Muhammad Nawaz, Eram Shahzadi, Aqsa Yaseen, Muhammad Rehan Khalid, Muhammad Hamzah Saleem, Adel I Alalawy, Awatif M E Omran, Fatma Mohamed Ameen Khalil, Meshari A Alsuwat, Sezai Ercisli, Tabarak Malik, Baber Ali
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Different concentrations of As (0, 50, and 100 µM) and Se (0, 5, and 10 µM) were tested using 14 days old seedlings of C. annuum L. The As stress caused a significant (P ≤ 0.001) reduction in growth, uptake of nutrients, and eco-physiological attributes in both varieties however, the response was specific. While the overproduction of osmo-protectants and antioxidants intensified the symptoms of oxidative stress. The maximum reduction in shoot length (45%), fresh weight (29%), and dry weight (36%) was observed in under 100 µM As stress. The organic acids exudation from the roots of both cultivars were significantly increased with the increase in As toxicity. The Se treatment significantly (p ≤ 0.001) improved growth, nutrient uptake, gas exchange attributes, antioxidant production, while decreased oxidative stress indicators, and As uptake in the roots and shoots of all the subjects under investigation. It is concluded from the results of this study that Se application increased photosynthetic efficiency and antioxidant activity while decreasing As levels, organic acid exudation, and oxidative stress indicators in plants. Overall, the var. 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引用次数: 0
摘要
甜椒(Capsicum annuum L.)是该地区重要的香料作物,含有丰富的维生素和抗氧化剂,对健康有诸多益处。许多生物和非生物因素导致了这种作物的生长和产量损失。砷(As)毒性是一个全球性问题,但在发展中国家尤为严重。本研究旨在评估硒(Se)在减轻两个辣椒品种(HSP-181 A 和 PS09979325)的砷毒性效应方面的功效。砷胁迫导致两个品种的生长、养分吸收和生态生理特性显著下降(P ≤ 0.001),但这种反应是特定的。渗透保护剂和抗氧化剂的过度产生加剧了氧化应激症状。在 100 µM 的砷胁迫下,观察到的最大降幅是芽长(45%)、鲜重(29%)和干重(36%)。随着砷毒性的增加,两种栽培品种根部渗出的有机酸显著增加。Se 处理明显(p ≤ 0.001)改善了所有研究对象的生长、养分吸收、气体交换属性、抗氧化剂产生,同时降低了氧化应激指标以及根和芽对砷的吸收。研究结果表明,施用 Se 提高了光合效率和抗氧化活性,同时降低了植物体内的砷含量、有机酸渗出量和氧化应激指标。总体而言,变种 PS09979325 的表现更好,可能是未来辣椒育种计划的良好候选品种。
Selenium improved arsenic toxicity tolerance in two bell pepper (Capsicum annuum L.) varieties by modulating growth, ion uptake, photosynthesis, and antioxidant profile.
Bell pepper (Capsicum annuum L.); an important spice crop of the region is a rich source of vitamins and antioxidants having many health benefits. Many biotic and abiotic factors contribute towards growth and yield losses of this crop. Arsenic (As) toxicity is a global issue, but it is particularly critical in developing countries. The current study was designed to evaluate the efficacy of selenium (Se) in mitigating the toxic effects of As in two varieties (HSP-181 A and PS09979325) of Capsicum annuum L. Different concentrations of As (0, 50, and 100 µM) and Se (0, 5, and 10 µM) were tested using 14 days old seedlings of C. annuum L. The As stress caused a significant (P ≤ 0.001) reduction in growth, uptake of nutrients, and eco-physiological attributes in both varieties however, the response was specific. While the overproduction of osmo-protectants and antioxidants intensified the symptoms of oxidative stress. The maximum reduction in shoot length (45%), fresh weight (29%), and dry weight (36%) was observed in under 100 µM As stress. The organic acids exudation from the roots of both cultivars were significantly increased with the increase in As toxicity. The Se treatment significantly (p ≤ 0.001) improved growth, nutrient uptake, gas exchange attributes, antioxidant production, while decreased oxidative stress indicators, and As uptake in the roots and shoots of all the subjects under investigation. It is concluded from the results of this study that Se application increased photosynthetic efficiency and antioxidant activity while decreasing As levels, organic acid exudation, and oxidative stress indicators in plants. Overall, the var. PS09979325 performed better and may be a good candidate for future pepper breeding program.
期刊介绍:
ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.