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园艺学报 ›› 2003, Vol. 30 ›› Issue (1): 65-68.

• 研究论文 • 上一篇    下一篇

温室条件下不同品种山茶的光合特性

刘东焕1;赵世伟2*;张佐双2;刘玉军1   

  1. (1 北京林业大学生物科学与技术学院, 北京100083 ;2 北京市植物园, 北京100093)
  • 收稿日期:2002-03-28 修回日期:2002-06-24 出版日期:2003-02-25 发布日期:2003-02-25

Photosynthesis of Different Cultivars of Camellia japonica L. in Greenhouse

Liu Donghuan1;Zhao Shiwei2;Zhang Zuoshuang2;Liu Yujun1   

  1. (1 Biological Science and Technological College of Beijing Forestry University , Beijing 100083 , China ; 2 Beijing Botanical Garden,Beijing 100093 , China)
  • Received:2002-03-28 Revised:2002-06-24 Online:2003-02-25 Published:2003-02-25

摘要: 研究了温室内不同品种山茶(Camellia japonica L.) 的光合特性。结果表明不同品种山茶的光
合特性相似: 光补偿点在6. 7~8. 4μmol·m-2·s -1 之间; 光饱和光强300μmol·m-2·s-1左右; 最大光饱和光合速率4. 1~4. 8μmol·m-2·s -1 ; 表观量子效率0. 055~0. 075 ; 羧化效率0. 03~0. 04 ; 光合作用的适宜温度在15~25 ℃。据此推测山茶不喜强光, 也不耐高温, 认为山茶正常生长所需要的光照强度应控制在300μmol·m-2·s -1 左右, 温度应控制在15~25 ℃之间。

关键词: 山茶, 光合特性, 光强, 温度, 温室

Abstract: Photosynthetic characteristics , including chlorophyll content , soluble protein content and carboxylation efficiency , in different cultivars of Camellia japonica , and the influences of light intensity and temperature on photosynthesis of the cultivars were studied. The results showed that photosynthesis in different
cultivars of Camellia japonica were similar : Light compensation point is between 6. 7 - 8. 4μmol·m-2·s -1 , light saturation point is arroud 300μmol·m-2·s -1, maximal light saturation photosynthetic rate is between 4. 1-4. 8μmol·m-2·s-1 , apparent quantity yield is between 0. 055 - 0. 075 CO2/ photon, Carboxylation efficiency is between 0. 03 - 0. 04 μmol·m-2·s -1 , proper temperature was between 15 - 25 ℃. Therefore , they were susceptible to higher light intensity and temperature. For that , during the cultivation and attendance to Camellia japonica L , both light intensity and temperature should be proper to meet with the needs of growth and development of different cultivars of Camellia japonica.

Key words: Camellia japonica L., Photosynthesis, Light intensity, Temperature, Greenhouse

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