[1] Bloom E, Riemenschneider A, Volker J, et al.Sulphur supply and infection with Pyrenopeziza brassicae influence L-cysteine desulphydrase activity in Brassica napus L[J].Journal of Experimental Botany, 2004, 55:2305-2312.
[2] Rauseh T, Wachter A.Sulfur metabolism:a versatile platform for launching defence operations[J].Trends in Plant Science, 2005, 10:503-509.
[3] Tabe L M, Droux M.Limits to sulfur accumulation in transgenic lupin seeds expressing a foreign sulfur-rich protein[J].Plant Physiology, 2002, 128:1137-1148.
[4] Chiang H C, Lo J C, Yeh K C.Genes associated with heavy metal tolerance and accumulation in Zn/Cd hyperaccumulator Arabidopsis halleri:a genomic survey with cDNA mieroarray[J].Environmental Science Technology, 2006, 40:6792-6798.
[5] Agrawal A A, Kurashige N S.A role for isothiocyanates in plant resistance against the specialist herbivore Pieris raPan[J].Journal of Chemical Ecology, 2003, 29:1403-1415.
[6] Zhang Z, Ober J A, Kliebenstein D J.The gene controlling the quantitative trait locus epithiospecifier modifier alters glucosinolate hydrolysis and insect resistance in Arabidopsis[J].Plant Cell, 2006, 18:1524-1536.
[7] Feechan A, Kwon E, Yun B W, et al.A central role for Snitrnsothiols in plant disease resistance[J].Proceeding of the National Academy of Sciences, 2005, 102:8054-8059.
[8] Howarth R W, Stewart J W B, Ivanov M V.Sulphur Cycling on the Continents SCOPE48[M].Chiehester UK:John Wiley and Sons, 1992:27-61.
[9] Sutie J M, Reynolds S G, Batello C.Grasslands of the World[J].Plant Production and Protection Series, 2005, 34.Rome:FAO.
[10] Wang S P, Wang Y F, Cui X Y, et al.Influence of sulphur fertilizer on sulphur cycling and its implications on sulphur fertilizer requirement of grazed pasture in warm seasonal rangeland of Nei Monggol steppe of China[J].Acta Botanica Sinica, 2002, 44:204-211.
[11] 高会旺, 黄美元, 管玉平, 等.大气中硫污染物的干沉降模式[J].环境科学, 1997, 18(6):1-5.
[12] 张晋华, 王雷, 聂亚峰, 等.自然生态系统中含硫气体的产生机理与环境归趋[J].环境污染治理技术与设备, 2002, 3(2):3-19.
[13] 谢瑞芝, 董树亭, 胡昌浩.植物硫紊营养研究进展[J].中国农学通报, 2002, 18(2):65-69.
[14] 吴宇, 高蕾, 曹民杰, 等.植物硫营养代谢、调控与生物学功能[J].植物学通报, 2007, 24(6):735-761.
[15] Yoshimoto N, Inoue E, Saito K, et al.Takahashi H.Phloem-localizing sulfate transporter sultr1:3 mediates redistribution of sulfur from source to sink organs in Arabidopsis[J].Plant Physiology:2003, 131:1511-1517.
[16] Kataoka T, Hayashi N, Yamaya T, et al.Root-to-shoot transport of sulfate in Arabidopsis.Evidence for the role of sultr 3:5 as a component of low-afflnity sulfate transport system in the root vnseulature[J].Plant Physiology, 2004a, 136:4198-4204.
[17] Katanka T, Watanabe-Takahashi A, Hayashi N, et al.Vacuolar sulfate transporters are essential determinants controlling internal distribution of sulfate in Arabidopsis[J].Plant Cell, 2004b, 16:2693-2704.
[18] Raven J A, Smith F A.Nitrogen assimilation and transport in vascular land plants in relation to intracellular pH regulations[J].New Phytology, 1976, 76:415-431.
