR/CS 和 ET/CS)发生了显著变化。由于 PQ 被完全还原,无法从 QB 中获得电子,因此 J 曲线的扭曲证实了向 PS-I 的电子传递受阻。叶瘿会显著改变 Kp、Kn 以及初级和次级光化学。但更严重的感染会导致电子传递完全受阻,最终降低光合作用量子产率(φPo)和电子传递(φEo)的性能指标(PIabs 和 PIcs),从而增加耗散,最终导致感染最严重的叶片死亡。目前的研究表明,FV/F0、PIabs 和 PIcs 的测量值可作为早期诊断二叉蓟马虫瘿胁迫的生理标记。我们的研究结果还表明,通过叶绿素 a 荧光分析和 JIP 测试重复检测光合作用性能可作为有效工具,防止植物出现任何病原菌感染的明显症状。
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