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首页> 外文期刊>Russian Journal of Plant Physiology >Protection of growth and photosynthesis of Brassica juncea genotype with dual type sulfur transport system against sulfur deprivation by coordinate changes in the activities of sulfur metabolism enzymes and cysteine and glutathione production
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Protection of growth and photosynthesis of Brassica juncea genotype with dual type sulfur transport system against sulfur deprivation by coordinate changes in the activities of sulfur metabolism enzymes and cysteine and glutathione production

机译:通过协调硫代谢酶活性,半胱氨酸和谷胱甘肽生产的变化,保护具有双重硫转运系统的芥菜型油菜的生长和光合作用,防止硫被剥夺

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摘要

Mustard (Brassica juncea L. Czern and Coss.) cvs. Pusa Jai Kisan (with low-affinity S transporter (LAT) system) and Pusa Bold (with dual, low- and high-affinity transporters (LAT + HAT) system) were supplied with 0 or 1 mM S in hydroponics culture, and the coordinate changes in growth traits (plant dry weight and leaf area), photosynthetic traits (photosynthetic rate, intercellular CO2, F (v)/F (m), and chlorophyll content), activities of key enzymes of sulfur metabolism, such as ATP-sulfurylase (ATP-S), serine acetyltransferase (SAT), and glutathione reductase (GR), and the contents of cysteine (Cys) and glutathione (GSH) were studied in 30 days after sowing. The results showed that cv. Pusa Jai Kisan was more sensitive to S deprivation than cv. Pusa Bold. In cv. Pusa Jai Kisan, S deprivation resulted in a stronger decrease of plant growth and photosynthetic traits, Cys and GSH contents, and a notable decline in activity of ATP-S. S deprivation up-regulated GR activity to a greater extent in cv. Pusa Bold. In contrast, despite the activity of SAT, an enzyme involved in the final step of Cys biosynthesis, was increased in cv. Pusa Jai Kisan stronger than in cv. Pusa Bold under S-deprivation, it could not be translated into the increase in Cys and, thus, GSH contents and a consequent improvement in growth and photosynthesis. The study demonstrated that cv. Pusa Bold (with LAT + HAT) can be a promising cultivar for activation of Cys and/or GSH biosyntheses and increased plant tolerance to S-deprivation conditions.
机译:芥末(Brassica juncea L. Czern and Coss。)cvs。向Pusa Jai Kisan(具有低亲和力S转运蛋白(LAT)系统)和Pusa Bold(具有双亲和力,低和高亲和力转运蛋白(LAT + HAT)系统)分别提供0或1 mM S的水培培养液,协调生长性状(植物干重和叶面积),光合性状(光合速率,细胞间CO2,F(v)/ F(m)和叶绿素含量),硫代谢关键酶(如ATP-播种后30天内研究了硫酰化酶(ATP-S),丝氨酸乙酰转移酶(SAT)和谷胱甘肽还原酶(GR)以及半胱氨酸(Cys)和谷胱甘肽(GSH)的含量。结果表明,简历。 Pusa Jai Kisan对S剥夺比对简历更敏感。 Pusa Bold。在简历中Pusa Jai Kisan的S剥夺导致植物生长和光合特性,Cys和GSH含量的下降幅度更大,而ATP-S活性明显下降。 S剥夺在简历中极大地上调了GR活动。 Pusa Bold。相反,尽管SAT具有活性,但是cv中参与Cys生物合成最后一步的酶却增加了。 Pusa Jai Kisan比在简历中更强。 Pusa Bold在S剥夺下不能转化为Cys的增加,因此GSH含量的增加以及随之而来的生长和光合作用的改善。研究表明,简历。 Pusa Bold(带有LAT + HAT)可能是激活Cys和/或GSH生物合成并提高植物对S剥夺条件的耐受性的有前途的品种。

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