2010年烟台沙漠学术研讨会论文选 |
|
|
|
|
Leaf Anti-oxidative Physiology of Two Ecotypes of Reed in the Desert Regions, China |
LIU Yu-bing, LI Xin-rong, TAN Hui-juan, LI Xiao-jun |
Laboratory of Plant Stress Ecophysiology and Biotechnology/Shapotou Desert Research & Experiment Station, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China |
|
|
Abstract The aim of the present study is to investigate the anti-oxidative physiology in cellular redox environment of two ecotypes of reed (Phragmites communis Trin.) inhabiting in the desert region of China. Dune reed (DR) and Gobi salt reed (GSR) are selected from the Tengger Desert of northwest China, and the swamp reed (SR) is selected as control. The results indicate that the level of lipid peroxidation, the contents of hydrogen peroxide and nitric oxide and the ratio of carotenoids/chlorophyll are high in DR and GSR, and the levels in GSR are higher than in DR. It indicates that there is a high level of oxidation in GSR and DR, especially in GSR. The antioxidant defense system analysis show that DR and GSR possess higher activities of superoxide dismutase, ascorbate peroxidase and nitric oxide synthase than SR; Compared with SR, there is no significant differences in the activities of catalase and glutathione reductase for DR and GSR, and activity of peroxidase in DR and GSR is obviously lower than those in SR. Na+/K+-ATPase and Ca2+/Mg2+-ATPase, which relate to the ability of osmotic regulation of membrane, show a higher activities in GSR than those in DR and SR. These results suggest that the adaptation to saline or drought of common reed contributes to the high resistance to the oxidative stress related to apperceive environmental conditions.
|
Received: 30 August 2010
Published: 20 March 2011
|
[1]Engloner A I.Structure, growth dynamics and biomass of reed(Phragmites australis)—a review[J].Flora,2009,204:331-346. [2]Haslam S M.Variation of population types in Phragmites communis Trin[J].Annals of Botany,1970,34:147-158. [3]Haslam S M.The performance of Phragmites communis Trin[J].Annals of Botany,1975,39:881-888. [4]Matoh T,Matsushita N,Takahashi E.Salt tolerance of the reed plants Phragmites communis[J].Physiologia Plantarum,1988,72:8-14. [5]Dykyjova D,Hradecka D.Production ecology of Phragmites communis? Relation of two ecotypes to the microclimate and nutrient condition of habitat[J].Folia Geobot Phytotax,1976,11:24-61. [6]Haslam S M.Stem types of Phragmites communis Trin[J].Annals of Botany,1969,33:127-131. [7]Haslam S M.Biological flora of the British Isles.Phragmites communis Trin[J].Journal of Ecology,1972,60:585-610. [8]Ho Y B.Shoot development and production studies of Phragmites australis(Cav.) Trin.ex Steudel in Scottish Lochs[J].Hydrobiologia,1979,64:215-222. [9]张承烈,周瑞莲,陈国仓.芦苇耐脱水能力的生理生态学分析[J].植物生态学及地植物学学报,1992,16(4):311-316. [10]陈国仓,张承烈.不同生态型芦苇形态特征和茎杆解剖结构的比较研究[J].兰州大学学报,1991,27(1):91-98. [11]Zheng W J,Zheng X P,Zhang C L.A survey of photosynthetic carbon metabolism in 4 ecotypes of Phragmites communis in northwest Chain:leaf anatomy,ultrastructure,and activities of ribulose 1,5-bisphosphate carboxylase,phosphoenolpyruvate carboxylase and glycollate oxidase[J].Physiology Plantarum,2000,110:201-208. [12]朱学艺,王锁明,张承烈.