[1] 荣智媛, 张晓海, 杨双龙, 等. 抗氧化系统参与循环干旱锻炼提 高烟草植株抗旱性的形成[J]. 植物生理学报, 2012, 48(7): 705-713. [2] Xu S, Hu J, Li Y, et al. Chilling tolerance in Nicotiana tabacum induced by seed priming with putrescine[J]. Plant Growth Regul,2011, 63(3), 279-290. [3] 郭玉双, 李祥羽, 任学良. 植物体内活性氧(ROS)的产生及 其作用研究进展[J]. 黑龙江农业科学, 2011(8): 146-148. [4] Mittler R, Vanderauwera S, Gollery M, et al. Reactive oxygen gene 2014年第1期141 王莎莎等: 抗氧化系统参与不同抗性烟草品种幼苗对干旱和低温综合抗性的形成 network of plants[J]. Trends Plant Sci, 2004, 9(10): 490-498. [5] Foyer CH, Noctor G. Oxidant and antioxidant signalling in plants: a re-evaluation of the concept of oxidative stress in a physiological context[J]. Plant Cell Environ, 2005, 28(8): 1056-1071. [6] Gill SS, Tuteja N. Reactive oxygen species and antioxidant machinery in abiotic stress tolerance in crop plants[J]. Plant Physiol Biochem, 2010, 48(12): 909-930. [7] Esfandiari E, Shekari F, Shekari F, et al. The effect of salt stress on antioxidant enzymes’ activity and lipid peroxidation on the wheat seedling[J]. Not Bot Hort Agrobot Cluj, 2007, 35(1): 48-56. [8] Dai F, Huang Y, Zhou M, et al. The influence of cold acclimation on antioxidative enzymes and antioxidants in sensitive and tolerant barley cultivars[J]. Biol Plantarum, 2009, 53(2): 257-262. [9] 王国骄, 王嘉宇, 苗微, 等. 强耐冷性水稻新品系J07-23 抗氧 化系统对长期冷水胁迫的响应[J]. 作物学报, 2013(4): 753-759. [10] Lu P, Sang WG, Ma KP. Differential responses of the activities of antioxidant enzymes to thermal stresses between two invasive Eupatorium species in China[J]. J Integr Plant Biol, 2008, 50(4): 393-401. [11] DaCosta M, Huang B. Changes in antioxidant enzyme activities and lipid peroxidation for bentgrass species in response to drought stress[J]. J Amer Soc Hort Sci, 2007, 132(3): 319-326. [12] Devi R, Kaur N, Gupta AK. Potential of antioxidant enzymes in depicting drought tolerance of wheat(Triticum aestivum L.)[J].Indian J Biochem Biophys, 2011, 49(4): 257-265. [13] Wang WB, Kim YH, Lee HS, et al. Analysis of antioxidant enzyme activity during germination of alfalfa under salt and drought stresses[J]. Plant Physiol Biochem, 2009, 47(7): 570-577. [14] Faize M, Burgos L, Faize L, et al. Involvement of cytosolic ascorbate peroxidase and Cu/Zn-superoxide dismutase for improved tolerance against drought stress[J]. J Exp Bot, 2011, 62(8): 2599-2613. [15] 徐照丽. 保山生态因素对其特色优质烟叶质量的影响[J].农艺科学, 2008, 24(8): 196-200. [16] 苏德艳, 杨中义, 何轶, 等. 保山生态因素对其特色优质烟叶 质量的影响[J]. 湖南农业科学, 2009(1): 53-56. [17] 盛业龙. 不同生育期烟草品种抗旱性比较筛选与综合评 价[D]. 昆明: 云南师范大学, 2013. [18] 姚艳荣, 贾秀领, 马瑞昆, 等. 