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园艺学报 ›› 2011, Vol. 38 ›› Issue (10): 1939-1946.

• 观赏植物 • 上一篇    下一篇

不同光强与温度处理对‘肉芙蓉’牡丹叶片PSⅡ光化学活性的影响

陈大印,刘春英,袁 野,郑国生*   

  1. (青岛农业大学生命科学学院,山东青岛 266109)
  • 收稿日期:2011-05-18 修回日期:2011-09-29 出版日期:2011-10-25 发布日期:2011-10-25
  • 通讯作者: 郑国生

Effects of Temperature and Light Treatments on PSⅡ Photochemical Activity in‘Roufurong’Tree Peony Leaves

CHEN Da-yin,LIU Chun-ying,YUAN Ye,and ZHENG Guo-sheng*   

  1. (Department of Life Science,Qingdao Agricultural University,Qingdao,Shandong 266109,China)
  • Received:2011-05-18 Revised:2011-09-29 Online:2011-10-25 Published:2011-10-25

摘要: 以‘肉芙蓉’牡丹(Paeonia suffruticosa Andr.‘Roufurong’)叶片为材料,研究了100、700和1 400 μmol · m-2 · s-1光强下不同温度(15、20、25、30、35和40 ℃)处理对叶片光合特性和叶绿素荧光参数的影响。结果表明:随光强增加,叶片最大光化学效率(Fv/Fm)、光系统Ⅱ实际光化学效率(ΦPSⅡ)、光下开放的PSⅡ反应中心激发能捕获效率(Fv′/Fm′)和光化学猝灭系数(qP)均显著下降,其中强光1 400 μmol · m-2 · s-1下最低。与室温(25 ℃)处理的叶片相比,低温(15 ℃)和高温(40 ℃)处理叶片Fv/Fm、ΦPSⅡ、Fv′/Fm′、qP急剧下降。同时,随光强增加,PSⅠ激发能分配系数α显著性降低,PSⅡ激发能分配系数β却显著升高,激发能分配严重偏离平衡。强光高温胁迫下,虽然叶片热耗散(NPQ)能力迅速增加,但是由于光化学效率的下降,光化学反应对激发能的利用大幅度下降,同时,由于两光系统激发能分配严重偏离平衡状态,过多的激发能分配给PSⅡ,导致PSⅡ激发压(1–qP)增大,加剧了PSⅡ伤害程度。

关键词: 牡丹, 光合作用, 光抑制, 叶绿素荧光, 光温处理

Abstract: In order to explore how temperature and light directly affect photosynthesis,the chlorophyll fluorescence was investigated in tree peony(Paeonia suffruticosa‘Roufurong’)leaves treated with different temperatures(15,20,25,30,35 and 40 ℃)coupled with different light intensities(100,700 and 1 400 μmol · m-2 · s-1). The results indicated that with the increase of light intensity,the maximal photochemical efficiency(Fv/Fm),the actual quantum yield of photosystem Ⅱ(ΦPSⅡ),the efficiency of excitation capture of open PSⅡ center(Fv′/Fm′)and the photochemical quenching(qP)reduced significantly and those under 1 400 μmol · m-2 · s-1 treatment exhibited the lowest. Compared with 25 ℃,the chilling treatment(15 ℃)and the heat treatment(40 ℃)caused dramatic decrease in Fv/Fm,ΦPSⅡ,Fv′/Fm′ and qP. Meanwhile,with the increase of light intensity,the allocation of excited energy to PSⅠ    declined significantly,and the allocation to PSⅡ increased significantly,which caused a serious imbalance of excited energy distribution. According to the results,high temperature and strong light stress led to a tremendous increase in the non-photochemical quenching(NPQ),however,more of the excessive radiative energy absorbance was not completely dissipated. Besides this,serious imbalance of excited energy distribution was observed under high irradiance and more excitation energy was allocated to PSⅡ,which led to an increase of excitation pressure of PSⅡ(1–qP)and accelerated the damage of PSⅡ.

Key words: tree peony, photosynthesis, photoinhibition, chlorophyll fluorescence parameter, light and temperature treatment

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