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近地层臭氧对小麦抗氧化酶活性变化动态的影响 被引量:11

Concentration of O_3 at the atmospheric surface affects the changes characters of antioxidant enzyme activities in Triticum aestivum
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摘要 利用开顶式气室(TOCs)模拟了地表O3浓度升高的大田试验条件,测定了小麦各生长期(返青期、拔节期、孕穗期、抽穗期、灌浆期、成熟期)叶片抗氧化酶的活性。通过2 a的重复试验,得到相似结果。试验表明,过氧化氢酶(CAT)和过氧化物酶(POD)活性在小麦的生长进程中,先升高后降低。O3浓度升高使CAT酶和POD酶活性的峰值期提前,POD酶峰值期明显提前所需的O3浓度比CAT酶高,O3诱导小麦生长前期的CAT、POD酶活性升高,后期则起抑制作用。POD酶对低浓度O3的胁迫响应时间较晚。当O3浓度提高到150 nL/L时,超氧化物歧化酶(SOD)活性随小麦生长期的变化,由原来的双峰曲线变为单峰曲线,高浓度O3使SOD酶活性在抽穗期后持续显著降低。O3不明显改变抗坏血酸过氧化物酶(APX)对胁迫的响应时间,但一定浓度范围内O3能诱导APX酶活性升高。不同浓度的O3对SOD酶和APX酶的作用效应和强度显著不同,CAT酶和POD酶对O3比较敏感。因此,近地层O3浓度增加,改变了CAT、POD和SOD酶活性变化的时序特征,抗氧化酶对O3胁迫的响应特征取决于小麦的生育期、O的浓度和薰气时间。 Using ozone treatments in OTCs(open top chambers),the effect of increase atmospheric surface level ozone(O3) contents on antioxidant enzymes activities of winter wheat leaves(Triticum aestivum)was investigated,in the growing/development(G/D) periods including reviving,jointing,booting,heading,filing and mature stages.Two experiments were performed in two years by doing each experiment in one year,using six OTCs in each.The chambers were equivalent,but two were fed with air while the other four with ozone at different concentration,in that two chambers with 100nL/L and the other two with 150nL/L.Winter wheat were grown to all life stage in OTCs.From reviving to mature stages,the plants were treated for 8 h(8:00-16:00) in every sunny day with different dose of O3,respectively.The activities of winter wheat leaves(the second and the 5th from the top).Catalase(CAT),peroxidase(POD),superoxide dismutase(SOD) and ascorbate peroxidase(APX) were measured.Antioxidant enzymes of each treatment was assayed in triplicate.The data were initially compared by analysis of variance and differences between means were detected using the Duncans Multiple Range Tests.Values of P0.05 indicated significance.Quite similar results were obtained during two years′ experiments,suggesting that as a G/D stage is progressing,the activities of leaves catalase(CAT) and peroxidase(POD) increased firstly but consequently declined.Under the increased O3 stress,CAT and POD activities raised and their peak values appeared earlier,but POD needed higher O3 concentration than CAT′s,The activeness of CAT and POD is induced in the later G/D period.Subjected to low concentration of O3,POD activity was found to remain unaffected in longer time compared to CAT.When the O3 concentration was increased to 150 nL/L,the relationship of superoxide dismutase(SOD) activities against wheat growth stages was altered from double hump to single hump style.SOD activity was found to be obviously decreased in the advance G/D period under higher O3 stress.No obvious influence was found for the time response of ascorbate peroxidase caused by O3 stress,but in a certainly range,while O3 concentration could induce APX activity.The effects and influenced strength are significantly different between superoxide dismutase and ascorbate peroxidase against O3 doses.CAT and POD are more sensitive to O3 than SOD and APX.Taking together,the elevated O3 concentration in atmospheric surface layer,impinges on the time series features of CAT,POD and SOD.O3 stresses could induce oxidative stress.Antioxidant enzymes activities were upregulated under low concentration and short time ozone fumigation.Otherwise,enhance O3 irradiation and prolong fumigation time the activities of antioxidant enzymes were inhibited.The effects on antioxidant enzymes activities are relate to(G/D) periods of winter wheat,dose of O3 and the exposure time.Various antioxidant enzymes have different O3-sensitive,representing that the threshold of subjected to O3,the responses time to O3 stress and the variation scope of antioxidant enzymes activities are different.
出处 《生态学报》 CAS CSCD 北大核心 2011年第14期4019-4026,共8页 Acta Ecologica Sinica
基金 国家自然科学基金项目(40775072) 江苏省高校自然科学研究项目(09KJA170004) 南京信息工程大学项目(20080312)
关键词 小麦 O3 抗氧化酶 OTCs 时序特征 Triticum aestivum open top chambers O3 stress antioxidant enzymes time series feature
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  • 1Tausz M, Grulke N E, Wieser G. Defense and avoidance of ozone under glnh'al change. Environmental Pollution, 2007, 147 (3) : 525-531.
  • 2Forster P, Ramaswamy V, Artaxo P, Ben~tsen T, Betts R, Fahey D W, Haywood J, Lean J, Lowe D C, Myhre G, J, Nganga J, Prinn R, Raga G, Schulz M, van Dorland R. Changes in atmospheric constituents and in radiative forcing//Solomon S, Qin D, Manning M, Chen Z, Marquis M, Avert K B, Tignor M, Miller H L, eds. Climate Change 2007 : The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the lntergovernmental Panel on Climate Change. Cambridge, New York: Cambridge University Press, 2007.
  • 3Matyssek R, Wieser G, Nunn A J, Kozovits A R, Reiter IM, Heerdt C, Winkler J B, Baumgarten M, Haberle K H, Grams T E E, Werner H, Fabian P, Havranek W M. Comparison between AOT40 and ozone uptake in forest trees of different species, age and site conditions. Atmospheric Environment, 2004, 38 ( 15 ) : 2271 - 2281.
  • 4Wang C Y, Bai Y M, Guo J P. Impacts of ozone concentration changes on crops and vegetables in China. Acta Meteor Sinica, 2004, 18( l ) : 105- 116.
  • 5Agarwal S, Sairam RK, Srivastava G C, Meena R C. Changes in antioxidant enzymes activity and oxidative stress by abscisic acid and salicylic acidin wheat genotypes. Biologia Plantarum, 2005, 49(4) : 541-550.
  • 6Yan P, Li J W, Zeng L Y. Effect of salt and drought stress on autioxidant enzymes activities and SOD isoenzymes of liquorice ( Glycyrrhiza uralensis Fisch). Plant Growth regulation 2006, 49 (2/5) : 157-165.
  • 7王春乙.OTC-1型开顶式气室的结构和性能与国内外同类气室的比较[J].环境科学进展,1996,4(1):50-57. 被引量:9
  • 8Carrasco-Rodriguez J L, Asensi-Fabado A, Del Valle-tascon S. Effects of tropospheric ozone on potato plants protected by the antioxidant diphenylamine (DPA). Water, Air, and Soil Pollution, 2005, 161 (1/4) : 299-312.
  • 9Iriti M, Faoro F. Oxidative stress, the paradigm of ozone toxicity in plants and animals. Water Air Soil Pollut, 2008, 187(1/4) : 295-301.
  • 10Chappelka A H, Chevone B I. Tree responses to ozone // Lefohn A S, ed. Surface Level Ozone Exposures and Their Effects on Vegetation. Chelsea: Lewis Publishers, 1992 : 271-324.

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