Chin J Plant Ecol ›› 2006, Vol. 30 ›› Issue (4): 682-688.DOI: 10.17521/cjpe.2006.0089 cstr: 32100.14.cjpe.2006.0089
• Research Articles • Previous Articles Next Articles
CHANG Si-Min, MA Xin-Ming*(
), ZHANG Gui-Long, XIONG Shu-Ping, ZHAN Ke-Hui, LIU Guo-Shun
Received:2005-06-08
Accepted:2005-10-17
Online:2006-06-08
Published:2006-07-30
Contact:
MA Xin-Ming
CHANG Si-Min, MA Xin-Ming, ZHANG Gui-Long, XIONG Shu-Ping, ZHAN Ke-Hui, LIU Guo-Shun. EFFECTS OF ARSENIC TOXICITY ON CARBON AND NITROGEN METABOLISM AND THE YIELD AND QUALITY OF FLUE-CURED TOBACCO[J]. Chin J Plant Ecol, 2006, 30(4): 682-688.
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URL: https://www.plant-ecology.com/EN/10.17521/cjpe.2006.0089
| 处理 Treatments (mg·kg-1) | 叶绿素含量 Chlorophyll content (mg·g-1 FW) | 光合速率 Photosynthetic rate (μmol·m-2·s-1) | |||||||
|---|---|---|---|---|---|---|---|---|---|
| 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | ||||
| 对照 CK | 2.729aA | 1.497aA | 0.725aA | 9.34aA | 9.49NS | 4.01abA | |||
| 5 | 2.198bB | 1.486bA | 0.554eE | 8.36abA | 9.48NS | 5.05aA | |||
| 20 | 1.657cC | 1.300dC | 0.682cC | 7.45bB | 8.49NS | 3.56bA | |||
| 40 | 1.515dD | 1.119eD | 0.642dD | 6.84bcB | 9.41NS | 1.58cB | |||
| 60 | 0.925eE | 1.334cB | 0.704bB | 6.74cB | 8.45NS | 1.63cB | |||
Table 1 Effects of arsenic on chlorophyll content and photosynthetic rate in flue-cured tobacco
| 处理 Treatments (mg·kg-1) | 叶绿素含量 Chlorophyll content (mg·g-1 FW) | 光合速率 Photosynthetic rate (μmol·m-2·s-1) | |||||||
|---|---|---|---|---|---|---|---|---|---|
| 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | ||||
| 对照 CK | 2.729aA | 1.497aA | 0.725aA | 9.34aA | 9.49NS | 4.01abA | |||
| 5 | 2.198bB | 1.486bA | 0.554eE | 8.36abA | 9.48NS | 5.05aA | |||
| 20 | 1.657cC | 1.300dC | 0.682cC | 7.45bB | 8.49NS | 3.56bA | |||
| 40 | 1.515dD | 1.119eD | 0.642dD | 6.84bcB | 9.41NS | 1.58cB | |||
| 60 | 0.925eE | 1.334cB | 0.704bB | 6.74cB | 8.45NS | 1.63cB | |||
| 处理 Treatments (mg·kg-1) | 可溶性糖含量 Soluble sugar content (μg·g-1 FW) | 淀粉含量 Starch content (μg·g-1 FW) | ||||
|---|---|---|---|---|---|---|
| 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | 现蕾期 Budding stage | 采收期 Harvest stage | ||
| 对照CK | 4.909bB | 14.900dD | 12.940bB | 59.368bB | 49.270aA | |
| 5 | 12.042aA | 18.349bcBC | 18.535aA | 70.795aA | 41.885bAB | |
| 20 | 10.138aA | 21.549aAB | 17.329aA | 66.513aA | 30.382cC | |
| 40 | 9.969aA | 22.337aA | 17.128aA | 65.261abAB | 31.980cBC | |
| 60 | 9.742aA | 16.218cdCD | 16.631aA | 38.925cC | 18.977dD | |
