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光质对经高能重离子辐照种子的番茄植株光合作用和抗氧化特性的调节作用:对太空栽培的启示

Light Quality Modulates Photosynthesis and Antioxidant Properties of L. Plants from Seeds Irradiated with High-Energy Heavy Ions: Implications for Cultivation in Space.

作者信息

Vitale Ermenegilda, Izzo Luigi Gennaro, Amitrano Chiara, Velikova Violeta, Tsonev Tsonko, Simoniello Palma, De Micco Veronica, Arena Carmen

机构信息

Department of Biology, University of Naples Federico II, Via Cinthia, 80126 Naples, Italy.

Department of Agricultural Sciences, University of Naples Federico II, Via Università 100, 80055 Portici, Italy.

出版信息

Plants (Basel). 2022 Jul 10;11(14):1816. doi: 10.3390/plants11141816.

Abstract

L. is a crop selected for cultivation in Space for its nutritional properties. However, exposure to ionizing radiation (IR) can alter plant photosynthetic performance and phytochemical production in the extraterrestrial environment. This study investigated if plant growth under different light quality regimes (FL-white fluorescent; RGB-red-green-blue; RB-red-blue) modifies the photosynthetic behavior and bioactive compound synthesis of plants sprouted by dry seeds irradiated with carbon or titanium high-energy ions. The study evidenced that: (i) the plant response depends on the type of heavyion; (ii) control and C-ion-irradiated plants were similar for photosynthetic pigment content and PSII photochemical efficiency, regardless of the LQ regime; (iii) under FL, net photosynthesis (A) and water use efficiency (iWUE) declined in C- and Ti-ion plants compared to control, while the growth of irradiated plants under RGB and RB regimes offset these differences; (iv) the interaction Ti-ion× RB improved iWUE, and stimulated the production of pigments, carbohydrates, and antioxidants. The overall results highlighted that the cultivation of irradiated plants under specific LQ regimes effectively regulates photosynthesis and bioactive compound amounts in leaf edible tissues. In particular, the interaction Ti-ion × RB improved iWUE and increased pigments, carbohydrates, and antioxidant content.

摘要

L. 是一种因其营养特性而被选在太空种植的作物。然而,暴露于电离辐射(IR)会改变植物在地球外环境中的光合性能和植物化学物质的产生。本研究调查了在不同光质条件下(FL - 白色荧光;RGB - 红 - 绿 - 蓝;RB - 红 - 蓝)植物的生长是否会改变由碳或钛高能离子辐照的干种子萌发的植物的光合行为和生物活性化合物的合成。研究表明:(i)植物的反应取决于重离子的类型;(ii)无论光质条件如何,对照植物和碳离子辐照植物在光合色素含量和PSII光化学效率方面相似;(iii)在FL条件下,与对照相比,碳离子和钛离子植物的净光合作用(A)和水分利用效率(iWUE)下降,而在RGB和RB条件下辐照植物的生长抵消了这些差异;(iv)钛离子×RB的相互作用提高了iWUE,并刺激了色素、碳水化合物和抗氧化剂的产生。总体结果突出表明,在特定光质条件下种植辐照植物可有效调节叶片可食用组织中的光合作用和生物活性化合物含量。特别是,钛离子×RB的相互作用提高了iWUE,并增加了色素、碳水化合物和抗氧化剂的含量。

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