王睿芳, 马剑, 黄艳丽, 潘耕耘, 陶忠, 李蒙, 陈国松, 赵万里. 2017: 不同光环境下小粒咖啡的生理生态特征. 南方农业学报, 48(9): 1629-1634. DOI: 10.3969/j.issn.2095-1191.2017.09.15
引用本文: 王睿芳, 马剑, 黄艳丽, 潘耕耘, 陶忠, 李蒙, 陈国松, 赵万里. 2017: 不同光环境下小粒咖啡的生理生态特征. 南方农业学报, 48(9): 1629-1634. DOI: 10.3969/j.issn.2095-1191.2017.09.15
WANG Rui-fang, MA Jian, HUANG Yan-li, PAN Geng-yun, TAO Zhong, LI Meng, CHEN Guo-song, ZHAO Wan-li. 2017: Physiological and ecological characteristics of Coffea arabica under different light environments. Journal of Southern Agriculture, 48(9): 1629-1634. DOI: 10.3969/j.issn.2095-1191.2017.09.15
Citation: WANG Rui-fang, MA Jian, HUANG Yan-li, PAN Geng-yun, TAO Zhong, LI Meng, CHEN Guo-song, ZHAO Wan-li. 2017: Physiological and ecological characteristics of Coffea arabica under different light environments. Journal of Southern Agriculture, 48(9): 1629-1634. DOI: 10.3969/j.issn.2095-1191.2017.09.15

不同光环境下小粒咖啡的生理生态特征

Physiological and ecological characteristics of Coffea arabica under different light environments

  • 摘要: 目的探究小粒咖啡对不同光照环境的生理生态适应机制,为小粒咖啡的高产和规范化栽培提供科学依据.方法对比100%、36%和4%光环境下小粒咖啡叶片的最大净光合速率(Pmax)、荧光参数、单位干重氮含量(N)、构建消耗(CC)、单位重量叶绿素(Chl)和类胡萝卜素(Car)含量及形态解剖结构特征,分析小粒咖啡对不同光环境的适应性.结果随着光照增强,小粒咖啡叶片的Pmax和非光化学猝灭系数(NPQ)增加,正午光化学效率(Fv/Fm)显著降低(P<0.05);100%光环境下小粒咖啡叶片的N和CC投入较多,Pmax较高,光合氮利用效率(PNUE)和能量利用效率(PEUE)较高;随着光照增强,Chl/Car、叶片厚度(LT)、组织结构紧密度(MTR)、气孔面积指数(SPI)和小脉密度(VD)增加,但比叶面积(SLA)和叶片组织结构疏松度(MLR)减小.结论小粒咖啡是需遮荫栽培的经济作物,对强光较敏感,可通过调整叶片生理生态特征以适应光照环境变化,减少强光对其光合器官的损伤.

     

    Abstract: Objective Physiological and ecological adaptation mechanism of Coffea arabica to different light environments was studied to provide reference for high yield and standardized cultivation of it.Method Maximum net photosynthetic rate(Pmax),fluorescence parameters,nitrogen content of unit dry weight(N),construction cost(CC),chlorophyll of unit weight (Chl),carotenoid content and anatomical structure characteristics of C.arabica leaf under 100%,36% and 4% light environment were compared,and adaptability of C.arabica to different light environments was analyzed.Result As light intensity enhanced,Pmax and non photochemical quenching coefficient (NPQ) increased,photochemical efficiency at midday(Fv/Fm) significantly decreased(P<0.05).The results showed,N and CC input were high in C.arabica leaf under 100% light environment,Pmax,photosynthetic nitrogen use efficiency (PNUE) and photosynthetic energy use efficiency (PEUE) was high.As light intensity increased,chlorophyll/carotenoid (Chl/Car),leaf thickness (LT),mesophyll structure tense ratio (MTR),stomatal pore area index (SPI) and vein density (VD) were on the rise,but specific leaf area (SLA) and mesophyll structure loosened ratio (MLR) decreased.Conclusion As a cash crop which requires shading cultivation,C.arabica is sensitive to strong light.It can adapt to the change of light environment by adjusting physiological and ecological characteristics to reduce the damage to its photosynthetic organs.

     

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