List of publications@@@ Naoki Sato

 

Original papers

 

@1. N. Sato and N. Murata (1978)

Preparation of chlorophyll a, chlorophyll b and bacteriochlorophyll a by means of column chromatography with diethylaminoethylcellulose.

Biochim. Biophys. Acta 501: 103-111.

 

@2. N. Murata and N. Sato (1978)

Studies on the absorption spectra of chlorophyll a in aqueous dispersions of lipids from the photosynthetic membranes.

Plant Cell Physiol. 19: 401-410.

 

@3. N. Sato, N. Murata, Y. Miura and N. Ueta (1979)

Effect of growth temperature on lipid and fatty acid compositions in the blue-green algae, Anabaena variabilis and Anacystis nidulans.

Biochim. Biophys. Acta 572: 19-28.

 

@4. D. Fork, N. Murata and N. Sato (1979)

Effect of growth temperature on the lipid and fatty acid composition, and the dependence on temperature of light-induced redox reactions of cytochrome f and of light energy redistribution in the thermophilic blue-green alga, Synechococcus lividus.

Plant Physiol. 63: 524-530.

 

@5. N. Murata, T. Ono and N. Sato (1979)

Lipid phase of membrane and chilling injury in the blue-green alga, Anacystis nidulans.

In Low Temperature Stress in Crop Plants. Edited by J. M. Lyons, D. Graham and J. K. Raison. pp. 337-345. Academic Press, New York.

 

@6. N. Sato and N. Murata (1980)

Temperature shift-induced responses in lipids in the blue-green alga, Anabaena variabilis. The central role of diacylmonogalactosylglycerol in thermo-adaptation.

Biochim. Biophys. Acta 619: 353-366.

 

@7. N. Sato and N. Murata (1980)

Desaturation of fatty acids in lipids in response to the growth temperature in the blue-green alga, Anabaena variabilis.

In Biogenesis and Function of Plant Lipids. Edited by P. Mazliak, P. Benveniste, C. Costes and R. Douce. pp. 207-210. Elsevier/North-Holland Biomedical Press,

Amsterdam.

 

@8. N. Murata, N. Sato, T. Omata and T. Kuwabara (1981)

Separation and characterization of thylakoid and cell envelope of the blue-green alga (cyanobacterium) Anacystis nidulans.

Plant Cell Physiol. 22: 855-866.

 

@9. N. Sato and N. Murata (1981)

Studies on the temperature shift-induced desaturation of fatty acids in monogalactosyl diacylglycerol in the blue-green alga (cyanobacterium), Anabaena variabilis.

Plant Cell Physiol. 22: 1043-1050.

 

10. N. Sato and N. Murata (1982)

Lipid biosynthesis in the blue-green alga, Anabaena variabilis I. Lipid classes.

Biochim. Biophys. Acta 710: 271-278.

 

11. N. Sato and N. Murata (1982)

Lipid biosynthesis in the blue-green alga, Anabaena variabilis II. Fatty acids and lipid molecular species.

Biochim. Biophys. Acta 710: 279-289.

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12. N. Murata, N. Sato, N. Takahashi and Y. Hamazaki (1982)

Compositions and positional distributions of fatty acids in phospholipids from leaves of chilling-sensitive and chilling-resistant plants.

Plant Cell Physiol. 23: 1071-1079.

 

13. N. Sato and N. Murata (1982)

Lipid biosynthesis in the blue-green alga (cyanobacterium), Anabaena variabilis III. UDP-glucose:diacylglycerol glucosyltransferase activity in vitro.

Plant Cell Physiol. 23: 1115-1120.

 

14. N. Murata and N. Sato (1982)

In vivo synthesis of lipids in the blue-green alga, Anabaena variabilis.

In Biochemistry and Metabolism of Plant Lipids. Edited by J. F. G. M. Wintermans and P. J. C. Kuiper. pp. 165-168. Elsevier Biomedical Press, Amsterdam.

 

15. N. Sato and N. Murata (1982)

In vitro synthesis of glyceroglycolipids in the blue-green alga, Anabaena variabilis.

In Biochemistry and Metabolism of Plant Lipids.@ Edited by J. F. G. M. Wintermans and P. J. C. Kuiper. pp. 201-204. Elsevier Biomedical Press, Amsterdam.

