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海洋科学  2005 

藻类CCM分子生物学研究进展

, PP. 71-75

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[1]  何培民 张荣铣 等.小球藻Rubisco在叶绿体中的免疫金标定位[J].实验生物学报,:.
[2]  戴新宾 于勇.光系统Ⅱ碳酸酐酶与放氧外周多肽及锰分子簇的关系[J].科学通报,:.
[3]  李立人 余叔文 汤章城主编.核酮糖-1,5-二磷酸羧化酶/加氧酶的结构、功能及组装[A].余叔文,汤章城主编.植物生理与分子生物学[C].北京:科学出版社,1998.223-236.
[4]  Badger MR, Price GD. The role of carbonic anhydrase in photosynthesis[J]. Annu Rev Plant Physiol Plant Mol Biol, 1994, 45: 369-92.
[5]  Aizawa K,Miyachi S.Carbonic anhydrase and CO2 concentrating mechanisms in microalgae and cyanobacteria[J]. FEMS Microbiol Rev, 1986, 39: 215-223.
[6]  Graham L E, Wilcox L W. Algae [M]. USA: Prentice,2000: 27-36.
[7]  Bowes G. Facing the inevitable: plant and increasing atmospheric CO2[J]. Annu Rev Plant Physioi Plant Mol Biol, 1993, 14:309-32.
[8]  Moroney J V. Carbon concentrating mechanisms in aquatic photosynthetic organisms: a report on CCM 2001[J]. J Phycology, 2002, 37: 929-931.
[9]  Sultemeyer D F, Fock H P, Canvin D T. Mass spectrometric measurements ofintracellular carbonic anhydrase activity in high and low Ci cells of Chlamydomonas [J].Plant Physiol, 1990, 94:1250-1257.
[10]  Fukuzawa H, Fujiwara S, Yamamoto Y, et al. cDNA cloning, sequence, and expression of carbonic anhydrase in Chlamydomonas reinhardtii: regulation by environmental CO2 concentration[J]. Proc Natl Acad Sci USA, 1990, 87:4383-4387.
[11]  何培民 徐春和 等.莱茵藻胞外碳酸酐酶分子定位与活性诱导[J].植物学通报,:.
[12]  Kuchitsu K, Tsuzuki M, Miyachi S. Polypeptide composition and enzyme activities of the pyrenoid and its regulation by CO2 concetration in unicellular green algae[J]. Can J Bot ,1991, 69:1062-1069.
[13]  Karlsson J, Hiltonen T, Husic HD, et al. Intracellular carbonic anhydrase of Chlamydomnas reinhardtii[J].Plant Physiol, 1995, 109:533-539.
[14]  Van Renson J S, Xu C H. Govindjee Role of bicarbonate in photosystem Ⅱ, the water-plastoquinone oxidoreductase of plant photosynthesis[J]. Physiologia Plantarum, 1999, 105: 585-592.
[15]  何培民.[D].南京农业大学,2000.
[16]  Holdsworth RH. The isolation and partial characterization of the pyrenoid protein of Eremosphaera viridis[J].J Cell Biol, 1971, 51:499-513.
[17]  Su ss K H, Prokhorenko I, Adler K. In situ association of Calvin cycle enzymes, ribulose-1,5-bisphosphate carboxylase/oxygenase, ferredoxin-NADP reductase, and nitrite reductase with thylakoid and pyrenoid membranes of Chlamydomonas reinhardtii chloroplasts as revealed by immunoelectron microscopy[J]. Plant Physiol, 1995,107:1 387-1 397.
[18]  Morita E, Kuroiwa H, Huroiwa T, et al. High localization of Ribulose-1,5-bisphosphate carboxylase/oxygenase in the pyrenoids of Chlamydomanas reinhardtii(Chorophyta), as revealed by cryofixation and immunogold electron microscopy[J]. J Phycol, 1997,33: 68-72.
[19]  Villarejo A, Isabel O M, Martinez F. Regulation of the CO2-concentrating mechanism in Chlorella vulgaris UAM 101 by glucose[J]. Physiologia Plantarum, 1997,99: 293-301.
