Study on the effect of single and mixtured of cobalt nanoparticles on the change of photosynthesis parameters and antioxidant enzymes activity of soybean seedlings glycine max (l.) merr. (DT26)

Phan Hoàng Tuấn, L. T. Tam, H. L. Anh, N. H. Thu, N. Chau, D. D. Hong
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Abstract

Soybean (Glycine max (L) Merr.) is one of the major crops grown worldwide for human food and animal feed. Nanotechnology is one of the most potential tools in modern agriculture to improve crop productivity. In this paper, we investigated the effect of single and mixture cobalt nanoparticles on the change of photosynthesis - related parameters and antioxidant enzyme activity of soybean Glycine max (L) Merr “DT26” at different growth stages under pilot scale. The results showed that all form of cobalt nanoparticles treatment enhanced the photosynthesis of soybean by increasing the content of chlorophyll a, Pn and the ratio of Fv/Fm. These values tended to increase and reached the maximum value at fifth trifoliate stage and then decreased at the beginning bloom stage. The activity of antioxidant enzymes such as superoxide dismutase and peroxidase (when seeds were treated with USA single colbalt nanoparticles at concentration of 16.67 mg/kg) and catalase (with USA single colbalt nanoparticles at concentration of 0.17 mg/kg) were increased in 2.11, 1.85 and 1.60 times respectively compared to the control group (without the treatment of colbalt nanoparticles) while ascorbate peroxidase was reached highest value (increased in 2.73 times) under the condition of Vietnam single colbalt nanoparticles at the dose of 0.17 mg/kg seeds. This suggests that cobalt nanoparticles treatment has generated oxidative stresses and soybean DT26 has the self-protection mechanism by increasing the activity of antioxidant enzymes in order to reduce the amount of H2O2 and O2 which accumulates in the leaf cells.
单粒和混合钴纳米颗粒对大豆幼苗甘氨酸max (1) merr光合参数和抗氧化酶活性变化的影响研究。(DT26)
大豆(Glycine max (L) Merr.)是全球种植的主要人类食品和动物饲料作物之一。纳米技术是现代农业中最有潜力提高作物生产力的工具之一。在中试条件下,研究了单纳米钴和混合纳米钴对不同生育期大豆甘氨酸max (L) Merr“DT26”光合相关参数和抗氧化酶活性的影响。结果表明,不同形式的钴纳米颗粒处理均通过提高叶绿素a、Pn含量和Fv/Fm比值来促进大豆光合作用。这些值呈上升趋势,在三叶草第五花期达到最大值,然后在初花期下降。抗氧化酶如超氧化物歧化酶和过氧化物酶(浓度为16.67 mg/kg)和过氧化氢酶(浓度为0.17 mg/kg)活性在2.11时均有提高。抗坏血酸过氧化物酶在越南单粒纳米钴剂量为0.17 mg/kg时达到最高值(增加2.73倍),是对照组(未处理)的1.85倍和1.60倍。说明纳米钴处理产生了氧化胁迫,大豆DT26具有通过提高抗氧化酶活性来降低叶片细胞中积累的H2O2和O2量的自我保护机制。
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