Comparative study on the influence of silicon and selenium to mitigate arsenic induced stress by modulating TCA cycle, GABA, and polyamine synthesis in rice seedlings

被引:0
作者
Susmita Das
Barsha Majumder
Asok K. Biswas
机构
[1] University of Calcutta,Plant Physiology and Biochemistry Laboratory, Centre of Advanced Studies, Department of Botany
来源
Ecotoxicology | 2022年 / 31卷
关键词
Arsenic; GABA; Polyamine; Respiration; Silicon; Selenium;
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摘要
Arsenic contamination of groundwater is a major concern for its usage in crop irrigation in many regions of the world. Arsenic is absorbed by rice plants mainly from arsenic contaminated water during irrigation. It hampers growth and agricultural productivity. The aim of the study was to mitigate the toxic effects of arsenate (As-V) [25 μM, 50 μM, and 75 μM] by silicon (Si) [2 mM] and selenium (Se) [5 μM] amendments on the activity of the TCA cycle, synthesis of γ-aminobutyric acid (GABA) and polyamines (PAs) in rice (Oryza sativa L. cv. MTU-1010) seedlings and to identify which chemical was more potential to combat this threat. As(V) application decreased the activities of tested respiratory enzymes and increased the levels of organic acids (OAs) in the test seedlings. Application of Si with As(V) and Se with As(V) increased the activities of respiratory enzymes and the levels of OAs. The effects were more pronounced during Si amendments. The activities of GABA synthesizing enzymes along with accumulation of GABA were increased under As(V) stress. During joint application of Si with As(V) and Se with As(V) the activity and the level of said parameters were decreased that indicating defensive role of these chemicals to resist As(V) toxicity in rice and Si amendments showed greater potential to reduce As(V) induced damages in the test seedlings. PAs trigger tolerance mechanism against As(V) in plants. PAs such as putrescine, spermidine and spermine were synthesized more during Si and Se amendments in As(V) contaminated rice seedlings to combat the toxic effects of As(V). Si amendments substantially modulated the toxic effects caused by As(V) over Se amendments in the As(V) challenged test seedlings. Thus, in future application of Si enriched fertilizer will be beneficial to grow rice plants with normal vigor in arsenic contaminated soil.
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页码:468 / 489
页数:21
相关论文
共 533 条
[61]  
Shelp BJ(2011) L.) under low O Plant Physiol 155 16-481
[62]  
Carillo P(2013) with and without CO Curr Opin Plant Biol 16 683-16
[63]  
Cavalcanti JH(2009)γ-aminobutyric acid (GABA) confers chromium stress tolerance in Soil Biol Biochem 41 3377-1018
[64]  
Esteves-Ferreira AA(2015) L. by modulating the antioxidant defense and glyoxalase systems Plant Sci 237 642-69
[65]  
Quinhones CG(2018)Depletion of cellular polyamines, spermidine and spermine, causes a total arrest in translation and growth in mammalian cells Sci Rep 8 27255-855
[66]  
Pereira-Lima IA(2006)A burst of plant NADPH oxidases Soil Biol Biochem 38 22-222
[67]  
Nunes-Nesi A(2013)Arsenic uptake and metabolism in arsenic resistant and nonresistant plant species Acta Physiol Plant 35 365-414
[68]  
Fernie AR(2017)Underexpression of apoplastic polyamine oxidase improves thermotolerance in Nicotiana tabacum Front Plant Sci 8 479-4512
[69]  
Araújo WL(2012)A mitochondrial GABA permease connects the GABA shunt and the TCA cycle, and is essential for normal carbon metabolism J Biol Chem 287 1-1219
[70]  
Centeno DC(2013)Plant mitochondrial 2-oxoglutarate dehydrogenase complex: purification and characterization in potato J Plant Growth Regul 32 1009-135