 

16. N. Murata and N. Sato (1983)

Analysis of lipids in Prochloron sp.: Occurrence of monoglucosyl diacylglycerol.

Plant Cell Physiol. 24: 133-138.

 

17. N. Sato and M. Furuya (1983)

Isolation and identification of diacylglyceryl-O-4'-(N,N,N-trimethyl)homoserine from the fern Adiantum capillus-veneris L.

Plant Cell Physiol. 24: 1113-1120.

 

18. N. Sato and M. Furuya (1984)

Distribution of diacylglyceryltrimethylhomoserine in selected species of vascular plants.

Phytochemistry 23: 1625-1627.

 

19. N. Murata, N. Sato and N. Takahashi (1984)

Very-long-chain saturated fatty acids in phosphatidylserine from higher plant tissues.

Biochim. Biophys. Acta 795: 147-150.

 

20. N. Sato and M. Furuya (1984)

The composition of lipids and fatty acids determined at various stages of haploid and diploid generations in the fern Adiantum capillus-veneris.

Physiol. Plant. 62: 139-147.

 

21. N. Sato and M. Furuya (1984)

Distribution of diacylglyceryltrimethylhomoserine in green plants.

In Structure, Function and Metabolism of Plant Lipids. Edited by P. A. Siegenthaler and W. Eichenberger. pp. 171-174. Elsevier Science Publishers, Amsterdam.

 

22. N. Sato and M. Furuya (1985)

Distribution of diacylglyceryltrimethylhomoserine and phosphatidylcholine in non-vascular green plants.

Plant Sci. 38: 81-85.

 

23. N. Sato (1985)

Lipid biosynthesis in epidermal, guard and mesophyll cellõprotoplasts from leaves of Vicia faba L.

Plant Cell Physiol. 26: 805-811.

 

24. N. Sato and M. Furuya (1985)

Synthesis of translatable mRNA for phytochrome during imbibition in embryonic axes of Pisum sativum L.

Plant Cell Physiol. 26: 1511-1517.

 

25. N. Sato, K. Tomizawa, Y. Komeda and M. Furuya (1986)

Partial enrichment of pea phytochrome mRNA by gel electrophoresis and transfer to poly(U)-paper.

Plant Cell Physiol. 27: 183-186.

 

26. N. Sato, Y. Seyama and N. Murata (1986)

Lipid-linked desaturation of palmitic acid in monogalactosyl diacylglycerol in the blue-green alga (cyanobacterium) Anabaena variabilis.

Plant Cell Physiol. 27: 819-835.

 

27. S. Tokutomi, Y. Inoue, N. Sato, K. T. Yamamoto and M. Furuya (1986)

Effect of pH on absorption spectra of pea 114 and 121 kilodalton phytochromes during and after red-light irradiation.

Plant Cell Physiol. 27: 765-773.

 

28. K. Tomizawa, Y. Komeda, N. Sato, A. Nagatani, T. Iino and M. Furuya (1986)

Isolation of cDNA for pea phytochrome using an expression vector.

Plant Cell Physiol. 27: 1101-1108.

 

29. N. Sato (1987)

Lipid biosynthesis in epidermal, guard, and mesophyll cell protoplasts from leaves of Vicia faba L.

In The Metabolism, Structure, and Function of Plant Lipids. Edited by P. K. Stumpf, J. B. Mudd and W. D. Nes. pp. 545-547. Plenum Press, New York.

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30. N. Sato, Y. Nemoto and M. Furuya (1987)

Lipids of Chattonella antiqua (Raphidophyceae).

In The Metabolism, Structure, and Function of Plant Lipids. Edited by P. K. Stumpf, J. B. Mudd and W. D. Nes. pp. 661-663. Plenum Press, New York.

@

31. N. Sato, Y. Nemoto and M. Furuya (1988)

Lipids of Chattonella antiqua (Raphidophyceae).

Plant Physiol. Biochem. 26: 93-98.

 

32. N. Sato (1988)

Dual role of methionine in the biosynthesis of diacylglyceryltrimethylhomoserine in Chlamydomonas reinhardtii.

Plant Physiol. 86: 931-934.