Table 2 Effects of arsenic on the content of soluble sugar and starch in flue-cured tobacco
| 处理 Treatments (mg·kg-1) | 可溶性糖含量 Soluble sugar content (μg·g-1 FW) | 淀粉含量 Starch content (μg·g-1 FW) | ||||
|---|---|---|---|---|---|---|
| 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | 现蕾期 Budding stage | 采收期 Harvest stage | ||
| 对照CK | 4.909bB | 14.900dD | 12.940bB | 59.368bB | 49.270aA | |
| 5 | 12.042aA | 18.349bcBC | 18.535aA | 70.795aA | 41.885bAB | |
| 20 | 10.138aA | 21.549aAB | 17.329aA | 66.513aA | 30.382cC | |
| 40 | 9.969aA | 22.337aA | 17.128aA | 65.261abAB | 31.980cBC | |
| 60 | 9.742aA | 16.218cdCD | 16.631aA | 38.925cC | 18.977dD | |
| 处理 Treatments (mg·kg-1) | 总氮含量 Total nitrogen content (g·kg-1 DW) | NR活性 NR activity (μg·g-1 FW·h-1) | ||||
|---|---|---|---|---|---|---|
| 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | 现蕾期 Budding stage | 采收期 Harvest stage | ||
| 对照CK | 13.637aA | 7.933cB | 6.067bA | 0.994aA | 0.524bcBC | |
| 5 | 13.015abA | 11.200aA | 6.066bA | 0.983aA | 0.348dD | |
| 20 | 12.081bA | 9.178bB | 7.000aA | 0.463bB | 0.573bB | |
| 40 | 7.622cB | 11.200aA | 4.200cB | 0.399bB | 0.726aA | |
| 60 | 7.911cB | 11.822aA | 7.637aA | 0.279cC | 0.457cCD | |
Table 3 Effects of arsenic on total nitrogen content and NR activity in flue-cured tobacco
| 处理 Treatments (mg·kg-1) | 总氮含量 Total nitrogen content (g·kg-1 DW) | NR活性 NR activity (μg·g-1 FW·h-1) | ||||
|---|---|---|---|---|---|---|
| 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | 现蕾期 Budding stage | 采收期 Harvest stage | ||
| 对照CK | 13.637aA | 7.933cB | 6.067bA | 0.994aA | 0.524bcBC | |
| 5 | 13.015abA | 11.200aA | 6.066bA | 0.983aA | 0.348dD | |
| 20 | 12.081bA | 9.178bB | 7.000aA | 0.463bB | 0.573bB | |
| 40 | 7.622cB | 11.200aA | 4.200cB | 0.399bB | 0.726aA | |
| 60 | 7.911cB | 11.822aA | 7.637aA | 0.279cC | 0.457cCD | |
| 处理 Treatments (mg·kg-1) | 蛋白质含量 Protein content (g·kg-1 DW) | 烟碱含量 Nicotine content (g·kg-1 DW) | |||||||
|---|---|---|---|---|---|---|---|---|---|
| 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | ||||
| 对照CK | 83.742aA | 45.879cB | 33.092bB | 0.238a | 0.593aA | 0.772aA | |||
| 5 | 79.390abA | 66.396aA | 33.473bB | 0.312ab | 0.577aA | 0.710aA | |||
| 20 | 74.221bA | 53.681bB | 41.206aAB | 0.206b | 0.589aA | 0.407bB | |||
| 40 | 46.619cB | 66.477aA | 24.417cB | 0.163b | 0.564aA | 0.293cB | |||
| 60 | 48.617cB | 71.761aA | 46.065aA | 0.132b | 0.340bB | 0.266cB | |||
Table 4 Effects of arsenic on the content of protein and nicotine in flue-cured tobacco
