Aebi H, 1974. Catalases. In: Bergmeyer HU (ed. ) Methods of enzymatic analysis. Academic Press Inc. , New York. 680 [本文引用:1]
[2]
Arasimowicz-Jelonek M, Floryszak-Wieczorek J, Gwó?d? EA, 2011. The message of nitric oxide in cadmium challenged plants. Plant Science, 181(5): 612-620 [本文引用:1]
[3]
Beauchamp C, Fridovich I, 1971. Superoxide dismutase: improved assays and an assay applicable to acrylamide gels. Analytical Biochemistry, 44(1): 276-287 [本文引用:1]
[4]
Besson-Bard A, Gravot A, Richaud P, Auroy P, Duc C, Gaymard F, Taconnat L, Renou JP, Pugin A, Wendehenne D, 2009. Nitric oxide contributes to cadmium toxicity in Arabidopsis by promoting cadmium accumulation in roots and by up-regulating genes related to iron uptake. Plant Physiology, 149(3): 1302-1315 [本文引用:1]
[5]
Besson-Bard A, Pugin A, Wendehenne D, 2008. New insight into nitric oxide signaling in plants. Annual Review of Plant Biology, 59: 21-39 [本文引用:2]
[6]
Borchers AT, Krishnamurthy A, Keen CL, Meyers FJ, Gershwin ME, 2008. The immunobiology of mushrooms. Experimental Biology and Medicine (Maywood), 233(3): 259-276 [本文引用:1]
[7]
Bowler C, Van Montagu M, Inzé D, 1992. Superoxide dismutase and stress tolerance. Annual Review of Plant Physiology and Plant Molecular Biology, 43: 83-116 [本文引用:1]
[8]
Clark D, Durner J, Navarre DA, Klessig DF, 2000. Nitric oxide inhibition of tobacco catalase and ascorbate peroxidase. Molecular Plant-Microbe Interaction, 13(12): 1380-1384 [本文引用:1]
[9]
Egbichi I, Keyster M, Jacobs A, Klein A, Ludidi N, 2013. Modulation of antioxidant enzyme activities and metabolites ratios by nitric oxide in short-term salt stressed soybean root nodules. South African Journal of Botany, 88: 326-333 [本文引用:1]
[10]
Egbichi I, Keyster M, Ludidi N, 2014. Effect of exogenous application of nitric oxide on salt stress responses of soybean. South African Journal of Botany, 90: 131-136 [本文引用:1]
[11]
Fan HF, Du CX, Ding L, Xu YL, 2014. Exogenous nitric oxide promotes waterlogging tolerance as related to the activities of antioxidant enzymes in cucumber seedlings. Russian Journal of Plant Physiology, 61(3): 366-373 [本文引用:6]
[12]
Fan QJ, Liu JH, 2012. Nitric oxide is involved in dehydration/drought tolerance in Poncirus trifoliata seedlings through regulation of antioxidant systems and stomatal response. Plant Cell Reports, 31(1): 145-154 [本文引用:3]
[13]
Feng ZS, Zou YJ, Hu QX, 2014. Activity of ectoenzymes and respiratory enzymes and ionic flux of Pleurotus nebrodensis throughout cultivation process. Mycosystema, 33(2): 341-354 (in Chinese) [本文引用:1]
[14]
Foyer CH, Leland ais M, Kunert KJ, 1994. Photooxidative stress in plants. Physiologia Plantarum, 92(4): 696-717 [本文引用:1]
[15]
Hasanuzzaman M, Nahar K, Mahabub Alam M, Fujita M, 2012. Exogenous nitric oxide alleviates high temperature induced oxidative stress in wheat (Triticum aestivum L. ) seedlings by modulating the antioxidant defense and glyoxalase system. Australian Journal of Crop Science, 6(8): 1314-1323 [本文引用:3]
[16]
Hsu YT, Kao CH, 2004. Cadmium toxicity is reduced by nitric oxide in rice leaves. Plant Growth Regulation, 42(3): 227-238 [本文引用:1]
[17]
Huang X, Rad U, Durner J, 2002. Nitric oxide induces transcriptional activation of the nitric oxide-tolerant alternative oxidase in Arabidopsis suspension cells. Planta, 215(6): 914-923 [本文引用:2]
[18]
Jablonski PP, Anderson JW, 1981. Light-dependent reduction of dehydroascorbate by raptured pea chloroplasts. Plant Physiology, 67: 1239-1244 [本文引用:1]
[19]
Kong WW, Huang CY, Chen Q, Zou YJ, Zhang JX, 2012. Nitric oxide alleviates heat stress-induced oxidative in Pleurotus eryngii var. tuoliensis. Fungal Genetics and Biology, 49(1): 15-20 [本文引用:2]
[20]
