首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 31 毫秒
1.
2.
3.
The psbA multigene family in Synechococcus sp. strain PCC 7942 encodes two forms of the D1 protein; Form I, the product of psbAI, differs from Form II, the product of psbAII and psbAIII, at 25 of 360 amino acid positions. D1 is essential for photosynthesis as a protein component of the photosystem II reaction center. Antisera were raised against purified hybrid proteins encoded by psbAI-lacZ and psbAIII-lacZ translational gene fusions that contain the unique amino termini of Form I and Form II, respectively. Form specificity of each antiserum was verified by Western analysis using thylakoid membranes from mutant strains containing only Form I or Form II. Western analysis of thylakoid membranes from wild-type cells cultured at different light intensities detected both forms of D1 in the membrane and showed changes in the ratio of the two forms. The D1 composition of the membrane matched predicted ratios of the forms based on differential gene expression: psbAI is expressed highest at low light, and both psbAII and psbAIII are expressed highest at high light. Along a gradient of light intensity from 5 microE. m-2.s-1 to 482 microE.m-2.s-1, the relative amount of Form I in thylakoid membranes decreased 58%, while the relative amount of Form II increased 60%. Maximum detection of Form I coupled with minimum detection of Form II in membranes from cells harvested at light intensities below 390 microE.m-2.s-1 suggests a central role for Form I in photosystem II. Increased incorporation of Form II into the thylakoid membrane occurred at light intensities reported by others to be photoinhibitory, suggesting that Form II serves a role in adaptation to high light.  相似文献   

4.
5.
6.
7.
8.
9.
10.
Several strains of Synechococcus PCC7942 carrying point mutations in the gene psbA were studied by thermoluminescence and polarographic measurement of flash-induced oxygen yield. The following results were obtained: (a) Replacement of Ser-264 in D1 by Ala (mutant Di1) or Gly (mutant G264) resulting in DCMU and atrazine resistance leads to a downshift of the thermoluminescence (TL) B-band peak temperature from 40 degrees C in wild-type thylakoids to about 30 degrees C. In dark adapted samples of both mutants the TL and oxygen yield pattern induced by a train of single turnover flashes were strongly damped indicative of a high miss factor. (b) In contrast to Ser-264 mutants, replacement of Phe-255 in D1 by Tyr (mutant Tyr5) induced strong resistance to atrazine but not to DCMU and did not affect the peak termperature of the B-band and the flash-induced TL and oxygen yield patterns. In this respect mutant Tyr5 resembles the wild type. (c) No significant differences have been found between strains with single site mutations in psbAI and normal psbAII/psbAIII genes, and strains with same mutations in psbAI but additional deletion of psbAII and psbAIII. Obviously in strains were psbAI is present, PS II complexes containing gene products of psbAII and psbAIII are not assembled in detectable amounts. (d) Strains with double mutations at positions 264 and 255 display a downshift of the B-band peak temperature. Their oscillatory patterns of B-band intensity and oxygen yield are highly damped. This behaviour is similar to strains D1 and G264 which are modified at position 264 only. We extend reports on additivity of mutation effects on herbicide binding to binding of QB. (e) Mutations at the QB site not only influence the binding of QB and herbicides but also change the thermoluminescence quantum yield and the lifetimes of the redox states S2 and S3 of the water oxidase. This finding might indicate long ranging effects on Photosystem II exerted by structural modifications of the QB site. From these data we conclude that Ser-264 is essential for binding of atrazine, DCMU and QB, whereas Phe-255 is involved in atrazine binding and its substitution by Tyr does not markedly affect QB or DCMU binding in Synechococcus PCC7942.  相似文献   

11.
12.
13.
工程聚球藻的psbA基因及其所用载体的启动子Ppsb A均受光质调控,利用该机制可通过光质调控提高聚球藻的光合效率及其外源基因表达率。以转vp28基因聚球藻7002为实验材料,通过优化光强、温度及pH,解除光限制因素并提高光能利用率。通过改变白光、红光及蓝光的比例,调控光质组成及单色光的光强,检测细胞生长、外源基因的表达及psb A基因的转录。研究结果表明:高比例蓝光下,vp28基因的表达率达到2.4%,是纯白光下的3倍,重组蛋白VP28的积累量提高至2倍。高比例红光抑制了psb AII、psb AIII基因及外源基因的表达,但促使生物量在3 d内突破1.5 g/L。本研究为蓝藻的生物制药和工程蓝藻代谢产物的产业化提供了理论基础。  相似文献   

