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郁飞

作品数:10 被引量:43H指数:3
供职机构:中国科学院植物研究所更多>>
发文基金:国家重点基础研究发展计划中国科学院知识创新工程国家自然科学基金更多>>
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不同植物叶绿体中电子转移和能量传递超快过程被引量:1
2001年
采用相同的分离技术,从三七、水葫芦和菠菜植物叶子中提取叶绿体.利用吸收光谱和低温荧光光谱及皮秒荧光单光子计数技术对这3种叶绿体的光谱性质和光系统Ⅱ荧光寿命进行了研究.这3种叶绿体吸收光谱相似,暗示着不同的植物都能高效吸收不同波长的光子.采用三指数动力学模型对测定的光系统Ⅱ荧光衰减曲线拟合,水葫芦植物叶绿体光系统Ⅱ荧光衰减寿命分别是: 138, 521和 1494 ps;菠菜体系叶绿体荧光寿命分别是: 197, 465和 1459 ps ;三七叶绿体体系荧光寿命分别是: 30, 274和 805 Ps ;并且归属了荧光组分,慢速度荧光衰减由叶绿素堆积造成,中等速度荧光衰减源于PSⅡ反应中心重新结合电荷组分,快速度荧光衰减归属于 PS Ⅱ反应中心组分.定义并且基于 20 ps模型计算了三七、水葫芦和菠菜叶绿体光系统Ⅱ反应中心激发能转能效率,分别是60%,87%和91%.实验结果支持20 ps时间常数模型.三七叶绿体光系统Ⅱ反应中心低转能效率,2个光系统之间激发能分配平衡状态差的结果,以及它的光系统Ⅰ激发能红移的现象都与该植物生长速度慢的现象相吻合,显示植物生长速度特性可体现在光合作用原初过程中。
徐四川孙照勇艾希成冯娟张启元张兴康郁飞唐崇钦李良璧匡廷云
关键词:水葫芦叶绿体荧光寿命菠菜
Purification and Spectral Characteristics of Cytochrome b-559 from Oxygen-evolving Photosystem Ⅱ Core Complexes of Spinach and Rice
2000年
Cytochrome b_559 in photosystem Ⅱ reaction center was purified from spinach ( Spinacia oleracea L.) and rice ( Oryza sativa L.) by a rapid and simple procedure. Their low temperature fluorescence emission and excitation spectra, ultraviolet fluorescence spectra and absolute absorption spectra were presented. The author's purification methods, which enhanced the yield of pure protein and shorted the time for isolation, have several advantages: 1. use of oxygen_evolving PSⅡ core complexes as the starting material in order to avoid disturbing from other cytochromes; 2. isocratic elution of cytochrome b_559 from a DEAE_Sephacel column for eliminating the impurity and yielding the protein in pure state; 3. a simple column procedure for removal of excess Triton X_100. Purified cytochromes b_559 from these species have similar optical spectra and mobility during gel electrophoresis under native conditions. From the results of novel electrophoresis (Tricine_SDS_PAGE), cytochrome b_559 from both spinach and rice reveal two polypeptide bands (apparent molecular weight 9 kD and 4 kD, respectively). By measuring of 77 K fluorescence spectra, it was shown that for the purified cytochrome b_559 there were two excitation peaks at 439 nm and 413 nm, and two emission peaks at 563 nm and 668 nm. This is the first indication that Cyt b_559 is able to emit fluorescence and also transfer excited electrons to chlorophyll. By the use of ultraviolet fluorescence spectra, it was demonstrated for the first time that the location of Trp residue could be in the hydrophobic transmembrane region of cytochrome b_559.