 

33. N. Sato and K. Kato (1988)

Analysis and biosynthesis of diacylglyceryl-N,N,N-trimethyl-homoserine in the cells of Marchantia polymorpha in suspension culture.

Plant Sci. 55: 21-25.

 

34. N. Sato (1988)

Nucleotide sequence and expression of the phytochrome gene in Pisum sativum. Differential regulation by light of multiple transcripts.

Plant Mol. Biol. 11: 697-710.

 

35. N. Sato (1989)

Modulation of lipid and fatty acid content by carbon dioxide in Chlamydomonas reinhardtii.

Plant Sci. 61: 17-21.

 

36. K. Tomizawa, N. Sato and M. Furuya (1989)

Phytochrome control of multiple transcripts of the phytochrome gene in Pisum sativum.

Plant Mol. Biol. 12: 295-299.

 

37. S. Araki, T. Sakurai, T. Oohusa, M. Kayama and N. Sato (1989)

Characterization of sulfoquinovosyl diacylglycerol from marine red algae.

Plant Cell Physiol. 30: 775-781.

 

38. N. Sato (1989)

Biosynthesis of homoserine lipid.

In Biological Role of Plant Lipids. Edited by P. A. Biacs, K. Bruiz and T. Kremmer. pp. 57-60. Akademiai Kiado, Butapest and Plenum Publishing Corporation, New York.

 

39. N. Sato (1989)

Effects of CO2 concentration on the composition of lipids in Chlamydomonas

reinhardtii.

In Biological Role of Plant Lipids. Edited by P. A. Biacs, K. Bruiz and T. Kremmer. pp. 553-554. Akademiai Kiado, Butapest and Plenum Publishing Corporation, New York.

 

40. N. Sato (1990)

Nucleotide sequence of a pseudogene for pea phytochrome reminiscent of an incorrect splicing event.

Nucleic Acids Res. 18: 3632.

 

41. N. Sato and N. Murata (1991)

Transition of lipid phase in aqueous dispersions of diacylglyceryltrimethyl-homoserine.

Biochem. Biophys. Acta 1082: 108-111.

 

42. S. Araki, W. Eichenberger, T. Sakurai and N. Sato (1991)

Distribution of diacylglycerylhydroxymethyltrimethyl-beta-alanine (DGTA) and phosphatidylcholine in brown algae.

Plant Cell Physiol. 32: 623-628.

 

43. N. Ohta, N. Sato, S. Kawano and T. Kuroiwa (1991)

Methylation of DNA in the chloroplasts and amyloplasts of the pea, Pisum sativum.

Plant Sci. 78: 33-42.

 

44. N. Sato (1991)

Lipids in Cryptomonas CR-1. I. Occurrence of betaine lipids.

Plant Cell Physiol. 32: 819-825.

 

45. N. Sato (1991)

Lipids in Cryptomonas CR-1. II. Biosynthesis of betaine lipids and galactolipids.

Plant Cell Physiol. 32: 845-851.

 

46. Y. Komeda, H. Yamashita, N. Sato, H. Tsukaya and S. Naito (1991)

Regulated expression of a gene-fusion product derived from the gene for phytochrome I from Pisum sativum and the uidA gene from E. coli in transgenic Petunia hybrida.

Plant Cell Physiol. 32: 737-743.

 

47. N. Sato (1992)

Cloning of a low-temperature-induced gene lti2 from the cyanobacterium Anabaena variabilis M3 that is homologous to a-amylases.

Plant Mol. Biol. 18: 165-170.

 

48. S. Araki, T. Sakurai, T. Oohusa and N. Sato (1992)

Comparative restriction endonuclease analysis of rhodoplast DNA from different species of Porphyra (Bangiales, Rhodophyta).

Nippon Suisan Gakkaishi 58: 477-480.

 

49. N. Sato, C. Albrieux, J. Joyard, R. Douce and T. Kuroiwa (1992)

Detection and characterization of plastid envelope DNA-binding protein (PEND protein) in developing pea chloroplasts.