河西走廊不同生态型芦苇对干旱和盐渍胁迫的响应调节[J].植物生理学通讯,2003,39(4):371-376. [13]Chen K,Wang F,Wang Y,et al.Anatomical and chemical characteristics of foliar vascular bundles in four reed ecotypes adapted to different habitats[J].Flora,2006,201:555-569. [14]Chen K M,Gong H J,Wang S M,et al.Antioxidant defense system in Phragmites communis Trin.Ecotypes[J].Biologia Plantarium,2007,51 (4):754-758. [15]Zhang X Z.The measurement and mechanism of lipid peroxidation and SOD,POD and CAT activities in biological system[M]//Zhang X Z .Research Methodology of Crop Physiology.Agriculture Press Inc.,Beijing,China,1992. [16]Brennan T,Frenkel C.Involvement of hydrogen peroxide in regulation of senescence in pear[J].Plant Physiology,1977,59:411-416. [17]Song L,Ding W,Zhao M,et al.Nitric oxide protects against oxidative stress under heat stress in the calluses from two ecotypes of reed[J].Plant Science,2006,171:449-458. [18]Lichtenthaler H K.Chlorophylls and carotenoids,the pigments of the photosynthetic biomembranes[J].Methods in Enzymology,1987,148:350-382. [19]Bradford M M.A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding[J].Analytical of Biochemistry,1976,72:248-254. [20]Foyer C H,Halliwell B.The presence of glutathione and glutathione reductase in chloroplasts:a proposed role in ascorbic acid metabolism[J].Planta,1976,133:21-25. [21]Halliwell B,Gutteridge J M C.Role of free radicals and catalytic metalions in human disease:an overview[J].Methods in Enzymology,1990,186:1-85. [22]陈少裕.膜脂过氧化对植物细胞的伤害[J].植物生理学报,1991,27(2):84-90. [23]Walter Larcher.植物生态生理学[M].北京:中国农业大学出版社,1997. [24]Arasimowicz M,Floryszak-Wieczorek J.Nitric oxide as a bioactive signalling molecule in plant stress responses[J].Plant Science,2007,172:876-887. [25]Zhao Z,Chen G,Zhang C.Interaction between reactive oxygen species and nitric oxide in drought-induced abscisic acid synthesis in root tips of wheat seedlings[J].Australian Journal of Plant Physiology,2001,28:1055-1061. [26]Bright J,Desikan R,Hancock J T,et al.ABA-induced NO generation and stomatal closure in Arabidopsis are dependent on H2O2 synthesis[J].Plant Journal,2006,45:113-122. [27]Meir S,Kanner J,Akiri B,et al.Determination and involvement of aqueous reducing compounds in oxidative defense systems of various senescing leaves[J].Journal of Agricultural and Food Chemistry,1995,43:1813-1819. [28]周生荟,刘玉冰,谭会娟,等.荒漠植物红砂在持续干旱胁迫下的光保护机制研究[J].中国沙漠,2010,30(1):69-72. [29]李菊艳,赵成义,闫映宇,等.盐分对胡杨幼苗生长及光合特性的影响[J].中国沙漠,2010,30(1):80-86. [30]陈年来,张玉鑫,安黎哲.NaCl胁迫对甜瓜叶片气体交换和叶绿素荧光特性的影响[J].中国沙漠,2009,29(6):1129-1133. [31]周洪华,陈亚宁,李卫红,等.塔里木河下游胡杨气体交换特性及其环境解释[J].中国沙漠,2008,28(4):673-678. [32]朱军涛,李向义,张希明,等.灌溉对疏叶骆驼刺(Alhagi sparsifolia)幼苗光合生理指标及渗透物质的影响[J].中国沙漠,2009,29(4):697-702. [33]Wang J G,Zhang C L.DNA damage and repair of two ecotypes of Phragmites communis subjected to water stress[J].Acta Botany Sinica,2001,43(5):490-494. [34]王洪亮,张承烈.河西走廊不同生态型芦苇质膜特征的比较研究[J].植物学报,1993,35(7):533-540. [35]Pagter M,Bragato C,Malagoli M,et al.Osmotic and ionic effects of NaCl and Na2SO4 salinity on Phragmites australis[J].Aquatic Botany,2009,90:43-51. |
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|