辛越勇郁飞唐崇钦李良璧匡廷云
Ultrafast Spectral Studies of the Primary Processes of Photosynthesis in Spinach and Water Hyacinth Leaves被引量:1
2000年
The authors have studied the spectroscopic characteristics and the fluorescence lifetime for the chloroplasts from spinach (Spinacia oleracea L.) and water hyacinth (Eichhornia crassipes (Mart) Solms.) plant leaves by absorption spectra, low temperature steady_state fluorescence spectroscopy and single photon counting measurement under the same conditions. The absorption spectra at room temperature for the spinach and water hyacinth chloroplasts are similar, which show that different plants can efficiently absorb light of same wavelength. The low temperature steady_state fluorescence spectroscopy for the water hyacinth chloroplast reveals a poor balance of photon quantum between two photosystems. The fluorescence decays in PSⅡ measured at the natural Q A state for the chloroplasts have been fitted by a three_exponential kinetic model. The slow lifetime fluorescence component is assigned to a collection of associated light harvesting Chl a/b proteins, the fast lifetime component to the reaction center of PSⅡ and the middle lifetime component to the delay fluorescence of recombination of P + 680 and Pheo -. The excited energy conversion efficiency (η) in PSⅡ RC is 87% and 91% respectively for the water hyacinth and spinach chloroplasts calculated on the 20 ps model. This interesting result is not consistent with what is assumed that the efficiency is 100% in PSⅡ RC. The results in this paper also present a support for the 20 ps electron transfer time constant in PSⅡ RC. On the viewpoint of excitation energy conversion efficiency, the growing rate for the water hyacinth plan is smaller than that for the spinach plant. But, authors' results show those plants can perform highly efficient transfer of photo_excitation energy from the light_harvesting pigment system to the reaction center (approximately 100%).
徐四川孙照勇艾希成冯娟张启元张兴康郁飞唐崇钦匡廷云
关键词:SPINACHCHLOROPLAST
小麦光系统I的分离纯化及其光合特性的研究
从不同基因型的小麦京411和小偃54中分离纯化了PSI颗粒并研究了PSI颗粒的一些光 合特性.
郁飞
关键词:小麦光谱分析光破坏
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不同品种小麦PSⅠ颗粒光抑制过程的光谱学比较研究被引量:4
2001年
用不同品种小麦 (TriticumaestivumL .)“京 411”和“小偃 5 4”中分离纯化的PSⅠ颗粒为材料 ,研究了小麦PSⅠ光破坏过程的光谱特性 ,并比较了两者的异同。结果表明 ,强光导致PSⅠ中色素的破坏 ,特别是 6 83nm状态的Chla分子对强光敏感。光照过程中 ,荧光光谱的变化表明 ,光破坏还导致了PSⅠ中能量传递过程的破坏。“小偃 5 4”PSⅠ颗粒在光照初期 ,长波长状态的Chla分子的吸收度值略有下降后 ,可保持较长时间的稳定水平 ,在 40min后才开始明显下降 ,同时 ,在强光照射的初期荧光发射增强 ;而“京 411”PSⅠ颗粒在光抑制过程中没有这些变化。推测“小偃 5 4”PSⅠ可能通过将能量较多地分配给长波长状态的叶绿素分子和保持相对较少的天线色素分子 ,以避免过多的能量向P70 0反应中心传递 ,而起到保护作用。
郁飞唐崇钦辛越勇彭德川李良璧匡廷云李振声
关键词:小麦光系统I光抑制吸收光谱荧光光谱
光系统Ⅰ(PSⅠ)的结构与功能研究进展被引量:32
2001年
光系统Ⅰ (PSⅠ )是整合于光合膜上的由多个蛋白亚基组成的色素蛋白复合物 ,它在光合电子传递链中催化电子从PC经过一系列电子传递体到Fd的传递。近 2 0年特别是近几年来 ,有关光合作用PSⅠ结构与功能的研究取得了显著的进展 ,获得了很多具有重要意义的结果。本文综合介绍了近年来在PSⅠ的蛋白亚基组成及其特性、PSⅠ介导的 3种电子传递过程、PSⅠ特有的外周捕光色素蛋白复合物系统 (LHCⅠ )以及最新的有关PSⅠ 4 分辨率的三维晶体结构生物学研究的进展情况 ,并对未来的研究进行了展望。
郁飞唐崇钦辛越勇彭德川许亦农李良璧匡廷云
关键词:蛋白组成电子传递外周天线三维晶体结构
小麦光系统Ⅰ复合物膜脂组成初步研究
在高等植物和绿藻叶绿体中,特定的膜脂形成了光合膜蛋白发挥功能所必须的类囊体膜双层膜结构,并且参与膜蛋白结构与功能的调节。目前,膜脂的研究大多集中在类囊体膜和光系统Ⅱ(PSII)方面。对PSI的膜脂研究不多且数据差异很大。...