In Research in Photosynthesis. Edited by N. Murata. Vol. III. õpp. 453-456. Kluwer Academic Publishers, Dordrecht.@

 

50. N. Sato, C. Albrieux, J. Joyard, R. Douce and T. Kuroiwa (1993)

Detection and characterization of a plastid envelope DNA-binding protein which may anchor plastid nucleoids.

EMBO J. 12: 555-561.

 

51. H. Uchida, S. Kawano, N. Sato and T. Kuroiwa (1993)

Isolation and characterization of novel genes which are expressed during the very early stage of zygote formation in Chlamydomonas reinhardtii.

Curr. Genet. 24: 296-300.

 

52. N. Sato (1994)

Effect of exogenous glucose on the accumulation of monoglucosyl diacylglycerol in the cyanobacterium Synechocystis PCC 6803.

Plant Physiol. Biochem. 32: 121-126.

 

53. N. Sato (1994)

A cold-regulated cyanobacterial gene cluster encodes RNA-binding protein and ribosomal protein S21.

Plant Mol. Biol. 24: 819-823.

 

54. N. Ohta, N. Sato, S. Kawano and T. Kuroiwa (1994)

The trpA gene on the plastid genome of Cyanidium caldarium strain RK-1.

Curr. Genet. 25: 357-361

 

55. N. Sato (1995)

A family of cold-regulated RNA-binding protein genes in the cyanobacterium Anabaena variabilis M3.

Nucl. Acids Res. 23: 2161-2167.

 

56. M. Nakayama, T. Masuda, N. Sato, H. Yamagata, C. Bowler, H. Ohta, Y. Shioi and K. @ Takamiya (1995)

Cloning, subcellular localization and expression of chlI, a subunit of magnesium-chelatase in soybean.

Biochem. Biophys. Res. Commun. 215: 422-428.

 

57. N. Sato, Misumi, O., Joyard, J. and Douce, R. (1995)

DNA-binding proteins mediate interaction of nucleoids with envelope membrane in developing plastids. In Photosynthesis: from Light to Biosphere. Edited by P. Mathis. Vol. III. pp. 635-638. Kluwer Academic Publishers, Dordrecht.

 

58. N. Sato and A. Wada (1996)

Disruption analysis of the gene for a cold-regulated RNA-binding protein, rbpA1, in Anabaena: Cold-induced initiation of the heterocyst differentiation pathway.

Plant Cell Physiol. 37: 1150-1160.

 

59. N. Sato and K. Maruyama (1997)

Differential regulation by low temperature of the gene for an RNA-binding protein, rbpA3, in the cyanobacterium Anabaena variabilis strain M3.

Plant Cell Physiol. 38: 81-86.

 

60. N. Ohta, N. Sato, K. Ueda and T. Kuroiwa (1997)

Analysis of a plastid gene cluster reveals a close relationship between Cyanidioschyzon and Cyanidium.

J. Plant Res. 110: 235-245.

 

61. N. Ohta, N. Sato, H. Nozaki and T. Kuroiwa (1997)

Analysis of the cluster of ribosomal protein genes in the plastid genome of a unicellular red alga Cyanidioschyzon merolae: Translocation of the str cluster as an early event in the Rhodophyte-Chromophyte lineage of plastid evolution.

J. Mol. Evol. 45: 688-695.

 

62. N. Sato, K. Maruyama, Y. Nishiyama and N. Murata (1997)

Identification of a cold-regulated RNA-binding protein from the marine cyanobacterium Synechococcus sp. PCC7002.

J. Plant Res. 110: 405-410.

 

63. N. Sato, T. Tachikawa, A. Wada and A. Tanaka (1997)

Temperature-dependent regulation of the ribosomal small subunit protein S21 in the cyanobacterium Anabaena variabilis M3.

J. Bacteriol. 179: 7063-7071.

 

64. N. Sato, O. Misumi, Y. Shinada, M. Sasaki and M. Yoine (1997)

Dynamics of localization and protein composition of plastid nucleoid in light-grown pea seedlings.

Protoplasma 200: 163-173.

 

65. N. Sato, K. Ohshima, A. Watanabe, N. Ohta, Y. Nishiyama, J. Joyard and R. Douce (1998)

Molecular characterization of the PEND protein, a novel bZIP protein present in the envelope membrane that is the site of nucleoid replication in developing plastids.

