Institute of Biological Sciences, Faculty of Exact and Natural Sciences, Siedlce University of Natural Sciences and Humanities, 14 Prusa St., 08-110 Siedlce, Poland.
Department of Plant Protection, Faculty of Horticulture and Landscape Architecture, University of Life Sciences in Lublin, 7 Leszczyńskiego St., 20-069 Lublin, Poland.
Int J Mol Sci. 2020 Aug 31;21(17):6296. doi: 10.3390/ijms21176296.
Thioredoxins (Trxs) and thioredoxin reductases (TrxRs) encompass a highly complex network involved in sustaining thiol-based redox homeostasis in plant tissues. The purpose of the study was to gain a new insight into transcriptional reprogramming of the several genes involved in functioning of Trx/TrxR system in maize ( L.) seedlings, exposed to the bird cherry-oat aphid ( L.) or the rose-grass aphid ( Walk.) infestation. The biotests were performed on two maize genotypes (susceptible Złota Karłowa and relatively resistant Waza). The application of real-time qRT-PCR technique allowed to identify a molecular mechanism triggered in more resistant maize plants, linked to upregulation of thioredoxins-encoding genes (, , , ) and thioredoxin reductase genes (, ). Significant enhancement of TrxR activity in aphid-infested Waza seedlings was also demonstrated. Furthermore, we used an electrical penetration graph (EPG) recordings of stylet activities in seedlings of the two studied maize varieties. Duration of phloem phase (E1 and E2 models) of rose-grass aphids was about three times longer while feeding in Waza plants, compared to Złota Karłowa cv. The role of activation of Trx/TrxR system in maintaining redox balance and counteracting oxidative-induced damages of macromolecules in aphid-stressed maize plants is discussed.
硫氧还蛋白 (Trx) 和硫氧还蛋白还原酶 (TrxR) 组成了一个高度复杂的网络,参与维持植物组织中的基于巯基的氧化还原稳态。本研究的目的是深入了解在受到鸟樱桃燕麦蚜 (L.) 或蔷薇草蚜虫 (Walk.) 侵害的玉米 (L.) 幼苗中,参与 Trx/TrxR 系统功能的几个基因的转录重编程。生物测定在两种玉米基因型(易感的 Złota Karłowa 和相对抗性的 Waza)上进行。实时 qRT-PCR 技术的应用使我们能够识别在更具抗性的玉米植物中触发的分子机制,该机制与硫氧还蛋白编码基因(、、、)和硫氧还蛋白还原酶基因(、)的上调有关。还证明了在受蚜虫侵害的 Waza 幼苗中 TrxR 活性的显著增强。此外,我们使用了电穿透图 (EPG) 记录两种研究玉米品种幼苗中的刺吸式口器活动。与 Złota Karłowa cv 相比,在 Waza 植物中,蔷薇草蚜虫的韧皮部相 (E1 和 E2 模型) 的持续时间延长了约三倍。讨论了 Trx/TrxR 系统的激活在维持氧化还原平衡和抵抗蚜虫胁迫玉米植物中氧化诱导的大分子损伤方面的作用。