After saturating light illumination for 3 h the potential photochemical efficiency of photosystem Ⅱ (PSII) (FJF,, the ratio of variable to maximal fluorescence) decreased markedly and recovered basically to the l...After saturating light illumination for 3 h the potential photochemical efficiency of photosystem Ⅱ (PSII) (FJF,, the ratio of variable to maximal fluorescence) decreased markedly and recovered basically to the level before saturating light illumination after dark recovery for 3 h in both soybean and wheat leaves, indicating that the decline in FJ/Fm is a reversible down-regulation. Also, the saturating light illumination led to significant decreases in the low temperature (77 K) chlorophyll fluorescence parameters F685 (chlorophyll a fluorescence peaked at 685 nm) and F685/F735 (F735, chlorophyll a fluorescence peaked at 735 nm) in soybean leaves but not in wheat leaves. Moreover, trypsin (a protease) treatment resulted in a remarkable decrease in the amounts of PsbS protein (a nuclear gene psbS-encoded 22 kDa protein) in the thylakoids from saturating light-illuminated (SI), but not in those from darkadapted (DT) and dark-recovered (DRT) soybean leaves. However, the treatment did not cause such a decrease in amounts of the PsbS protein in the thylakoids from saturating light-illuminated wheat leaves. These results support the conclusion that saturating light illumination induces a reversible dissociation of some light-harvesting complex Ⅱ (LHClI) from PSII reaction center complex in soybean leaf but not in wheat leaf.展开更多
The light harvesting chlorophyll a/b-binding protein is one of key proteins in the transformation from light energy to chemical energy. An open reading frame coding precursor protein of cab gene was cloned from the fi...The light harvesting chlorophyll a/b-binding protein is one of key proteins in the transformation from light energy to chemical energy. An open reading frame coding precursor protein of cab gene was cloned from the first strand of bamboo cDNA through RT-PCR methods,and named as cab-PhE1 (cab gene 1 from Phyllostachys edulis EF207229). The sequence analysis showed that the deduced polypeptide was highly homologous to some other CAB proteins from monocotyledon,and the gene belonged to lhcb2 family. Tissue specific expression showed that cab-PhE1 expressed higher in leaf than sheath and stem. The prokaryotic expression vector of cab-PhE1 gene encoding the mature protein was constructed by subcloning the fragment into pET-23 a and was expressed in Escherichia coli induced by IPTG. The molecular weight of the induced protein was about 28 ku,approximate to that of the mature protein. This work is a key to the further research on in vitro reconstitution of light-harvesting Chl a/b complexes.展开更多
研究了CO_2浓度倍增对大豆(Glycine max L.,C_3植物)、黄瓜(Cucumis sativus L.,C_3植物)、谷子(Setaria italica (L.) Beauv.,一种不很典型的C_4植物)和玉米(Zea mays L.,C_4植物)叶片的叶绿素蛋白质复合物的影响。实验植物盆栽于聚乙...研究了CO_2浓度倍增对大豆(Glycine max L.,C_3植物)、黄瓜(Cucumis sativus L.,C_3植物)、谷子(Setaria italica (L.) Beauv.,一种不很典型的C_4植物)和玉米(Zea mays L.,C_4植物)叶片的叶绿素蛋白质复合物的影响。实验植物盆栽于聚乙烯薄膜(或玻璃)的开顶式培养室中。播种后对照室的CO_2浓度立即保持在大气浓度(350±10)×10^(-6)中,CO_2浓度倍增处理室则保持在(700±10)×10^(-6)下。研究结果表明,对于大豆、黄瓜和谷子,CO_2浓度倍增均使其PSⅡ捕光叶绿素a/b-蛋白质复合物(LHCⅡ)的聚合体态的量增多,单体态的量减少。但C_4植物玉米对CO_2浓度倍增没有这样的反应。作者认为在大豆等植物中,LHCⅡ的上述状态变化可能是植物的光合机构对长期高CO_2浓度的一种适应效应,这样能提高光合作用中光能的吸收、传递和转换的效率,并支持高效的光合碳素同化作用。展开更多