| 处理 Treatments (mg·kg-1) | 蛋白质含量 Protein content (g·kg-1 DW) | 烟碱含量 Nicotine content (g·kg-1 DW) | |||||||
|---|---|---|---|---|---|---|---|---|---|
| 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | 团棵期 Rosette stage | 现蕾期 Budding stage | 采收期 Harvest stage | ||||
| 对照CK | 83.742aA | 45.879cB | 33.092bB | 0.238a | 0.593aA | 0.772aA | |||
| 5 | 79.390abA | 66.396aA | 33.473bB | 0.312ab | 0.577aA | 0.710aA | |||
| 20 | 74.221bA | 53.681bB | 41.206aAB | 0.206b | 0.589aA | 0.407bB | |||
| 40 | 46.619cB | 66.477aA | 24.417cB | 0.163b | 0.564aA | 0.293cB | |||
| 60 | 48.617cB | 71.761aA | 46.065aA | 0.132b | 0.340bB | 0.266cB | |||
| 处理 Treatment (mg·kg-1) | 单株产量 Yield per plant (g) | 单株产值 Value per plant (yuan) | 均价 Average price (yuan·kg-1) | 上中等烟比例 Ratio of high level (%) |
|---|---|---|---|---|
| 对照CK | 109.02aA | 0.760aA | 6.953a | 91.58aA |
| 5 | 104.75aA | 0.576bB | 5.499b | 79.04bcB |
| 20 | 103.68bA | 0.529bB | 5.102b | 82.01bcB |
| 40 | 88.49bB | 0.538bB | 5.741ab | 78.69bcB |
| 60 | 61.60cC | 0.377cC | 6.120ab | 75.17cB |
Table 5 Effects of arsenic on yield and economic properties of flue-cured tobacco
| 处理 Treatment (mg·kg-1) | 单株产量 Yield per plant (g) | 单株产值 Value per plant (yuan) | 均价 Average price (yuan·kg-1) | 上中等烟比例 Ratio of high level (%) |
|---|---|---|---|---|
| 对照CK | 109.02aA | 0.760aA | 6.953a | 91.58aA |
| 5 | 104.75aA | 0.576bB | 5.499b | 79.04bcB |
| 20 | 103.68bA | 0.529bB | 5.102b | 82.01bcB |
| 40 | 88.49bB | 0.538bB | 5.741ab | 78.69bcB |
| 60 | 61.60cC | 0.377cC | 6.120ab | 75.17cB |
| 处理 Treatment (mg·kg-1) | 总砷含量 Total As content (mg·kg-1) | 总糖含量 Total sugar content (TS) (g·kg-1) | 总氮含量 Total nitrogen content (TN) (g·kg-1) | 烟碱含量 Nicotine content (Nico) (g·kg-1) | 蛋白质含量 Protein content (Pro) (g·kg-1) | 糖碱比 TS/Nico | 氮碱比 TN/Nico | 施木克值 TS/Pro |
|---|---|---|---|---|---|---|---|---|
| 对照CK | 0.712aA | 16.543bB | 4.900b | 0.642aA | 26.611bcB | 25.763bB | 7.627cB | 0.607b |
| 5 | 2.538bB | 19.724aA | 5.431a | 0.743aA | 29.300abA | 31.196bB | 8.591bcB | 0.674b |
| 20 | 7.595cC | 18.896aA | 5.367a | 0.534bA | 30.202abA | 33.302bB | 10.137bcB | 0.593b |
| 40 | 12.614dD | 19.342aA | 4.122b | 0.364cB | 23.488cB | 58.560aA | 11.558bB | 0.925a |
| 60 | 20.557eE | 19.525aA | 5.522a | 0.297cB | 32.656aA | 66.390aA | 18.229aA | 0.605b |
Table 6 Effects of arsenic on chemical quality and arsenic content of flue-cured tobacco
| 处理 Treatment (mg·kg-1) | 总砷含量 Total As content (mg·kg-1) | 总糖含量 Total sugar content (TS) (g·kg-1) | 总氮含量 Total nitrogen content (TN) (g·kg-1) | 烟碱含量 Nicotine content (Nico) (g·kg-1) | 蛋白质含量 Protein content (Pro) (g·kg-1) | 糖碱比 TS/Nico | 氮碱比 TN/Nico | 施木克值 TS/Pro |
