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中国农学通报 ›› 2013, Vol. 29 ›› Issue (10): 58-64.doi: 10.11924/j.issn.1000-6850.2012-3840

• 林学 园艺 园林 • 上一篇    下一篇

香鳞毛蕨净光合速率的环境响应及模拟

梁彦涛 佟伟霜 常缨   

  • 收稿日期:2012-11-27 修回日期:2013-01-14 出版日期:2013-04-05 发布日期:2013-04-05
  • 基金资助:
    温光处理对香鳞毛蕨药用成分累积及其调控基因表达的影响

Environmental responses and simulation of net photosynthetic rate in :Dryopteris fragrans(L.)Schott

  • Received:2012-11-27 Revised:2013-01-14 Online:2013-04-05 Published:2013-04-05

摘要: 为了探明香鳞毛蕨[Dryopteris fragrans (L.) Schott]净光合速率对环境因子的响应及其函数关系,采用LCi便携式光合仪对野生香鳞毛蕨的瞬时净光合速率(Pn)对环境因子(光合有效辐射PAR、温度Ta、饱和水汽压差VPD和大气CO2浓度Cs)进行了测定,借助于叶子飘提出的直角双曲线光合作用修正模型和Ball-Berry提出的气孔导度修正模型,建立了耦合模型,探讨模型的准确性、精度及Pn对环境因子的生理响应。结果表明:该模型模拟精度较高,能够很好地模拟香鳞毛蕨主要生长季节的Pn变化规律;香鳞毛蕨Pn对环境因子的响应规律:(1)Pn随PAR的变化出现了陡增,之后又有所下降的现象,当PAR达到1200μmol/(m2?s)左右时,Pn达到最大,为6.5μmol/(m2?s);(2)香鳞毛蕨Pn对Ta的响应呈单峰形变化,最适温度为25℃左右;(3)Pn随Cs的增加而逐渐升高,Cs浓度为300~450μmol/mol时,Pn增加速度较快,随着Cs超过450μmol/mol,Pn上升的较慢;(4)当VPD值达到4.0kPa左右时,Pn达到最高。因此,可以利用此模型结合环境因子模拟Pn,为香鳞毛蕨生产实践提供理论依据。

关键词: 解剖结构, 解剖结构

Abstract: In order to ascertain the respond of net photosynthetic rate (Pn) of of the leaves of Dryopteris fragrans (L.) Schott to envioromental facters and their functions relation model,the Lci portable photosynthesis system was used to mensurate the Pn, photosynthetically active radiation (PAR), temperature (Ta), vapor pressure deficit (VPD) and CO2 concentration (Cs) of D. fragrans grow in the wild .With the help of the modified model of rectangular hyperbola described by Zi-Piao Ye and the modified stomatal conductance model of Ball-Berry,a couple model is developed and used for describing the response of net photosynthetic rate (Pn) to environmental factors, PAR, Ta, VPD and Cs.It is reified that the model is of high accuracy.The study shows that the net photosynthetic rate throughout the growing season of D. fragrans can be better simulated by the model. Finally, using this coupled model, we studied the reponse pattern of Pn to environmental factors: (1) the response of Pn of D. fragrans to PAR was single-apex curves, with the peak 6.5μmol/(m2?s) (Pn) appearing at 1200μmol/(m2?s) (PAR); (2) the changes of the Pn in response to Ta also followed a single peak curve, with an optimal temperature around 25℃; (3) Pn was showed increased with the increase of Cs, however, it displayed a slowly growth rate when Cs exceeded 450μmol/mol; (4) when VPD was about 4.0kPa, the Pn increased to the top. In conclusion, the presented coupled model describing the reponse of Pn of Dryopteris fragrans to environmental factors provided an effective method for research on the process of photosynthetic physiological ecology of D. fragrans, which is the foundation of further exploration on the best environmental conditions of D. fragrans.The result shows that model can be used to integrate with the environment factors and this can provide the theory basis for the proucton practice of D. fragrans.