Plant Cell 10: 859-872.

 

66. N. Sato and A. Nakamura (1998)

Involvement of the 5'-untranslated region in cold-regulated expression of the rbpA1 gene in the cyanobacterium Anabaena variabilis M3.

Nucleic Acids Res. 26: 2192-2199.

 

67. N. Sato, A. Wada and A. Tanaka (1998)

Ribosomal proteins in the cyanobacterium Anabaena variabilis strain M3: Presense of L25 protein.

Plant Cell Physiol. 39: 1367-1371.

 

68. N. Ohta, N. Sato and T. Kuroiwa (1998)

Structure and organization of the mitochondrial genome of the unicellular red alga Cyanidioscyzon merolae deduced from the complete nucleotide sequence.

Nucleic Acids Res. 26: 5190-5198.

 

69. K. Maruyama, N. Sato and N. Ohta (1999)

Conservation of structure and cold-regulation of RNA-binding proteins in cyanobacteria: probable convergent evolution with eukaryotic glycine-rich RNA-binding proteins.

Nucleic Acids Res. 27: 2029-2036.

 

70. N. Sato (2000)

SISEQ: Manipulation of multiple sequence and large database files for common platforms.

Bioinformatics 16: 180-181.

 

71. N. Sato, M. Nakayama and T. Hase (2001)

The 70-kDa major DNA-compacting protein of the chloroplast nucleoid is sulfite reductase.

FEBS Letters 487: 347-350.

 

72. K. Hashimoto and N.Sato (2001)

Characterization of the mitochondrial nad7 gene in Physcomitrella patens: Similarity with angiosperm nad7 genes.

Plant Science 160: 807-815.

 

73. N. Sato and N. Ohta (2001)

DNA-binding specificity and dimerization of the DNA-binding domain of the PEND protein in the chloroplast envelope membrane.

Nucleic Acids. Res. 29: 2244-2250.

 

74. M. Ohmori, M. Ikeuchi, N. Sato, P. Wolk, T. Kaneko, T. Ogawa, M. Kanehisa, S. Goto, S. Kawashima, S. Okamoto, H. Yoshimura, H. Katoh, T. Fujisawa, S. Ehira, A. Kamei, S. Yoshihara, R. Narikawa and S. Tabata (2001)

Characterization of genes encoding multi-domain proteins in the genome of the filamentous nitrogen-fixing cyanobacterium Anabaena sp. Strain PCC 7120.

DNA Research 8, 271-284.

 

75. N. Sasaki and N. Sato (2001)

3-D visualization for gene rearrangement in ternary comparison.

Genome Informatics 12: 462-463.

 

76. Y. Kabeya, K. Hashimoto and N. Sato (2002)

Identification and characterization of two phage-type RNA polymerase cDNAs in the moss Physcomitrella patens: Implication of recent evolution of nuclear-encoded RNA polymerase of plastids in plants.

Plant Cell Physiol. 43: 245-255.

 

77. K. Sekine, T. Hase and N. Sato (2002)

Reversible DNA compaction by sulfite reductase regulates transcriptional activity of chloroplast nucleoids.

J. Biol. Chem. 277: 24399-24404.

 

78. N. Sato (2002)

Comparative analysis of the genomes of cyanobacteria and plants.

Genome Informatics 13: 173-182.

 

79. N. Sato and S. Ehira (2003)

GenoMap, a circular genome data viewer.

Bioinformatics 19: 1583-1584.

 

80. S. Ehira, M. Ohmori and N. Sato (2003)

Genome-wide expression analysis of the responses to nitrogen deprivation in the heterocyst-forming cyanobacterium Anabaena sp. strain PCC 7120

DNA Research 10: 97-113.

 

81. S. Ehira, T. Hamano, T. Hayashida, K. Kojima, H. Nakamoto, T. Hiyama, M. Ohmori, S. Shivaji and N. Sato (2003)

Conserved temperature-dependent expression of RNA-binding proteins in cyanobacteria with different temperature optima

FEMS Microbiol. Lett. 225: 137-142.

 

82. N. Sato (2003)

Gclust: genome-wide clustering of protein sequences for identification of photosynthesis-related genes resulting from massive horizontal gene transfer.