[19] Takahashi H, Yamazaki M, Sasakura N, et al.Regulation of sulfur assimilation in higher plants:a sulfate transporter induced in sulfate-starved roots plays a central role in Arabidopsis thaliana[J].Proceeding of the National Academy of Sciences, 1997, 94:11102-11107.
[20] Marnyama-Nakashita A, Nakamura Y, Yamaya T, et al.Regulation of high-affinity sulphate transporters in plants:towards systematic analysis of sulphur signalling and regulation[Jl.Journal of Experiment Botany, 2004, 55:1843-t849.
[21] Rennenberg H, Schr der P, Huber B.Emission of reduced sulfur compounds from agricultural and forest ecosystems[J].The Eurotrac Subproject Biatex, Eurntrac Annual Report, 1990, 1991:156-162.
[22] Kesselmeier J, Merk L, Bliefernicht M, et al.Trace gas exchange between terrestrial plants and atmosphere:carben dioxide, carbenyl sul de and ammonia underthe rule of compensation points[C]// Slanina J, Angeletti G, Beilke S, General assessment of biogenic emissions anddeposition of nitrogen compounds, sulphur compounds andoxidants in Europe, CEC Air Pollution Research Report 47, E Guyot SA, Brnessels, 1993:71-80.
[23] Stefels J.Physiological aspects of the production and conversion of DMSP in marine algae and higher plants[J].Journal of Sea Research, 2000, 43:183-197.
[24] Cowling D W, Jones L H P, Leckyer D R.Increased yield through correction of sulphur deficiency in ryegrass exposed to sulphur dioxide[J].Nature, 1973, 243:479-480.
[25] Bartell U, Hofmann U, Hofmann R, et al.COS and H_2S fluxes over a wet meadow in relation to photosynthetic activity:an analysis of measurements made on 6 September 1990[J].Atmospheric Environment, 1993, 27:1851-1864.
[26] Mcintyre G I.Control of plant development by limiting factors:a nutritional perspective[J].Physiologia Plantarum, 2001, 113:165-175.
[27] Potters G, Pasternak T P, Guisez Y, et al.Stress-induced morphogenetic responses:growing out of trouble[J].Trends Plant Science, 2007, 12:98-105.
[28] Lopez-Bueio J, Cruz-Ramirez A, Herrera-Estrella L.The role of nutrient availability in regulating root architecture[J].Current Opinion Plant Biology, 2003, 6:280-287.
[29] Dan H, Yang G, Zheng Z L.A negative regulatory role for auxin in sulphate deficiency response in Arabidopsis thaliana[J].Plant Molecular Biology, 2007, 63:221-235.
[30] Wang S P, Wang Y F, Chen Z Z, et al.Solphur concentration of soils and plants and its requirement for ruminants in the Inner Mongolia steppe of China[J].Grass and Forage Science, 2001, 56:418-422.
[31] Ladd J W, Amato M, Oades J M.Decomposition of plant materials in Australian soils Ⅲ.Residual organic and microbial mass C and N from isotope-labelled legume material and soil organic matter, decomposing under field conditions[J].Australian Journal of soil Research, 1985, 23:603-611.
[32] Curtin D, Syers J K.Extractability and adsorption of sulphate in soils[J].Journal of Soil Science, 1990, 41:305-312.
[33] 聂亚峰, 席淑琪, 张晋华, 等.环境因素对土壤含硫气体释放的影响[J].环境化学, 2001, 20(1):38-42.
[34] 乔维川, 席淑琪, 张晋华, 等.土壤理化条件变化对含硫气体释放的影响[J].环境科学, 2000, 1(21):78-80.
[35] 刘崇群, 曹淑卿, 吴锡军.中国农业中硫的概述.中国硫资源和硫肥需求的现状和展望国际学术讨论会论文集[M].北京:中国科学技术出版社, 1993:154-162.
