Patel, Monika et al. published their research in Plant Physiology and Biochemistry (Issy-les-Moulineaux, France) in 2022 |CAS: 473-81-4

The Article related to arachis potassium deficiency stress tolerance antioxidant silicon ion homeostasis, arachis hypogaea, aspartic acid, metabolomics, myo-inositol, phytohormones, potassium, silicon and other aspects.COA of Formula: C3H6O4

On July 1, 2022, Patel, Monika; Fatnani, Dhara; Parida, Asish Kumar published an article.COA of Formula: C3H6O4 The title of the article was Potassium deficiency stress tolerance in peanut (Arachis hypogaea) through ion homeostasis, activation of antioxidant defense, and metabolic dynamics: Alleviatory role of silicon supplementation. And the article contained the following:

Potassium (K) scarcity of arable land is one of the important factors that hamper the growth of the plants and reduce yield worldwide. In the current study, we examine the physiol., biochem., and metabolome response of Arachis hypogaea (GG7 genotype: fast-growing, tall, early maturing, and high yielding) under low K either solitary or in combination with Si to elucidate the ameliorative role of Si. The reduced fresh and dry biomass of peanut and photosynthetic pigments content was significantly alleviated by Si. Si application did not affect the leaf and stem K+, although it enhanced root K+ in K-limitation, which is probably due to up-regulated expression of genes responsible for K uptake. Si improves the potassium use efficiency in K-limitation as compared to control. K-deficiency increased MDA, O·-2, and H2O2 levels in leaf and root of peanut. Si improved/maintained the activity of antioxidative enzymes, which significantly lowered the ROS accumulation in K-limitation. The AsA/DHA and GSH/GSSG ratio was approx. unaffected in both leaf and root, suggesting the maintained cellular redox potential in K-starved peanut. Si promotes accumulation of sugars and sugar alcs., phytohormones indicating their probable involvement in signal transduction, osmotic regulation, and improvement of stress tolerance. Down-regulation of aspartic acid and glutamic acid while up-regulation of lysine, histidine, and arginine could maintain charge balance in K-deprived peanut. The significant accumulation of polyphenols under K limitation supplemented with Si suggests the role of polyphenols for ROS scavenging. Our results demonstrated that Si as a beneficial element can mitigate K-nutrient toxicity and improve KUE of peanut under K-limitation conditions. Moreover, our results demonstrate that Si application can improve crop yield, quality, and nutrient use efficiency under nutrient limitation conditions. The experimental process involved the reaction of 2,3-Dihydroxypropanoic acid(cas: 473-81-4).COA of Formula: C3H6O4

The Article related to arachis potassium deficiency stress tolerance antioxidant silicon ion homeostasis, arachis hypogaea, aspartic acid, metabolomics, myo-inositol, phytohormones, potassium, silicon and other aspects.COA of Formula: C3H6O4

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