ATP-sulfurylase, sulfur-compounds, and plant stress tolerance

被引:125
作者
Anjum, Naser A. [1 ,2 ]
Gill, Ritu [3 ]
Kaushik, Manjeri [3 ]
Hasanuzzaman, Mirza [4 ]
Pereira, Eduarda [1 ,2 ]
Ahmad, Iqbal [1 ,2 ,5 ,6 ]
Tuteja, Narendra [7 ]
Gill, Sarvajeet S. [3 ]
机构
[1] Univ Aveiro, Ctr Environm & Marine Studies, P-3800 Aveiro, Portugal
[2] Univ Aveiro, Dept Chem, P-3800 Aveiro, Portugal
[3] Maharshi Dayanand Univ, Stress Physiol & Mol Biol Lab, Ctr Biotechnol, Rohtak 124001, Haryana, India
[4] Sher E Bangla Agr Univ, Fac Agr, Dept Agron, Dhaka, Bangladesh
[5] Univ Aveiro, Ctr Environm & Marine Studies, P-3800 Aveiro, Portugal
[6] Univ Aveiro, Dept Biol, P-3800 Aveiro, Portugal
[7] Pant Mol Biol Grp, Int Ctr Genet Engn & Biotechnol, New Delhi, India
关键词
ATP-sulfurylase; sulfur assimilation; organic S-compounds; stress tolerance; ASSIMILATORY SULFATE REDUCTION; INDUCED OXIDATIVE STRESS; TOBACCO-MOSAIC-VIRUS; ARABIDOPSIS-THALIANA; ABIOTIC STRESS; GLUCOSINOLATE BIOSYNTHESIS; SUBCELLULAR-DISTRIBUTION; GLUTATHIONE METABOLISM; DIFFERENTIALLY AFFECTS; ANTIOXIDANT MACHINERY;
D O I
10.3389/fpls.2015.00210
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Sulfur (S) stands fourth in the list of major plant nutrients after N, P, and K. Sulfate (SO42-), a form of soil-S taken up by plant roots is metabolically inert. As the first committed step of S-assimilation, ATP-sulfurylase (ATP-S) catalyzes SO42--activation and yields activated high-energy compound adenosine-5'-phosphosulfate that is reduced to sulfide (S2-) and incorporated into cysteine (Cys). In turn, Cys acts as a precursor or donor of reduced S for a range of S-compounds such as methionine (Met), glutathione (GSH), homo-GSH (h-GSH), and phytochelatins (PCs). Among S-compounds, GSH, h-GSH, and PCs are known for their involvement in plant tolerance to varied abiotic stresses, Cys is a major component of GSH, h-GSH, and PCs; whereas, several key stress-metabolites such as ethylene, are controlled by Met through its first metabolite S-adenosylmethionine. With the major aim of briefly highlighting S-compound-mediated role of ATP-S in plant stress tolerance, this paper: (a) overviews ATP-S structure/chemistry and occurrence, (b) appraises recent literature available on ATP-S roles and regulations, and underlying mechanisms in plant abiotic and biotic stress tolerance, (c) summarizes ATP-S-intrinsic regulation by major S-compounds, and (d) highlights major open-questions in the present context. Future research in the current direction can be devised based on the discussion outcomes.
引用
收藏
页数:9
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