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Exogenous Kinetin Promotes the Nonenzymatic Antioxidant System and Photosynthetic Activity of Coffee (Coffea arabica L.) Plants Under Cold Stress Conditions

机译:外源激动素促进冷胁迫条件下咖啡(Coffea arabica L.)植物的非酶抗氧化系统和光合活性

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摘要

Coffee plants are seasonally exposed to low chilling temperatures in many coffee-producing regions. In this study, we investigated the ameliorative effects of kinetin—a cytokinin elicitor compound on the nonenzymatic antioxidants and the photosynthetic physiology of young coffee plants subjected to cold stress conditions. Although net CO assimilation rates were not significantly affected amongst the treatments, the subjection of coffee plants to cold stress conditions caused low gas exchanges and photosynthetic efficiency, which was accompanied by membrane disintegration and the breakdown of chlorophyll pigments. Kinetin treatment, on the other hand, maintained a higher intercellular-to-ambient CO concentration ratio with concomitant improvement in stomatal conductance and mesophyll efficiency. Moreover, the leaves of kinetin-treated plants maintained slightly higher photochemical quenching (qP) and open photosystem II centers (qL), which was accompanied by higher electron transfer rates (ETRs) compared to their non-treated counterparts under cold stress conditions. The exogenous foliar application of kinetin also stimulated the metabolism of caffeine, trigonelline, 5-caffeoylquinic acid, mangiferin, anthocyanins and total phenolic content. The contents of these nonenzymatic antioxidants were highest under cold stress conditions in kinetin-treated plants than during optimal conditions. Our results further indicated that the exogenous application of kinetin increased the total radical scavenging capacity of coffee plants. Therefore, the exogenous application of kinetin has the potential to reinforce antioxidant capacity, as well as modulate the decline in photosynthetic productivity resulting in improved tolerance under cold stress conditions.
机译:在许多咖啡生产地区,咖啡植物季节性地暴露于较低的低温。在这项研究中,我们研究了激动素-一种细胞分裂素激发剂化合物对非酶类抗氧化剂的抗衰老作用以及在低温胁迫条件下对年轻咖啡植物的光合生理的影响。尽管净CO同化率在处理之间没有受到显着影响,但咖啡植物遭受冷胁迫条件导致气体交换和光合作用效率低,这伴随着膜的分解和叶绿素色素的分解。另一方面,Kinetin处理保持较高的细胞间与环境中的CO浓度比,并伴随气孔导度和叶肉效率的提高。此外,与在低温胁迫条件下未处理的对等植物相比,经Kinetin处理的植物的叶子保持略高的光化学猝灭(qP)和开放的光系统II中心(qL),并伴有更高的电子传递速率(ETR)。动叶素的外源叶面施用还刺激了咖啡因,松果碱,5-咖啡酰奎尼酸,芒果苷,花色苷和总酚含量的代谢。在激动素处理的植物中,这些非酶抗氧化剂的含量在冷胁迫条件下比在最佳条件下最高。我们的结果进一步表明,外源性激动素的应用提高了咖啡植物的总自由基清除能力。因此,外源性激动素的应用有可能增强抗氧化能力,并调节光合生产力的下降,从而提高了冷胁迫条件下的耐受性。

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