[36] Cui X Y, Waug S P, Wang Y F, et al.Suitability of extractauts for predicting available sulfur in natural grassland in the inner mongolia steppe of China[J].Commanications in Soil Science and Plant Analysis, 2006, 37:721-732.
[37] Patton W J, Schimal D S, Cole C V, et al.Analysis of factors controlling soil organic matter levels in great plains grasslands[J].Soil Science Society of America Journal, 1987, 151:1173-1179.
[38] Parton W J, Scurlock J M O, Ojima D S, et al.Observation and modeling of biomass and soil orgnic matter dynamics for the grassland biomc worldwide[J].Global Biogeochemical Cycles, 1993, 7:785-809.
[39] Parton W J, Stewart J W B, Cole C V.Dynamics of C, N, P, S in grassland soils:a model[J].Biogeochemistry, 1988, 5:109-131.
[40] Patton W J, Ojima D S, Schime D S.Environmental change in grasslands:assessment using models[J].Climatic Change, 1994, 2:111-141.
[41] 张佳华, 徐永福, 徐祥德.利用生物地球化学模型研究草地生态系统土地变化对生态环境的影响[J].水土保持学报2003, 17(1):100-103.
[42] 刘毅, 陈吉宁.中国磷循环系统的物质流分析[J].中国环境科学, 2006, 26(2):238-242.
[43] 肖复明, 张群, 范少辉.中国森林生态系统碳平衡研究[J].世界林业研究, 2006, 19(1):53-57.
[44] 周广胜, 王玉辉, 许振柱, 等.中国东北样地碳循环研究进展[J].自然科学进展, 2003, 13(9):917-922.
[45] 李玉中, 王庆锁, 钟秀丽, 等.羊草草地植被-土壤系统氮循环研究[J].植物生态学报, 2003, 27(2):177-182.
[46] 周玉荣, 于振良, 赵士洞.我国主要森林生态系统碳贮量和碳平衡[J].植物生态学报, 2000, 24(5):518-522.
[47] 李凌浩, 陈佐忠.草地生态系统碳循环及其对全球变化的响应Ⅰ.碳循环的分室模型、碳输入与贮量[J].植物学通报, 1998, 15(2):14-22.
[48] 黄界颍, 马友华, 张继榛.农田生态系统中硫平衡的研究--地下水中硫的作用[J].土壤通报, 2003, 34(3):233-237.
[49] 张明, 王体健, 张艳, 等.农田生态系统大气硫沉降通量的观测研究[J].气象科学, 2003, 23(3):263-272.
[50] 幸颖, 刘常宏, 安树青.海岸盐沼湿地土壤硫循环中的微生物及其作用[J].生态学杂志, 2007, 26(4):577-581.
[51] 李新华, 刘景双, 孙志高, 等.三江平原小叶章湿地生态系统硫的生物地球化学循环[J].生态学报, 2007, 27(6):2199-2207.
[52] 汪诗平, 王艳芬, 姚依群.内蒙古典型草原放牧生态系统硫循环模式的初步研究[J].草地学报, 1998, 6(4):252-257.
[53] 罗海玲, 黄有德, 张尤嘉, 等.高寒草甸草地水、土、草中氮硫含量冷暖季节的变化[J].草业科学, 2001, 18(4):39-45.
[54] 汪诗平, 王艳芬, 陈佐忠, 等.内蒙古典型草原主要土壤类型和植物硫状况的研究[J].植物生态学报, 2001, 25(4):465-471.
[55] 张力, 刘彩琴.青海三角城种羊场高寒草甸草场硫的季节变化及其盈缺分析[J].中国草食动物, 2004, 14(4):18-20.
[56] 许贵善, 张力, 郑中朝.青海海西荒漠半荒漠草地氮硫的季节变化及盈缺分析[J].草原与草坪, 2005, 5(112):34-37.
[57] 刘忠宽, 汪诗平, 陈佐忠, 等.不同放牧强度草原休牧后土壤养分和植物群落变化特征[J].2006, 6(26):2048-2056. |