检索规则说明:AND代表“并且”;OR代表“或者”;NOT代表“不包含”;(注意必须大写,运算符两边需空一格)
检 索 范 例 :范例一: (K=图书馆学 OR K=情报学) AND A=范并思 范例二:J=计算机应用与软件 AND (U=C++ OR U=Basic) NOT M=Visual
作 者:时朝[1] 胡艳霞[2] 秦向阳[1] 郑彩霞[3]
机构地区:[1]北京市农林科学院成果转化与推广处,北京100097 [2]北京草业与环境研究发展中心,北京100097 [3]北京林业大学生物科学与技术学院,北京100083
出 处:《中国农业科技导报》2017年第8期41-46,共6页Journal of Agricultural Science and Technology
基 金:北京市科技计划项目(D151100005915002)资助
摘 要:为探究桂花在越冬期间遭受寒害时的光合机理,运用叶绿素荧光动力学手段,监测桂花叶片在北京地区越冬过程中光系统Ⅱ(PSⅡ)行为特征的变化。结果表明:随着越冬过程的推进,初始荧光(F_0)、PSⅡ最大光化学效率(F_v/F_m)、PSⅡ有效量子产额(yield)和PSⅡ电子传递速率(ETR)均随温度下降出现同步降低,并表明越冬过程中桂花叶片的捕光天线系统遭受破坏,从而抑制了光合作用的原初反应,桂花叶片通过减小天线系统捕获的光能来降低对PSⅡ反应中心的激发压。另外,桂花叶片的光化学猝灭系数(q P)始终较高,说明PSⅡ反应中心能够在越冬期间保持较高的开放程度,进而减少激发能在PSⅡ供体侧积累对PSⅡ反应中心的伤害;而非光化学猝灭系数(NPQ)伴随温度下降而明显降低,由此可以推断,桂花主要通过天线系统以外的热耗散途径来抵御冬季低温胁迫。In order to explore the photosynthetic mechanism of Osmanthus fragrans suffering from cold damage during overwinter period,this study took fluorescence kinetics as means to monitor the changes in photosystem Ⅱ( PS Ⅱ)behavior characteristics of Osmanthus fragrans leaves in Beijing region during overwinter period. The results showed that the initial fluorescence( F0),the biggest photochemical efficiency of PSⅡ( Fv/Fm),effective quantum yield of PSⅡ( yield) and electron transport rate of PSⅡ( ETR) decreased with the temperature falling in winter,indicating the light harvesting antenna system of Osmanthus fragrans leaves was destroyed during the overwintering period,therefore inhibited the initial reaction of photosynthesis. The leaves could reduce the excitation voltage of PS Ⅱreaction center by decreasing energy captured by the antenna system. In addition,the photochemical quenching( q P)of Osmanthus fragrans leaves was consistently at a high level,indicating that PSⅡ reaction center could maintain a higher degree of openness in overwinter period,so as to reduce the damage of PS Ⅱ reaction center by excitation energy accumulation in donor side of PSⅡ. While,the non photochemical quenching( NPQ) remarkably decreased with the temperature falling. Thus,it could be inferred that Osmanthus fragrans could resist low temperature stress in winter mainly through the heat dissipation other than the antenna system.
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在载入数据...
正在链接到云南高校图书馆文献保障联盟下载...
云南高校图书馆联盟文献共享服务平台 版权所有©
您的IP:216.73.216.15