一种新型玉米苗期反复干旱存 活率鉴定试验设计及效果研究[J]. 华北农学报, 2010, 25(增 刊): 148-151. [19] 张志良. 植物生理学实验指导[M]. 第4 版. 北京: 高等教 育出版社, 2009: 207-208. [20] Szalai G, Kell?s T, Galiba G, et al. Glutathione as an antioxidant a nd re g ul a t o ry mo l e c ul e i n pl a nt s unde r a bi o t i c st re ss conditions[J]. J Plant Growth Regul, 2009, 28(1): 66-80. [21] 李志刚, 许自成, 苏永士, 等. 植物谷胱甘肽研究进展[J].江西农业学报, 2010, 22(4): 118-121. [22] Foyer CH, Shigeoka S. Understanding oxidative stress and antioxidant functions to enhance photosynthesis[J]. Plant Physiol, 2011, 155(1): 93-100. [23] 李忠光, 杜朝昆, 龚明. 在单一提取系统中同时测定植物 AsA/DHA 和GSH/GSSG[J]. 云南师范大学学报, 2003, 23(3): 67-70. [24] Nagalakshmi N, Prasad MN. Responses of glutathione cycle enzymes and glutathione metabolism to copper stress in Scenedesmus bijugatus[J]. Plant Sci, 2001, 160(2): 291-299. [25] Jiang M, Zhang J. Effect of abscisic acid on active oxygen species,antioxidative defence system and oxidative damage in leaves of maize seedlings[J]. Plant Cell Physiol, 2001, 42(11): 1265- 1273. [26] 李忠光, 李江鸿, 杜朝昆, 等. 在单一提取系统中同时测定五 种植物抗氧化酶[J]. 云南师范大学学报, 2002, 22(6): 45- 48. [27] 马旭俊, 朱大海. 植物超氧化物歧化酶(SOD)的研究进展[J].遗传, 2003, 25(2): 225-231. [28] Giannopolitis CN, Ries SK. Superoxide dismutases: I. Occurrence in higher plants[J]. Plant Physiol, 1977, 59(2): 309-314. [29] 王兰, 蔡千蕙. 低温胁迫对水稻苗期SOD、POD 活性的影响[J].湖南农业科学, 2011, (11): 56-58, 62. [30] 陈金峰, 王宫南, 程素满. 过氧化氢酶在植物胁迫响应中的功 能研究进展[J]. 西北植物学报, 2008, 28(1): 188-193. [31] Aebi H. Catalase in vitro[J]. Methods Enzymol, 1984, 105: 121-126. [32] Halliwell B, Foyer CH. Properties and physiological function of a glutathione reductase purified from spinach leaves by affinity chromatography[J]. Planta, 1978, 139(1): 9-17. [33] 李泽琴, 李静晓, 张根发. 植物抗坏血酸过氧化物酶的表达调 控以及对非生物胁迫的耐受作用[J]. 遗传, 2013, 35(1): 45-54. 生物技术通报 Biotechnology Bulletin 2014年第1期142 [34] 赵世杰, 李德全. 现代植物生理实验指南[M]. 北京: 科学 出版社, 1999: 184. [35] 陈爱葵, 韩瑞宏, 李东洋, 等. 植物叶片相对电导率测定方法 比较研究[J]. 广东教育学院学报, 2010, 30(5): 88-91. [36] G?bel C, Feussner I. Methods for the analysis of oxylipins in plants[J]. Phytochemistry, 2009, 70(13-14): 1485-1503. [37] O'Brien JA, Daudi A, Butt VS, et al. Reactive oxygen species and their role in plant defence and cell wall metabolism[J]. Planta,2012, 236(3): 765-779. [38] Suzuki N, Koussevitzky S, Mittler R, et al. ROS and redox signalling in the response of plants to abiotic stress[J]. Plant Cell Environ,2012, 35(2): 259-270. [39] Suzuki N, Miller G, Morales J, et al. Respiratory burst oxidases: the engines of ROS signaling[J]. Curr Opin Plant Biol, 2011, 14 (6): 691-699. |