董凤琴郁飞辛越勇唐崇钦彭德川许亦农李良璧李振声
关键词:类囊体膜PSI叶绿体
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光破坏对光系统Ⅱ反应中心色素和蛋白相互作用的影响
<正> PSⅡ反应中心是位于叶绿体类囊体膜上的色素蛋白膜脂三元复合物.现已查明,光抑制光破坏的原发部位在PSⅡ,结果表现为PSⅡ反应中心的色素、蛋白及膜脂三者之间的天然有机联系被破坏,最终导致结构和功能的丧失.我们采用两...
辛越勇郁飞唐崇钦许亦农李良壁匡廷云
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水葫芦、三七和菠菜光系统Ⅱ颗粒的分离及超快光谱的研究被引量:3
2001年
分离了三七、水葫芦和菠菜植物光系统Ⅱ富集的颗粒,并且采用吸收光谱和低温荧光光谱及皮秒荧光单光子计数技术进行了研究.结果显示,它们的吸收光谱图具有相似性.采用三指数动力学模型对这三种光系统Ⅱ颗粒实验测定的光系统Ⅱ荧光衰减曲线拟合.水葫芦植物PSⅡ颗粒光系统三个组分荧光寿命分别是:157ps,415ps和1661 ps;菠菜体系的相应荧光寿命分别是:198ps,677ps和1244 ps;三七体系的相应荧光寿命分别是:14ps,272ps和1840ps.慢速度荧光衰减由叶绿素堆积造成的,中等速度荧光衰减源于PSⅡ反应中心重新结合电荷组分,快速度荧光衰减归属于PSⅡ反应中心组分.基于20ps模型计算出三七植物PSⅡ颗粒的光系统Ⅱ反应中心转能效率为41%,水葫芦为89%,菠菜为91%,数值结果表明三七植物生长慢的特性可以表现在光合作用原初过程中,大量的被植物吸收的光子产生的激发态能量以荧光发射和非辐射形式消耗了,而没有被有效地利用.进一步验证了我们提出的观点:植物生长速度与它们的荧光性质和荧光寿命有相关性,生长慢的植物对激发态能利用效率则较低.
徐四川艾希成孙照勇冯娟张启元张兴康郁飞唐崇钦李良璧匡廷云
关键词:水葫芦菠菜植物光合作用荧光光谱
The Influence of Surfactants on Chlorophyll Binding Status and Excitation Energy Transfer in Photosystem Ⅰ of Wheat被引量:3
2001年
Surfactants are widely used in the purification and research of structure and function of the protein complexes in photosynthetic membrane. To elucidate the mechanism of interaction between surfactants and photosystem Ⅰ (PSⅠ), effects of two typical surfactants, Triton X_100 and sodium dodecyl sulfate (SDS) on PSⅠ, were studied at different concentrations. The results were: SDS led to the reduction of apparent absorption intensity and blue shift of absorption peaks; while Triton X_100 led to the decrease of apparent absorption intensity in red region and blue shift of the peak, but to the increase of apparent absorption intensity in blue region. The fourth derivative spectra show that the longwavelength (669 nm and 683 nm) absorbing chlorophyll a was affected greatly and their relative changes of absorbance were axially symmetrical. The presence of surfactant could make the long wavelength fluorescence emission decrease greatly and a new fluorescence peak appeared around 680 nm, it was obvious that the surfactant interceded the transfer of excitation energy from antenna pigments to reaction center. The surfactants might affect the microenvironment of proteins, even the structure of PSⅠ protein subunits and hence changed the binding status of pigments with protein subunits, or the pigments might be released from the subunits. All of these might affect the absorption and the transfer of excitation energy.
郁飞唐崇钦辛越勇彭德川李良璧匡廷云李济云李振声
关键词:SURFACTANTCHLOROPHYLL
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