|---|---|---|---|---|---|---|---|---|
| 对照CK | 0.712aA | 16.543bB | 4.900b | 0.642aA | 26.611bcB | 25.763bB | 7.627cB | 0.607b |
| 5 | 2.538bB | 19.724aA | 5.431a | 0.743aA | 29.300abA | 31.196bB | 8.591bcB | 0.674b |
| 20 | 7.595cC | 18.896aA | 5.367a | 0.534bA | 30.202abA | 33.302bB | 10.137bcB | 0.593b |
| 40 | 12.614dD | 19.342aA | 4.122b | 0.364cB | 23.488cB | 58.560aA | 11.558bB | 0.925a |
| 60 | 20.557eE | 19.525aA | 5.522a | 0.297cB | 32.656aA | 66.390aA | 18.229aA | 0.605b |
| [1] | Abedin MJ, Feldmann J, Meharg AA(2002). Uptake kinetics of arsenic species in rice plants. Plant Physiology Preview, 128, 1120-1128. |
| [2] | Carbonell-Barrachina A, Burló-Carbonell F, Mataix-Beneyto J(1997). Effect of sodium arsenite on arsenic accumulation and distribution in leaves and fruit of Vitis vinifera. Journal of Plant Nutrition, 20, 379-387. |
| [3] | Chang SM( 常思敏), Ma XM( 马新明), Jiang YY( 蒋嫒嫒), He DX( 贺德先), Zhang GL( 张贵龙)(2005). Research progress on arsenic contamination in soil and arsenic toxicity in crops. Journal of Henan Agricultural University (河南农业大学学报), 39, 161-166. (in Chinese with English abstract) |
| [4] | Chen TB( 陈同斌)(1996). Arsenic in soil solution and its effect on the growth of rice (Oryza sativa L.). Acta Ecologica Sinica(生态学报), 16, 147-153. (in Chinese with English abstract) |
| [5] | Chen TB( 陈同斌), Liu GL( 刘更另) (1993). Effect of Arsenic on rice (Oryza sativa L.) growth and development and its mechanism. Scientia Agricultura Sinica (中国农业科学), 26(6), 50-58.(in Chinese with English abstract) |
| [6] | Chen Y( 陈愚), Ren JC( 任久长), Cai XM( 蔡晓明) (1998). Effects of Cadmium on nitrate reductase and speroxide dimutase of submerged macrophytes. Acta Scientiae Circumstantiae (环境科学学报), 18, 313-317. (in Chinese with English abstract) |
| [7] | Cox MS, Kovar JL(2001). Soil arsenic effects on canola seedling growth and iron uptake. Communications in Soil Science and Plant Analysis, 32, 107-117. |
| [8] | Duan CQ( 段昌群), Wang HX( 王焕校), Hu B( 胡斌) (1994). Interactions between cadmium and iron and their effects on the quality of tobacco. Journal of Yunan University (Natural Sciences Edition) (云南大学学报(自然科学版)), 16, 257-261. (in Chinese with English abstract) |
| [9] |
Gouia H, Suzuki A, Brulfert J, Ghorbal MH(2003). Effect of cadmium on the coordination of nitrogen and carbon metabolism in bean seedlings. Journal of Plant Physiology, 160, 367-375.
