引用本文:
【打印本页】   【下载PDF全文】   查看/发表评论  下载PDF阅读器  关闭
←前一篇|后一篇→ 过刊浏览    高级检索
本文已被:浏览 513次   下载 401 本文二维码信息
码上扫一扫!
分享到: 微信 更多
3种山茶科植物苗期光合特性的研究
郭彩霞,朱铧楠,杨佳曼,武宇凡,谢子才,肖可菁,李铄,陈红跃
华南农业大学林学与风景园林学院
摘要:
以杜鹃红山茶Camellia azalea、山茶C. japonica和金花茶C. petelotii3种山茶科植物苗木为试验对象,测定其叶片光合特性参数和叶绿素荧光参数。结果表明:3种山茶科植物光合特性参数差异显著,其中光合速率强弱表现为山茶(4.574 μmol·m-2 s-1)>杜鹃红山茶(1.881 μmol·m-2 s-1)>金花茶(0.855 μmol·m-2 s-1),蒸腾速率强弱表现为山茶(1.774 mmol·m-2 s-1)>杜鹃红山茶(0.608 mmol·m-2 s-1)>金花茶(0.339 mmol·m-2 s-1),气孔导度强弱表现为山茶(0.060 mmol·m-2 s-1)>杜鹃红山茶(0.020 mmol·m-2 s-1)>金花茶(0.010 mmol·m-2 s-1),光能利用率强弱表现为山茶(0.005 μmol·mmol-1)>杜鹃红山茶(0.002 μmol·mmol-1)>金花茶(0.001 μmol·mmol-1)。3种山茶科植物叶绿素荧光参数差异显著,其中光下最大荧光产量强弱表现为杜鹃红山茶(1.825)>金花茶(1.611)>山茶(1.442),PS II实际光量子效率强弱表现为山茶(0.095)>金花茶(0.070)>杜鹃红山茶(0.067),表观电子传递速率强弱表现为山茶(7.551)>金花茶(5.697)>杜鹃红山茶(5.477)。总体上看,光合能力山茶>杜鹃红山茶>金花茶。
关键词:  山茶科  光合特性  叶绿素荧光
DOI:
分类号:
基金项目:广东省林业科技创新项目(2017KJCX010,2014KJCX015)
Study on the Photosynthetic Characteristics of Three Camellia Plants at Seedling Stage
Guo Caixia1, Zhu Huanan1, Yang Jiaman2, Wu Yufan2, Xie Zicai1, Xiao Kejing1, Li Shuo1, CHEN Hongyue2
1.College of Forestry and Landscape Architecture, South China Agricultural University;2.College of Forestry and Landscape Architecture,South China Agricultural University
Abstract:
Three species of Camellia seedlings, Camellia azalea, C. japonica and C. petelotii were used as test objects to determine the leaf photosynthetic characteristics and chlorophyll fluorescence parameters. The results showed that the photosynthetic parameters of the three species of Camellia plants were signifcantly different, among which the photosynthetic rate was as follows: C. japonica (4.574 μmol·m-2s-1) > C. azalea (1.881 μmol·m-2s-1) > C. petelotii (0.855 μmol·m-2s-1). The transpiration rate is as follows: C. japonica (1.774 mmol·m-2s-1) > C. azalea (0.608 mmol·m-2s-1) > C. petelotii (0.339 mmol·m-2s-1).The strength of the stomatal conductance is C. japonica (0.060 mmol·m-2s-1) > C. azalea (0.020 mmol·m-2s-1) > C. petelotii (0.010 mmol·m-2s-1). The light energy utilization rate performance is represented by C. japonica (0.005 μmol·mmol-1) > C. azalea (0.002μmol·mmol-1) > C. petelotii (0.001 μmol·mmol-1). The chlorophyll fluorescence parameters of the three species of Camellia plants have significant differences. Among them, the maximum fluorescence yield under light is as follows: C. azalea (1.825) > C. petelotii (1.611) > C. japonica (1.442), and the actual light quantum effciency of PS II is represented by C. japonica(0.095) > C. petelotii (0.070) > C. azalea (0.067), the apparent electron transfer rate is C. japonica (7.551) > C. petelotii (5.697) > C. azalea (5.477). In general, photosynthetic capacity C. japonica > C. azalea > C. petelotii
Key words:  Camellia  Photosynthetic characteristics  Chlorophyll ?uorescence parameters