光谱学与光谱分析
光譜學與光譜分析
광보학여광보분석
SPECTROSCOPY AND SPECTRAL ANALYSIS
2014年
2期
312-315
,共4页
卢礼萍%魏良淑%骆晓森%倪晓武%陆建
盧禮萍%魏良淑%駱曉森%倪曉武%陸建
로례평%위량숙%락효삼%예효무%륙건
捕光色素%红移%耦合%偏振度
捕光色素%紅移%耦閤%偏振度
포광색소%홍이%우합%편진도
Light harvesting pigment%Redshift%Coupling%Polarization degree
利用类囊体溶液的激发光谱和偏振荧光光谱,研究了温度对光系统Ⅱ(photosystemⅡ,PSⅡ)中色素分子取向的影响。激发光谱表明在15~45℃范围内,随着温度的升高,叶绿素a对应的吸收峰发生红移,激发谱强度在35℃达到最大,65和75℃时大大减弱。类囊体溶液的偏振荧光光谱中,荧光峰位在15~45℃范围内始终保持不变,计算得到的荧光偏振度随着温度的升高而增加。分析表明温度通过影响光系统Ⅱ内色素之间以及色素蛋白之间的相互作用,改变色素排列方向,调节光合作用效率。结果可为研究光合过程能量吸收与传递、光合保护以及太阳能电池材料等方面提供参考。
利用類囊體溶液的激髮光譜和偏振熒光光譜,研究瞭溫度對光繫統Ⅱ(photosystemⅡ,PSⅡ)中色素分子取嚮的影響。激髮光譜錶明在15~45℃範圍內,隨著溫度的升高,葉綠素a對應的吸收峰髮生紅移,激髮譜彊度在35℃達到最大,65和75℃時大大減弱。類囊體溶液的偏振熒光光譜中,熒光峰位在15~45℃範圍內始終保持不變,計算得到的熒光偏振度隨著溫度的升高而增加。分析錶明溫度通過影響光繫統Ⅱ內色素之間以及色素蛋白之間的相互作用,改變色素排列方嚮,調節光閤作用效率。結果可為研究光閤過程能量吸收與傳遞、光閤保護以及太暘能電池材料等方麵提供參攷。
이용류낭체용액적격발광보화편진형광광보,연구료온도대광계통Ⅱ(photosystemⅡ,PSⅡ)중색소분자취향적영향。격발광보표명재15~45℃범위내,수착온도적승고,협록소a대응적흡수봉발생홍이,격발보강도재35℃체도최대,65화75℃시대대감약。류낭체용액적편진형광광보중,형광봉위재15~45℃범위내시종보지불변,계산득도적형광편진도수착온도적승고이증가。분석표명온도통과영향광계통Ⅱ내색소지간이급색소단백지간적상호작용,개변색소배렬방향,조절광합작용효솔。결과가위연구광합과정능량흡수여전체、광합보호이급태양능전지재료등방면제공삼고。
The effect of temperature on the orientation of pigment in PS Ⅱwas studied by the fluorescence excitation spectra and polarization fluorescence spectra of spinach thylakoid solution .The experimental results showed that in the temperature range of 15~45 ℃ the absorption band of chl a at 436 nm at room temperature red-shifted with increasing temperature .The excitation spectra intensity reached the maximum at the temperature of 35 ℃ ,but greatly reduced with temperature at 65 and 78 ℃ .In the polarization fluorescence spectra the fluorescence peak of PS Ⅱ didn’t change with temperature from 15 to 45 ℃ .It was also found that the calculated fluorescence polarization degree increased with the temperature in the entire temperature range .The a-nalysis indicated that temperature would affect the orientation of the pigments in PSII and the coupling strength between pig-ments so to change photosynthetic efficiency .The results will give a certain reference for the study of the energy absorption and transmission ,regulation mechanism and also on solar cell materials .