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臭氧胁迫对冬小麦叶绿素荧光及气体交换的影响
摘要点击 2700  全文点击 2179  投稿时间:2009-03-27  修订日期:2009-06-14
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中文关键词  臭氧  冬小麦  光合作用  叶绿素a荧光  光系统Ⅱ  气体交换
英文关键词  ozone  winter-wheat  photosynthesis  chlorophyll a fluorescence  photosystem Ⅱ (PSⅡ)  gas exchange
作者单位
郑有飞 南京信息工程大学气象灾害省部共建教育部重点实验室南京210044 
赵泽 南京信息工程大学环境科学与工程学院南京210044 
吴荣军 南京信息工程大学环境科学与工程学院南京210044 
胡程达 南京信息工程大学环境科学与工程学院南京210044 
刘宏举 南京信息工程大学环境科学与工程学院南京210044 
中文摘要
      为给O3等大气污染物胁迫下我国粮食生产和安全评估提供依据,利用开顶式气室(OTC)开展了3种O3熏蒸水平的大田试验(空气,CK;100 nL·L-1,T1;150 nL·L-1,T3),采用Diving-PAM叶绿素荧光仪和LC pro+光合仪测定了冬小麦(扬麦13)不同生育期的叶绿素荧光及气体交换参数.结果表明,T1Fv
英文摘要
      In order to provide basis for evaluating the effects of air pollutant such as O3 on crops yield and food security,the effects of O3 fumigation (ambient air,CK; 100 nL·L-1,T1; 150 nL·L-1,T2) on chlorophyll a fluorescence and gas exchange of a field-grown winter-wheat (Triticum aestivum L.Yang Mai 13) in different growing period were conducted via open-top chamber technique in conjunction with Diving-PAM fluorometer and LC pro+photosynthesis system. Results indicated that FvFm caused by T1 was higher than 0.8,while the Pm,qP,(1-qP)/NPQ and Y(NO) were similar to those of CK,the NPQ and Y(NPQ) were increased by 13.5%-29.0% and 13.3%-22.7% respectively due to O3 stress. Under nature light(rapid light curve,RLC) and after dark adaptation (induction curve in steady-state,IC) the Yield of T1 was decreased by 4.6%-7.6% and 11.3%-19.3% respectively,with 8.0%-9.8% and 11.0%-23.1% reductions in Pn and Gs compared to CK,respectively. In heading stage and blooming stage,the Ls of T1 was greater than CK,but in filling stage and mature stage,it became lower compared to CK. The Fv/Fm was slightly lower than 0.8 under T2 treatment,with the Y(NO),(1-qP)/NPQ and ci were increased by 37.9%-75.6%,157.1%-325.8% and 3.4%-18.1% relative to CK. Under RLC and IC condition,the Yield of T3 was respectively decreased by 10.2%-13.6% and 21.4%-29.1%,and the Pn,Ls,qP,Pm,NPQ and Y(NPQ) were decreased by 28.1%-39.9%,5.2%-21.3%,15.8%-30.4%,27.6%-45.6%,3.3%-52.9% and 5.7%-17.9% in comparison,respectively. Obviously the enhanced O3 causes a significant decrease in the capacity of photosynthesis of winter wheat,and the influence mechanism presents a series of dynamic changes according to growing seasons. The reduction of Fv/Fm under T1 treatment is a response of PSⅡ reaction center to the increase of NPQ,and the decrease in Pn and Yield is a consequence of protective adjustment,by this approach,the antioxidant system and energy dissipation mechanism can thus prevent light damage to the PSⅡ reaction center of winter wheat. Under T3 treatment,the CO2 assimilation and QA re-oxidizing during actinic illumination are restricted,the energy dissipation mechanism was destroyed,and the reduction of photosynthesis was mainly due to damage in photosystem caused by O3 and excess light. The critical loads for O3 of PSⅡ reaction center is between 100 nL·L-1 and 150 nL·L-1 close to 100 nL·L-1. While the Fv/Fm value is not an effective index for assessing O3 influence on winter-wheat. Although the winter-wheat can have certain adapted ability to O3 stress,the growing enhancement of surface O3 is still a great threat to agricultural production in China.

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