文摘After saturating light illumination for 3 h the potential photochemical efficiency of photosystem Ⅱ (PSII) (FJF,, the ratio of variable to maximal fluorescence) decreased markedly and recovered basically to the level before saturating light illumination after dark recovery for 3 h in both soybean and wheat leaves, indicating that the decline in FJ/Fm is a reversible down-regulation. Also, the saturating light illumination led to significant decreases in the low temperature (77 K) chlorophyll fluorescence parameters F685 (chlorophyll a fluorescence peaked at 685 nm) and F685/F735 (F735, chlorophyll a fluorescence peaked at 735 nm) in soybean leaves but not in wheat leaves. Moreover, trypsin (a protease) treatment resulted in a remarkable decrease in the amounts of PsbS protein (a nuclear gene psbS-encoded 22 kDa protein) in the thylakoids from saturating light-illuminated (SI), but not in those from darkadapted (DT) and dark-recovered (DRT) soybean leaves. However, the treatment did not cause such a decrease in amounts of the PsbS protein in the thylakoids from saturating light-illuminated wheat leaves. These results support the conclusion that saturating light illumination induces a reversible dissociation of some light-harvesting complex Ⅱ (LHClI) from PSII reaction center complex in soybean leaf but not in wheat leaf.
文摘与野生型油菜相比 ,叶绿素缺乏油菜突变体 Cr35 2 9L HC 多肽组成并未发生改变 ,但其含量却都明显降低 .RNA印迹及点杂交结果都显示出 Cr35 2 9cab基因的转录增加 .这些结果表明 :该叶绿素缺乏突变体仅影响L HC 多肽的蛋白含量 ;并未影响其组成 ;突变体 L HC 蛋白量的减少并非 cab基因转录降低所致 .可见转录水平的调节仅对 L HC 在类囊体膜上的积累起有限作用 ;
文摘The light harvesting chlorophyll a/b-binding protein is one of key proteins in the transformation from light energy to chemical energy. An open reading frame coding precursor protein of cab gene was cloned from the first strand of bamboo cDNA through RT-PCR methods,and named as cab-PhE1 (cab gene 1 from Phyllostachys edulis EF207229). The sequence analysis showed that the deduced polypeptide was highly homologous to some other CAB proteins from monocotyledon,and the gene belonged to lhcb2 family. Tissue specific expression showed that cab-PhE1 expressed higher in leaf than sheath and stem. The prokaryotic expression vector of cab-PhE1 gene encoding the mature protein was constructed by subcloning the fragment into pET-23 a and was expressed in Escherichia coli induced by IPTG. The molecular weight of the induced protein was about 28 ku,approximate to that of the mature protein. This work is a key to the further research on in vitro reconstitution of light-harvesting Chl a/b complexes.
文摘研究了CO_2浓度倍增对大豆(Glycine max L.,C_3植物)、黄瓜(Cucumis sativus L.,C_3植物)、谷子(Setaria italica (L.) Beauv.,一种不很典型的C_4植物)和玉米(Zea mays L.,C_4植物)叶片的叶绿素蛋白质复合物的影响。实验植物盆栽于聚乙烯薄膜(或玻璃)的开顶式培养室中。播种后对照室的CO_2浓度立即保持在大气浓度(350±10)×10^(-6)中,CO_2浓度倍增处理室则保持在(700±10)×10^(-6)下。研究结果表明,对于大豆、黄瓜和谷子,CO_2浓度倍增均使其PSⅡ捕光叶绿素a/b-蛋白质复合物(LHCⅡ)的聚合体态的量增多,单体态的量减少。但C_4植物玉米对CO_2浓度倍增没有这样的反应。作者认为在大豆等植物中,LHCⅡ的上述状态变化可能是植物的光合机构对长期高CO_2浓度的一种适应效应,这样能提高光合作用中光能的吸收、传递和转换的效率,并支持高效的光合碳素同化作用。