URL PMID |
| [10] | Huang YS( 黄玉山), Chen JM( 陈建敏), Tan FY( 谭凤仪)(1992). Current research on heavy metal binding complexes of plants. Acta Botanica Sinica (植物学报), 34, 146-158. (in Chinese with English abstract) |
| [11] | Jha AB, Dubey RS(2004). Carbohydrate metabolism in growing rice seedlings under arsenic toxicity. Journal of Plant Physiology, 16, 867-872. |
| [12] | Li DL( 李道林), Cheng L( 程磊) (2000). Distribution of As forms in soils and biological effect of As on Chinese cabbage (Brassica chinensis L.). Journal of Anhui Agricultural University(安徽农业大学学报), 27, 131-134.(in Chinese with English abstract) |
| [13] | Li SY( 李素英), Wang HX( 王焕校), Wu YS( 吴玉树) (1990). Effects of pollution from lead cadmium, zinc and their different combinations on the quality of tobacco. China Environmental Science (中国环境科学), 10, 457-460. (in Chinese with English abstract) |
| [14] | Manning A, Suarez DL(2000). Modeling arsenic(Ⅲ) adsorption and heterogeneous oxidation kinetics in soils. Soil Science Society of America Journal, 64, 128-137. |
| [15] | Pongratz R(1998). Arsenic speciation in environmental samples of contaminated soil. The Science of the Total Environment, 224, 133-141. |
| [16] | Qiang WG ( 强卫国), Yang HF ( 杨慧芬), Mao H ( 毛红) (2003). Delermination of Total Arsenic and Abio-arsenic in Foods (食品中总砷和无机砷的测定). Standards Press of China, Beijing. (in Chinese) |
| [17] | Shanghai Institute of Plant Physiology, the Chinese Academy of Sciences ( 中国科学院上海植物生理研究所), Shanghai Society for Plant Physiology ( 上海市植物生理学会)(1999). Modern Plant Physiology Experiment Guide(现代植物生理学实验指南). Science Press, Beijing. (in Chinese) |
| [18] | Shi HZ( 史宏志), Han JF( 韩锦峰) (1998). Several problems on carbon and nitrogen metabolism in flue-cured tobacco. Tobacco Science & Technology (烟草科技), (2), 34-36. (in Chinese) |
| [19] | Steffens JC(1990). The heavy metal-binding peptides of plants. Annual Review of Plant Physiology and Plant Moleculer Biology, 41, 553-575. |
| [20] | WANG RX( 王瑞新), Han F G( 韩富根), LU H( 卢红) (2003). Tobacco Chemistry(烟草化学). China Agriculture Press, Beijing.(in Chinese) |
| [21] | Wang CX( 王春旭), Li SZ( 李生志), Xu RY( 许荣玉) (1993). A study on existing forms of arsenic in environment. Environmental Science(环境科学), 14(4), 53-57. (in Chinese) |
| [22] | Xu JL( 许嘉琳), Yang JR( 杨居荣), Jing HW( 荆红卫) (1993). Effects of arsenic contamination on crops and their factors. Soil(土壤), 26(6), 50-58. (in Chinese) |
| [23] | Yang JR( 杨居荣), He JQ( 贺建群), Jiang WR( 蒋婉茹) (1995). Effect of Cd pollution on the physiology and biochemistry of plant. Agro-environmental Protection(农业环境保护), 14, 193-197. (in Chinese with English abstract) |
| [24] | Yang WJ( 杨文婕), Liu GL( 刘更另) (1997). Effect of arsenate on plant decrepit. Plant Physiology Communications (植物生理学通讯), 33(1), 54-55. (in Chinese) |
| [25] | Zhao SJ( 赵世杰) , Liu HS( 刘华山), Dong XC( 董新纯) (1998). Plant Physiology Experiment Guide(植物生理学实验指导). China Agricultural Science and Technology Press, Beijing.(in Chinese) |
| [26] | Zhou JH( 周建华) , Wang YR( 王永锐) (1999). physiological studies a poisoning effects of Cd and Cr on rice (Oryza sativa L.) seedlings through inhibition of Si nutrition. Chinese Journal of Applied and Environmental Biology (应用与环境生物学报), 5(1), 11-15. (in Chinese with English abstract) |
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