[20]  何培民 吴维宁 赵建华 陈根云 张大兵.几种藻类蛋白核的超微结构研究[J].水生生物学报,:.
[21]  He Peimin, Zhang Dabing, Chen Genyun, et al. Pyrenoid ultrastructure and immunogold localization of Rubisco and Rubisco activase in Chlamydomonas reinhardtii[J].Algae, 2003, 18(2): 121-127.
[22]  何培民 吴庆磊 吴维宁 陆巍 张大兵 陈根云 张荣铣.条浒苔蛋白核超微结构和Rubisco及其活化酶分子定位[J].水产学报,:.
[23]  Lin S, Carpenter E. J. Pyrenoid localization of Rubisco in relation to the cell cycle and growth phase of Dunaliella tertiolecta (Chlorophyceae) [J]. Phycologia,1997a, 36(1):24-31.
[24]  Lin S, Carpenter E. J. Rubisco ofDunaliella tertiolecta is redistributed between the pyrenoid and the stroma as a light/shade response[J]. Marine Biology, 1997b, 127:521-529.
[25]  Ramazanov Z, Hank C, Mason C, et al. The induction of the CO2-concentrating mechanism is correlated with the formation of the starch sheath around the pyrenoid of Chlamydomonas reinhardti [J]. Planta, 1994, 195:210-216.
[26]  Spalding M H, Winder T L, Anderson J C, et al. Changes in protein and gene expression during induction of the CO2-concentrating mechanism in wild-type and mutant Chlamydomonas[J]. Can J Bot, 1991,69:1 008-1 016.
[27]  Satoh A, Shiraiwa V. Two polypeptides inducible by low levels of CO2 in soluble protein fractions from Chlorella regularis grown at low or high pH[J]. Plant Cell Physiol., 1996, 37:431-437.
[28]  Thielmann J, Tolbert N E, Goyal A, et al. Two systems for CO2 concentrating and bicarbonate during photosynthesis by Scenedesmus[J]. Plant Physiol, 1990, 92: 622-629.
[29]  Badger M R, Price G D. The CO2 concentrating mechanism in cyanobacteria and green algae[J]. Physiol Plant,1992, 84: 606-615.
[30]  Tachiki A, Fukuzawa H, Miyachi S. Characterization of carbonic anhydrase isozyme CA2, which is the CAH2 gene product, in Chlamydomonas reinhardtii[J]. Biosci Biotechnol Biochem, 1992, 56: 794-798.
[31]  Roberts S B, Lave T W, Morel F M M. Carbonic anhydrase in the marine diatom Thalassiosira weissflogi(Bacillario phyceae) [J]. J Phycol, 1997, 33:845-850.
[32]  Funke R P, Kovar J L, Weeks D P. Intracellar carbonic anhydrase in essential to photo-synthesis in Chlamydomonas reinhardtii at atmospheric levels of CO2[J].Plant Physio, 1997, 114: 237-244.
[33]  Karlsson J, Clarke A K, Chen Z Y, et al. A novel a-type carbonic anhydrase associated with the thylakoid membrane in Ch lamydomonas reinhardtii is required for growth at ambient CO2[J].The EMBO J. 1998, 17(5):1 208-1 216.
[34]  Park Y I, Karlsson J, Rojdestvenski I, et al. Role of a novel photosystem Ⅱ-associated carbonic anhydrase in photosynthetic carbon assimilation in Chlamydomonas reinhardtii[J]. FEBS letters, 1999, 444:102-105.
[35]  Jinushi K, Okabe K, Ishi R. Improvement of tobacco photosynthetic potential by the genetic introgretion of carbonic anhydrase activity in the mesophyll cytoplasmic space[J]. Proceeding of Asia-Pacific Plant Physol Conference, 1997: 72.

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