Kusum V, Mehta SK, Shekhawat GS, 2013. Nitric oxide (NO) counteracts cadmium induced cytotoxic process mediated by reactive oxygen species (ROS) in Brassica juncea: cross-talk between ROS, NO and antioxidant responses. Biometals, 26(2): 255-269 [本文引用:2]
Li X, Gong B, Xu K, 2014. Effects of exogenous nitric oxide on reactive oxygen metabolism in ginger leaves under heat stress. Acta Horticulturae Sinica, 41(2): 277-284 (in Chinese) [本文引用:1]
[23]
Lü H, Kong Y, Yao Q, Zhang B, Leng FW, Bian HJ, Balzarini J, Van Damme E, Bao JK, 2009. Nebrodeolysin, a novel hemolytic protein from mushroom Pleurotus nebrodensis with apoptosis-inducing and anti-HIV-1 effects. Phytomedicine, 169(2-3): 198-205 [本文引用:1]
Mittl PRE, Schulz GE, 1994. Structure of glutathione reductase from Escherichia coli at 1. 86 ? resolution: comparison with the enzyme from human erythocytes. Plant Science, 3(5): 799-809 [本文引用:1]
[26]
Radi R, Beckam JS, Bash KM, Freeman RA, 1991. Peroxynitrite induced membrane lipid peroxidation: cytotoxic potential of superoxide and nitric oxide. Archives of Biochemistry and Biophysics, 228(2): 481-487 [本文引用:1]
[27]
Rahimian Boogar A, Salehi H, Jowkar A, 2014. Exogenous nitric oxide alleviates oxidative damage in turfgrasses under drought stress. South African Journal of Botany, 92: 78-82 [本文引用:1]
[28]
Reddy AR, Ramachand ra RK, Chaitanya V, Vivekanand an M, 2004. Drought-induced responses of photosynthesis and antioxidant metabolism in higher plants. Journal of Plant Physiology, 161(11): 1189-1202 [本文引用:1]
[29]
Schützendübel A, Polle A, 2002. Cadium and H2O2 induced oxidative stress in Populus x canescens roots. Plant Physiology and Biochemistry, 40: 577-584 [本文引用:1]
[30]
Sharma P, Jha AB, Dubey RS, Pessarakli M, 2012. Reactive oxygen species, oxidative damage, and antioxidative defense mechanism in plants under stressful conditions. Journal of Botany, http://dx.doi.org/10.1155/2012/217037 [本文引用:1]
[31]
Shi HT, Li RJ, Cai W, Wang CL, Lu YT, 2012. Increasing nitric oxide content in Arabidopsis thaliana by expressing rat neuronal nitric oxide synthase resulted in enhanced stress tolerance. Plant Cell Physiology, 53(2): 344-357 [本文引用:1]
[32]
Tian GZ, Li HF, Qiu WF, 2001. Advances on research of plant peroxidases. Journal of Wuhan Botanical Research, 19(4): 332-344 (in Chinese) [本文引用:1]
[33]
Uchida A, Jagendorf AT, Hibino T, Takabe T, 2002. Effect of hydrogen peroxide and nitric oxide on both salt and heat stress tolerance in rice. Plant Science, 163(3): 515-523 [本文引用:1]
[34]
Usami A, Motooka R, Nakahashi H, Okuno Y, Miyazawa M, 2014. Characteristic odorants from bailingu oyster mushroom (Pleurotus eryngii var. tuoliensis) and summer oyster mushroom (Pleurotus cystidiosus). Journal of Oleo Science, 63(7): 731-739 [本文引用:1]
[35]
Velikova V, Yordanov I, Edreva A, 2000. Oxidative stress and some antioxidant systems in acid rain-treated bean plants: protective role of exogenous polyamines. Plant Science, 151(1): 59-66 [本文引用:1]
[36]
Wang CL, Cui HY, Wang YR, Wang ZF, Li ZJ, Chen MH, Li FJ, 2014. Bidirectional immunomodulatory activities of polysaccharides purified from Pleurotus nebrodensis. Inflammation, 37(1): 83-93 [本文引用:1]
[37]
Wang YQ, Loake GJ, Chu CC, 2013. Cross-talk of nitric oxide and reactive oxygen species in plant programed cell death. Frontiers in Plant Science, doi: DOI:10.3899/fpls.2013.00314 [本文引用:1]
[38]
Zhang JX, 2011. Biology of edible mushrooms spawn in China. Chinese Agricultural Press, Beijing. 198-217(in Chinese) [本文引用:1]
[39]
Zhou B, Guo Z, Xing J, Huang B, 2005. Nitric oxide is involved in abscisic acid-induced antioxidant activities in Stylosanthes guianensis. Journal of Experimental Botany, 56(422): 3223-3228 [本文引用:1]