Genome Informatics 14: 585-586.

 

83. T. Nomata, Y. Kabeya and N. Sato (2004)

Cloning and characterization of glycine-rich RNA-binding protein cDNAs in the moss Physcomitrella patens.

Plant Cell Physiol. 44 48-56.

 

84. Matsuzaki, M., Misumi, O., Shin-i, T., Maruyama, S., Takahara, M., Miyagishima, S., Mori, T., Nishida, K., Yagisawa, F., Nishida, K., Yoshida, Y., Nishimura, Y., Nakao, S., Kobayashi, T., Momoyama, Y., Higashiyama, T., Minoda, A., Sano, M., Nomoto, H., Oishi, K., Hayashi, H., Ohta, F., Nishizaka, S., Haga, S., Miura, S., Morishita, T., Kabeya, Y., Terasawa, K., Suzuki, Y., Ishii, Y., Asakawa, S., Takano, H., Ohta, N., Kuroiwa, H., Tanaka, K., Shimizu, N., Sugano, S., Sato, N., Nozaki, H., Ogasawara, N., Kohara, Y. and Kuroiwa, T. (2004)

Genome sequence of the ultrasmall unicellular red alga Cyanidioschyzon merolae 10D.

Nature 428: 653-657.

 

85. Sato, N., Ohmori, M., Ikeuchi, M., Tashiro, K., Wolk, C. P., Kaneko, T., Okada, K., Tsuzuki, M., Ehira, S., Katoh, H., Okamoto, S., Yoshimura, H., Fujisawa, T., Kamei, A., Yoshihara, S., Narikawa, R., Hamano, T., Tabata, S. and Kuhara, S. (2004)

Use of segment-based microarray in the analysis of global gene expression in response to various environmental stresses in the cyanobacterium Anabaena sp. PCC 7120

J. Gen. Appl. Microbiol. 50: 1-8.

 

86. Sato, N., Sekine, K., Kabeya, Y., Ehira, S., Onuma, M., and Ohta, N. (2004)

Discontinuous evolution of plastid genomic machinery: Radical replacement of major DNA-binding proteins.

Endocytobiosis Cell Res. 15: 286-293.

 

87. T. Hamano, S. Murakami, K. Takayama, S. Ehira, K. Maruyama, H. Kawakami, E. H. Morita, H. Hayashi and N. Sato (2004)

Characterization of RNA-binding properties of three types of RNA-binding proteins in Anabaena sp. PCC 7120

Cell. Mol. Biol. 50: 613-624.

 

88. K. Terasawa and N. Sato (2005)

Visualization of plastid nucleoids in situ using the PEND-GFP fusion protein

Plant Cell Physiol. 46: 649-660. (with cover figure)

 

89. K. Terasawa and N. Sato (2005)

Occurrence and characterization of PEND proteins in angiosperms

J. Plant Res. 118: 111-119.

 

90. Y. Kabeya and N. Sato (2005)

Unique translation initiation at the second AUG codon determines mitochondrial localization of the phage-type RNA polymerases in the moss Physcomitrella patens

Plant Physiol. 138:369-382

 

91. S. Ehira, M. Ohmori and N. Sato (2005)

Identification of low-temperature regulated ORFs in the cyanobacterium Anabaena sp. strain PCC 7120: distinguishing the effects of low temperature from the effects of photosystem II excitation pressure.

Plant Cell Physiol 46: 1237-1245.

 

92. S. Ehira, M. Ohmori and N. Sato (2005)

Role of the 5'-UTR in accumulation of the rbpA1 transcript at low temperature in the cyanobacterium Anabaena variabilis M3.

FEMS Microbiol Lett. 251: 91-98.

 

 

93. N. Sato, M, Ishikawa, M. Fujiwara and K. Sonoike (2005)

Mass identification of chloroplast proteins of endosymbiont origin by phylogenetic profiling based on organism-optimized homologous protein groups

Genome Informatics 16: 56-68.

 

94. Q. Fan, S. Lechno-Yossef, S. Ehira, T. Kaneko, M. Ohmori, N. Sato, S. Tabata and C. P. Wolk (2006)

@@@ Signal Transduction Genes Required for Heterocyst Maturation in Anabaena sp. Strain PCC 7120.

