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园艺学报 ›› 2001, Vol. 28 ›› Issue (6): 517-521.

• 研究论文 • 上一篇    下一篇

高温胁迫对甜椒光合作用和叶绿素荧光的影响

吴韩英1;寿森炎1;朱祝军1;杨信廷2   

  1. (1 浙江大学园艺系, 杭州310029 ; 2 北京市农林科学院农业信息技术研究中心, 北京100089)
  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2001-12-25 发布日期:2001-12-25

Effects of High Temperature Stress on Photosynthesis and ChlorophyllFluorescence in Sweet Pepper ( Capsicum f ructescens L. )

Wu Hanying1 , Shou Shenyan1 , Zhu Zhujun1 , and Yang Xinting2   

  1. (1 Department of Horticulture , Zhejiang University , Hangzhou 310029; 2Agriculture Information Technology Research Center , Beijing academy of agriculture science , Beijing 100089)
  • Received:1900-01-01 Revised:1900-01-01 Online:2001-12-25 Published:2001-12-25

摘要: 研究了35、40、45 和50 ℃高温处理0~60min 对甜椒净光合速率(Pn) 、细胞间隙CO2 浓度(Ci) 、气孔导度(Gs) 、蒸腾速率(Tr) 以及叶绿素荧光参数的影响。结果表明,35 和40 ℃处理下, Pn 随Ci 的下降而下降, 而45 和50 ℃处理下, Pn 明显下降, 但Ci 在45 ℃下变化不大, 50 ℃下增加, Gs 的变化与Tr 呈显著正相关。表明在严重的高温胁迫下光合抑制主要是由于非气孔限制引起, 而在胁迫较轻时, 可能主要是通过气孔限制。蒸腾作用对气孔导度的敏感性高于光合作用。叶绿素荧光参数Fv/ Fm、Fm、Fo 在35 和40 ℃处理下变化不大,而45 和50 ℃处理下Fv/ Fm、Fm明显下降, 但Fo 上升, 处理结束后置于25 ℃下24 h 后都能得到恢复, 表明短期高温下光系统II 的可逆性失活是光抑制的主要原因。

关键词: 甜椒, 高温胁迫, 光合作用, 叶绿素荧光

Abstract: Effects of four temperatures (35 , 40 , 45 and 50 ℃) on photosynthetic rate (Pn) , concentration of internal leaf CO2 (Ci) , stomatal conductance ( Gs) , transpiration rate ( Tr) and chlorophyll fluorescence in sweet pepper were studied. The results showed that when plants were treated with 35 and 40 ℃, Pn decreased with the decreasing of Ci . When plants were treated with 45 and 50 ℃, Pn decreased considerably , Ci changed slightly at 45 ℃and increased at 50 ℃. Changes of Gs were positively correlated with Tr. It could be concluded that inhibition of photosynthesis at extreme high temperature stress resulted from nonstomatal limitations , but stomatal limitations lead to inhibition of photosynthesis when plants were under mild high temperature stress. The change of transpiration was more sensitive to stomatal conductance than photosynthesis. Fluorescence parameters such as Fv/ Fm ,
Fo and Fm were hardly changed under 35 and 40 ℃, but Fv/ Fm and Fm were reduced , Fo was increased at 45 and 50 ℃. After recovery at 25 ℃for 24 hours , Fo , Fm and Fv/ Fmwere almost entirely restored. The results suggested that reversible inactivation of PSII is the main factor leading to photosynthetic inhibition under short terms of high temperature stress.

Key words: Pepper, High temperature stress, Photosynthesis, Chlorophyll fluorescence

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