14.
Synechococcus sp. PCC 7942 modulates photosynthetic function by transiently replacing the constitutive D1 photosystem II protein, D1:1, with an alternate form, D1:2, to help counteract photoinhibition under excess light. We show that a temperature drop from 37 to 25 degrees C also drives D1:1/D1:2 exchange under constant, moderate light. Chilling or light-induced D1 exchange results from rapid loss of psbAI message coding for D1:1 and accumulation of psbAII and psbAIII messages coding for D1:2. During chilling, a large pool of a novel form, D1:2*, transiently accumulates, distinguishable from normal D1 by an increase in apparent molecular mass. D1:2* is not phosphorylated and is probably a functionally inactive, incompletely processed precursor. After acclimation to 25 degrees C, D1:2* disappears and D1:1 again predominates, although substantial D1:2 remains. Partial inhibition of electron transport under constant, moderate light also triggers the D1 exchange process. These treatments all increase excitation pressure on photosystem II relative to electron transport. Therefore, information from photosynthetic electron transport regulates D1 exchange without any requirement for a change in light intensity or quality, possibly via a redox sensing mechanism proximal to photosystem II.  相似文献   

15.
16.
17.
18.
We generated random mutations in Synechococcus sp. strain PCC 7942 to look for genes of output pathways in the cyanobacterial circadian system. A derivative of transposon Tn5 was introduced into the chromosomes of reporter strains in which cyanobacterial promoters drive the Vibrio harveyi luxAB genes and produce an oscillation of bioluminescence as a function of circadian gene expression. Among low-amplitude mutants, one mutant, tnp6, had an insertion in a 780-bp open reading frame. The tnp6 mutation produced an altered circadian phasing phenotype in the expression rhythms of psbAI::luxAB, psbAII::luxAB, and kaiA::luxAB but had no or little effect on those of psbAIII::luxAB, purF::luxAB, kaiB::luxAB, rpoD2::luxAB, ndhD::luxAB, and conII::luxAB. This suggests that the interrupted gene in tnp6, named cpmA (circadian phase modifier), is part of a circadian output pathway that regulates the expression rhythms of psbAI, psbAII, and kaiA.  相似文献   

19.
In the cyanobacterium Thermosynechococcus elongatus BP-1, living in hot springs, the light environment directly regulates expression of genes that encode key components of the photosynthetic multi-subunit protein-pigment complex photosystem II (PSII). Light is not only essential as an energy source to power photosynthesis, but leads to formation of aggressive radicals which induce severe damage of protein subunits and organic cofactors. Photosynthetic organisms develop several protection mechanisms against this photo-damage, such as the differential expression of genes coding for the reaction center subunit D1 in PSlI. Testing the expression of the three different genes (psbAI, psbAII, psbAIII) coding for D1 in T. elongatus under culture conditions used for preparing the material used in crystallization of PSII showed that under these conditions only subunit PsbA1 is present. However, exposure to high-light intensity induced partial replacement of PsbA1 with PsbA3. Modeling of the variant amino acids of the three different D1 copies in the 3.0 A resolution crystal structure of PSII revealed that most of them are in the direct vicinity to redox-active cofactors of the electron transfer chain. Possible structural and mechanistic consequences for electron transfer are discussed.  相似文献   

20.
集胞藻6803的混合培养——光照强度和葡萄糖的影响   总被引:4,自引:0,他引:4  
利用摇瓶研究了混合营养条件下单细胞蓝藻集胞藻6803(Synechocystissp.PCC6803)的生长特性,以及葡萄糖和光照强度对集胞藻6803生长的影响。实验结果表明,在葡萄糖消耗完之前,集胞藻6803的混合营养型生长处于对数生长期,且葡萄糖浓度及光照强度都对集胞藻6803的混合营养型生长有显著影响:在初始葡萄糖浓度097~480g/L范围内,同一光照强度培养下藻细胞的比生长速率随葡萄糖浓度的增大而降低;而在光照强度15~55μE·m-2·s-1范围内,初始葡萄糖浓度相同条件下藻细胞的比生长速率及对葡萄糖的藻体得率都随光照强度的增强而增大,但当光照强度在55~96μE·m-2·s-1时,集胞藻6803混合培养的比生长速率基本不变,出现了光饱和现象。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号