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一种拟南芥突变体对高浓度CO_2反应的研究 被引量:4

Response of an Arabidopsis mutant to elevated CO_2 concentration
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摘要 The study on the response of a mutant and a wild type of Arabidopsis to 660 μl·L -1 CO 2 and ambient CO 2 showed that under elevated CO 2,the stomatal numbers of the mutant increased,while those of the wild type decreased. The chlorophyll content and NR (nitrate reductase) activity of the mutant increased,but those of the wild type had no obvious response. The mutant was not reproductively mature after the continuous exposure to increased CO 2 for five months. The results provided evidence of plant response to the changes of atmospheric CO 2 concentration,and the clues to related studies on other plants. The study on the response of a mutant and a wild type of Arabidopsis to 660 μl·L -1 CO 2 and ambient CO 2 showed that under elevated CO 2,the stomatal numbers of the mutant increased,while those of the wild type decreased. The chlorophyll content and NR (nitrate reductase) activity of the mutant increased,but those of the wild type had no obvious response. The mutant was not reproductively mature after the continuous exposure to increased CO 2 for five months. The results provided evidence of plant response to the changes of atmospheric CO 2 concentration,and the clues to related studies on other plants.
出处 《应用生态学报》 CAS CSCD 2003年第12期2359-2360,共2页 Chinese Journal of Applied Ecology
基金 教育部留学归国人员基金项目 (2 0 0 0 ) 沈阳师范大学博士启动基金资助项目(2 0 0 1)
关键词 拟南芥 突变体 高浓度CO2反应 生态系统 Arabidopsis thaliana,Carbon dioxide, Response
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  • 1[1]Chen LQ, Hu CY, Gaboury L, et al. 2001. Assessing the potential for the stomatal characters of extant and fossil Ginkgo leaves to signal atmospheric CO2 change. Am J Bot, 88:1309~ 1315
  • 2[2]DeLucia EH, Hamilton JG, Naidu SL, et al. 1999. Net primary production of a forest ecosystem with experimental CO2 enrichment.Science, 284:1177~ 1179
  • 3[3]Gray JE, Holroyd GH, van der Lee FM, et al. 2000. The HIC signalling pathway links CO2 perception to stornatal development. Nature,408:713~716
  • 4[4]Hao L (郝林). 1999. Arabidopsis-An excellent experimental material for plant developmental biology and molecular biology.PlantPhysiolCommu(植物生理通讯),35(3):218~220(inChinese)
  • 5[5]Hu S, Chapin Ⅲ, Firestone H, et al. 2001. Nitrogen limitation of microbial decomposition in a grassland under elevated CO2. Nature,409:188~191
  • 6[6]Jones TH, Thompson LJ, Lawton JH, et al. 1998. Impacts of rising atmospheric car:bon dioxide on model terrestrialecosystems. Science, 280: 441 ~ 443
  • 7[7]LaDesu SL, Clark JS. 2001. Rising CO2 levels and the fecundity of forest trees. Science, 292: 95 ~ 98
  • 8[8]Tangley L. 2001. High CO2 levels may give fast-growing trees an edge. Science, 292: 36 ~ 37
  • 9[9]Woodward FI. 1987. Stomatal numbers are sensitive to CO2 increases from pre-industrial levels. Nature, 327: 617~ 618
  • 10[10]Woodward FI and Kelly CK. 1995. The influence of CO2 concentration on stomatal density. New Phytol, 131:311 ~327

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