[1] 殷永娴,刘鸿雁. 设施栽培下土壤中硝化、反硝化作用的研究[J]. 生态学报,1996,16(3):246-250.

YIN Yongxian, LIU Hongyan. Investigation on nitrification and denitrification of soil under installing cultivation conditions[J]. Acta Ecol Sin, 1996, 16(3):246-250.
[2] 杨秀玲,郁继华,李雅佳. NaCl胁迫对黄瓜种子萌发及幼苗生长的影响[J]. 甘肃农业大学学报,2004,39(1):6-9.

YANG Xiuling, YU Jihua, LI Yajia. Effects of NaCl stress on seed germination and seedling growth of Cucumis sativus[J]. J Gansu Agric Univ, 2004, 39(1):6-9.
[3] FINKEL T, HOLBROOK N J. Oxidants, oxidative stress and the biology of ageing[J]. Nature, 2000, 408(6809):239-247.
[4] MOLDOVAN L, MOLDOVAN N I. Oxygen free radicals and redox biology of organelles[J]. Histochem Cell Biol, 2004, 122(4):395-412.
[5] AGARWAL S, PANDEY V. Antioxidant enzyme responses to NaCl stress in Cassia angustifolia[J]. Biol Plantarum, 2004, 48(4):555-560.
[6] BOWLER C, van MONTAGU M, INZÉD. Superoxide dismutase and stress tolerance[J]. Ann Rev Plant Physiol Plant Mol Biol, 1992, 43(4):83-116.
[7] 苏维埃,宓容钦,王文英,等. 植物冷锻炼对于胁强敏感度的影响[J]. 植物生理学报,1990,16(3):284-292.

SU Weiai, MI Rongqin, WANG Wenying, et al. The influence of cold hardening on plant stress sensitivity[J]. Acta Phytophysiol Sin, 1990, 16(3):284-292.
[8] ALSCHER R G, DONAHUE J L, CRAMER C L. Reactive oxygen species and antioxidants:relationship in green cells[J]. Physiol Plant, 1997, 100(2):224-233.
[9] 韩冰,郭世荣,贺超兴,等. 丛枝菌根真菌对盐胁迫下黄瓜植株生长、果实产量和品质的影响[J]. 应用生态学报, 2012,23(1):154-158.

HAN Bing, GUO Shirong, HE Chaoxing, et al. Effects of arbuscular mycorrhiza fungi (AMF) on the plant growth, fruit yield, and fruit quality of cucumber under salt stress[J]. Chin J Appl Ecol, 2012, 23(1):154-158.
[10] MITCHELL D E, MADORE M A. Patterns of assimilate production and translocation in muskmelon (Cucumis melo L.)(Ⅰ) diurnal patterns[J]. Plant Physiol, 1992, 99(3):959-965.
[11] LAEMMLI U K. Cleavage of structural proteins during the assembly of the head of bacteriophage T4[J]. Nature, 1970, 227(5259):680-685.
[12] FIELDING J L, HALL J L. A biochemical and cytochemical study of pcroxidasc activity in roots of Pisum sativum(Ⅱ) distribution of enzymes in relation to root development[J]. J Exp Bot, 1978, 29(4):983-991.
[13] BEAUCHAMP C, FRIDOVICH I. Superoxide dismutase:improved assays and an asasy applicable to acrylamide gels[J]. Anal Biochem, 1971, 44(1):276-287.
[14] WOODBURY W, SPENCER A K, STAHMANN M A. An improved procedure using ferricyanide for detecting catalase isozymes[J]. Anal Biochem, 1971, 44(1):301-305.
[15] 刘俊,周一峰,章文华,等. 外源多胺对盐胁迫下玉米叶绿体结合态多胺水平和光合作用的影响[J]. 西北植物学报,2006,26(2):254-258.

LIU Jun, ZHOU Yifeng, ZHANG Wenhua, et al. Effects of exogenous polyamines on chloroplast-bound polymine content and photosynthesis of corn suffering salt stress[J]. Acta Bot Boreal-Occident Sin, 2006, 26(2):254-258.
[16] 陈明. 外源一氧化氮供体SNP对盐胁迫下小麦(Triticum aestivum L.)幼苗根生长及氧化损伤的调节作用[D]. 南京:南京农业大学,2004.

CHEN Ming. The Role of Exogenous Nitric Oxide Donor Snp in Modulating Root Growth and Oxidative Damage in Wheat (Triticum aestivum L.) Seedling Under Salt Stress[D]. Nanjing:Nanjing Agricultural University, 2004.
[17] 张巍巍,郑飞翔,王效科,等. 大气臭氧浓度升高对水稻叶片膜脂过氧化及保护酶活性的影响[J]. 应用生态学报, 2008,19(11):2485-2489.

ZHANG Weiwei, ZHENG Feixiang, WANG Xiaoke, et al. Effects of elevated ozone on rice leaf lipid peroxidation and antioxidant system[J]. Chin J Appl Ecol, 2008, 19(11):2485-2489.
[18] 周永斌,殷有,苏宝玲,等. 外源一氧化氮供体对几种植物种子的萌发和幼苗生长的影响[J]. 植物生理学通讯, 2005,41(3):316-318.

ZHOU Yongbin, YIN You, SU Baoling, et al. Effects of exogenous nitric oxide donor on seed germination and seedling growth of several plant species[J]. Plant Physiol Comm, 2005, 41(3):316-318.
[19] 唐玉海,罗一鸣,张枫,等. 有机化学[M]. 北京:化学工业出版社,2011:461-462.
[20] 周珩,郭世荣,邵慧娟,等. 等渗NaCl和Ca(NO3)2胁迫对黄瓜幼苗生长和生理特性的影响[J]. 生态学报,2014,34(7):1880-1890.

ZHOU Heng, GUO Shirong, SHAO Huijuan, et al. Effects of iso-smotic Ca(NO3)2 and NaCl stress on growth and physiological characteristics of cucumber seedlings[J]. Acta Ecol Sin, 2014, 34(7):1880-1890.
[21] DUAN Jiuju, LI Juan, GUO Shirong, et al. Exogenous spermidine affects polyamine metabolism in salinity-stressed Cucumis sativus roots and enhances short-term salinity tolerance[J]. J Plant Physiol, 2008, 165(15):1620-1635.