@@@ J. Bacteriol. 188: 6688-6693.

 

95. S. Lechno-Yossef, Q. Fan, S. Ehira, N. Sato, C. P. Wolk (2006)

@@@ Mutations in four regulatory genes have interrelated effects on heterocyst maturation in Anabaena sp. strain PCC 7120.

@@@ J. Bacteriol. 188: 7387-7395.

 

96. K. Terasawa, M. Odahara, Y. Kabeya, T. Kikugawa, Y. Sekine, M. Fujiwara and N. Sato (2007) Mitochondrial genome of the moss Physcomitrella patens sheds new light on the mitochondrial evolution in land plants. Mol. Biol. Evol. 24: 699-709.

 

97. K. Sekine, M. Fujiwara, M. Nakayama, T. Takao, T. Hase and N. Sato (2007) DNA-binding and partial nucleoid localization of the chloroplast stromal enzyme ferredoxin:sulfite reductase. FEBS J. 274: 2054-2069.

 

98. N. Sato and T. Moriyama (2007) Genomic and biochemical analysis of lipid biosynthesis in the unicellular rhodophyte Cyanidioschyzon merolae: lack of plastidic desaturation pathway results in mixed pathway of galactolipid synthesis. Eukaryotic Cell 6: 1006-1017.

 

99. H. Nozaki, H. Takano, O. Misumi, K. Terasawa, M. Matuzaki, S. Maruyama, K. Nishida, F. Yagisawa, Y. Yoshida, T. Fujiwara, S. Takio, K. Tamura, S. J. Chung, S. Nakamura, H. Kuroiwa, K. Tanaka, N. Sato and T. Kuroiwa (2007) A 100%-complete sequence reveals unusually simple genomic features in the hot spring red alga Cyanidioschyzon merolae. BMC Biology 5: 28 (doi:10.1186/1741-7007-5-28)

 

100. I. Sakurai, N. Mizusawa, H. Wada and N. Sato (2007) Digalactosyldiacylglycerol is required for stabilization of the oxygen-evolving complex in photosystem II. Plant Physiol. 145: 1361-1370.

 

 

 

 


 

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Betaine lipids.

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‚UD²“¡’¼Ž÷Cš¢ŽR‹±”Vi@(1997)

@@ƒ‰ƒ“‘”‚Ì×–E•ª‰»‚Æ‚q‚m‚`Œ‹‡ƒ^ƒ“ƒpƒNŽ¿

@@‰»Šw‚ƶ•¨@‚R‚TŠªC‚V‚W‚O|‚V‚W‚Tƒy[ƒW

 

7. N. Sato, N. Rolland, M. A. Block and J. Joyard (1999)

Do plastid envelope membranes play a role in the expression of the plastid genome?

Biochimie 81: 619-629.

 

8. N. Ohta, N. Sato and T. Kuroiwa (1999)

The organellar genomes of Cyanidioschyzon merolae. In Enigmatic Microorganisms and Life in Extreme Environments. Edited by J. Seckbach. pp. 139-149. Kluwer Academic Publishers, Dordrecht.

 

9. ‘¾“c‚É‚¶C²“¡’¼Ž÷@(1999)

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@@CACS FORUM@‚P‚XŠªC‚X|‚P‚Vƒy[ƒW

 

10. ²“¡’¼Ž÷@(2000)

@@Œ´ŠjE^ŠjƒnƒCƒuƒŠƒbƒh‚Æ‚µ‚Ä‚Ì—t—Α̊j—l‘Ì‚Ì•ªŽq\’z‚Æ‚»‚̃_ƒCƒiƒ~ƒYƒ€

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11. “¾•½–ÎŽ÷C²“¡’¼Ž÷ (2001)

’‚‘fŒÅ’è”\‚ð‚à‚ÂAnabaena‘®‚̃‰ƒ“‘”‚̈â“`Žq‘€ì

‰»Šw‚ƶ•¨@39: 121-126

12. N. Sato (2001)

Was the evolution of plastid genetic machinery discontinuous?

Trends in Plant Science 6: 151-156.

