1. Rice Research Institute, Fujian Academy of Agricultural Sciences, Fuzhou, Fujian 350018, China; 2. Key Laboratory of Germplasm Innovation and Molecular Breeding of Hybrid Rice for South China, Ministry of Agriculture/Fuzhou branch, National Rice Improvement Center of China/Fujian Engineering Laboratory of Crop Molecular Breeding/Incubator of National key Laboratory of Crops Germplasm Innovation and Molecular Breeding between Fujian and Ministry of Science and Technology/South China Base of National Key Laboratory of Hybrid rice for China/National Engineering Laboratory of Rice of China, Fuzhou, Fujian 350003, China
Abstract:Lipid peroxidation is common in all biological systems, both appearing in developmentally and environmentally regulated processes of plants. Lipoxygenase is the key enzyme to catalyze lipid peroxidation, and it is also a multifunctional enzyme, catalyzing a variety of physiological reactions. The physiological characteristics and biological functions of plant lipoxygenase were reviewed in this paper.
GUO S L,SONG Z Z, MA R J, et al. Genome-wide identification and expression analysis of the lipoxygenase gene family during peach fruit ripening under different postharvest treatments[J]. Acta Physiol Plant, 2017, 39:111.
[2]
BRASH A R. Lipoxygenases:occurrence, functions, catalysis, and acquisition of substrate[J]. J Biol Chem, 1999, 274(34):23679-23682.
[3]
PORTA H, ROCHA-SOSA M. Plant lipoxygenase:physiological and molecular features[J]. Plant Physiol,2002, 130:15-21.
[4]
FEUSSNER I, WASTERNACK C. The lipoxygenase pathway [J]. Annu Rev Plant Biol, 2002, 53, 275-297.
[5]
SAFAIE F A,TAGHAVI S. Mohsen Taghavi.Profiling expression of lipoxygenase in cucumber during compatible and incompatible plant-pathogen interactions[J].Physiol Mol Biol Plants, 2016, 22(1):175-177.
[6]
FEUSSNER I, KUHN H,WASTERNACK C. Lipoxygenase-dependent degradation of storage lipids[J]. Trends Plant Sci, 2001, 6(6):268-273.
[7]
VELLOSILLO T, MARTINEZ M, LOPEZ M A, et al. Oxylipins produced by the 9-lipoxygenase pathway in Arabidopsis regulate lateral root development and defense responses through a specific signaling cascade[J]. Plant Cell, 2007, 19(3):831-846.
[8]
TOLLEY J P, NAGASHIMA Y, GORMAN Z, et al. Isoformspecific subcellular localization of Zea mays lipoxygenases and oxo-phytodienoate reductase 2[J]. Plant Gene, 2018,13:36-41.
[9]
PORTA H, RUEDA-BENITEZ P, CAMPOS F, et al. Analysis of lipoxygenase mRNA accumulation in the common bean (Phaseolus vulgaris L.) during development and under stress conditions[J]. Plant Cell physiol, 1999, 40(8):850-858.
[10]
KOLOMIETS M V, HANNAPEL D J, CHEN H, et al. Lipoxygenase is involved in the control of potato tuber development[J]. Plant Cell, 2001, 13(3):613-626.
[11]
PALIYATH G, DROILIARD M J. The mechanism of membrane deterioration and disassembly during senescence [J]. Plant Physiol Biochem, 1992, 30:789-812.
[12]
GOBEL C G, FEUSSNER I, SCHMILDT A, et al. Oxylipin profiling reveals the preferential stimulation of the 9-lipoxygenase pathway in elieitor-treated potato cells[J]. J Bio Chem, 2001, 276(9):6267-6273.
[13]
FOBEL M, LYNCH D V, TOMPSON J E. Membrane deterioration in senescing carnation flowers:coordinated effects of phospholipid degradation and the action of membranous lipoxygenase[J]. Plant Physiol, 1987, 85(1):204-211.
[14]
KACPERSKA A, KUBACKA-ZEBALSKA M. Is lipoxygenase involved in the formation of ethylene from ACC[J]. Plant Physiol, 1985, 64(3):333-338.
[15]
PARRY A D. Abscisic acid metabolism[J]. Methods in Plant Biochem, 1993,9:381-402.
BLEE E. Phytooxylipins and plant defense reactions[J]. Progress in Lipid Research, 1998, 37(1):33-72.
[19]
STUMPE T, DECKING U K, SCHEARDER J. Nitric oxide reduces energy supply by direct action on the respiratory chain in isolated cardiomyocytes[J]. Am J Physiol Heart Cire Physiol, 2001, 280(5):2350-2356.
[20]
ITOH A, HOWE G A. Molecular cloning of a divinyl ether synthase. Identification as a CYP74 cytochrome P-450[J]. J Biol Chem, 2001, 276(5):3620-3627.
[21]
HILDEBRAND D F, RODRIGUEN J G, LEGG C, et al. The effects of wounding and infestation on soybean leaf lipoxygenase levels[J]. Z Natur Forsch Teil, 1989, 44:655-659.
[22]
PENG Y L, SHIRANO Y, OHTA H, et al. A novel lipoxygenase from rice, primary structure and specific expression upon incompatible infection with rice blast fungus[J]. J Biol Chem, 1994, 269(5):3755-3761.
[23]
VERONESI C, RICKAUER M, FOUNIER J, et al. Lipoxygenase gene expression in the tobacco phytophthora parasitica nicotianae interaction[J]. Plant Physiol, 1996, 112(3):997-1004.
[24]
BOSTOCK R M, KUC J A, LAINE R A. Eicosopentaenoicand arachidonic acids from Phytophthora infestans elicit fungitoxic sesquiterpenes in potato[J]. Seience, 1981, 212(4490):67-69.
[25]
RICKER K E, BOSTOCK R M. Eicosanoids in the Phytophthora infestans-Potato interaction:lipoxygenase of arachidonic acid and biological activities of selected lipoxygenase Products[J]. Physiol Mol Plant Pathol, 1994, 44:65-80.
[26]
RUSTERUCCI C, MONTILLET J L, AGNEL J P, et al. Involvement of lipoxygenase-dependent production of fatty acid hydroperoxides in the development of the hypersensitive cell death induced by cryptogein of tobacco leaves[J]. J Biol Chem, 1999, 274(51):36446-36455.
[27]
KOOSTRA P T, HARRINGTON J F. Biochemical effects of age on membrane lipids of Cucumis sativus L. seed[J]. Proceedings of International Seed Testing Association, 1969, 34:329-340.
[28]
ESKIN N A, GROSSMAN S, PINSKY A. Biochemsitry of lipoxygenase in relation to food quality[J]. Cri Rev Food Sci Nutr, 1977, 9(1):1-40.