 

13. ²“¡’¼Ž÷(2002)

ƒvƒ‰ƒXƒ`ƒhŠj—l‘Ì‚Ì•ªŽq\’zE‹@”\‚Ì‘½—l«‚ƃQƒmƒ€‘•’u‚Ì•s˜A‘±i‰»‰¼à

¶‰»Šw 74: 27-37.

 

14. ²“¡’¼Ž÷(2002)

¶•¨ŒnŒ¤‹†Žº‚É‚¨‚¯‚éˆâ“`î•ñ‰ðÍ‚Ì‚½‚ß‚ÌUNIXŠÂ‹«‚Ì\’zDMacOS X‚ÆLinux‚ð—p‚¢‚ÄB@’`”’Ž¿ŠjŽ_y‘f 47: 633-634.

 

15. ŠÖªN‰îC²“¡’¼Ž÷(2003)

ƒvƒ‰ƒXƒ`ƒhŠj—l‘Ì‚Ì\‘¢‚ƃOƒ[ƒoƒ‹‚È‹@”\’²ßB

¶•¨‰ÈŠw 54: 238-245.

 

16. N. Sato, K. Terasawa, K. Miyajima and Y. Kabeya (2003)

Organization, developmental dynamics and evolution of the plastid nucleoid.

Int. Rev. Cytol. 232: 217-262.

 

17. ²“¡’¼Ž÷(2004)

ƒQƒmƒ€î•ñ‚ÆŒõ‡¬¶•¨‚̉Šúi‰»

ŠwpŒŽ•ñ 57: 1039-1043

 

18. M. T. Fujiwara and N. Sato (2004)

Plastid replication in Arabidopsis: Complexity of the molecular components for the control of division.

Recent Res. Devel. Plant Sci. 2: 219-248. ISBN: 81-7736-239-9

 

19. M. T. Fujiwara, H. Hashimoto, S. Yoshida, R. D. Itoh, Y. Niwa and N. Sato (2006)

Strucrues and morphologies of plant plastids.

Frontiers in Life Sciences (M. Fujiwara, N. Sato and S. Ishiura, eds) , 91-109. ISBN: 81-308-0071-3

 

 


 

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1D²“¡’¼Ž÷@(1986)

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@@A•¨ƒoƒCƒIƒeƒNƒmƒƒW[iŽR“cN”VC‰ª“c‹g”ü•Òj

@@‚P‚X‚O|‚P‚X‚Uƒy[ƒWC“Œ‹ž‰»Šw“¯l

 

2D²“¡’¼Ž÷C‰œŽRŽ¡”ü@(1987)

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@@’`”’Ž¿ŠjŽ_y‘f•Êû‚R‚OŠªCA•¨‚Ì×–E¶•¨Šw“IŒ¤‹†–@@iÔ‘ò‹ÄC™‰Y¹OC

@@¼‘ºŠ²•v•Òj

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3. N. Sato and N. Murata (1988)

Membrane lipids.

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pp. 251-259, Academic Press, New York.

 

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@@A•¨Ž‰Ž¿‘ãŽÓŽÀŒ±–@iŽR“cWO•Ò’˜j•ª’SŽ·•MiI-1, I-2, I-4(ii), II-2(ii)j

@@Šw‰ïo”ŃZƒ“ƒ^[

 

5D²“¡’¼Ž÷@(1990)

@@A•¨‚Ì‘ÏŠ¦«‚̃}[ƒJ[‚ƂȂ鎉Ž¿

@@ƒoƒCƒIƒTƒCƒGƒ“ƒXí—ªƒ}ƒjƒ…ƒAƒ‹BV‚µ‚¢‘fނƃ}[ƒJ[Eƒvƒ[ƒu@

@@i£–윛“ñ‘¼•ÒWj@‚T‚Q‚X|‚T‚R‚Pƒy[ƒWC‹¤—§o”Å

 

6D²“¡’¼Ž÷@(1992)

@@Ž‰Ž¿‘ãŽÓ

@@Œ»‘ãA•¨¶—ŠwC‘æ‚QŠªCi‹{’nd‰“•ÒWj‚P‚R‚T|‚P‚V‚Pƒy[ƒWC’©‘q‘“X

 

7. N. Sato (1993)

Biosynthesis of glycolipids in cyanobacteria.

In Biochemistry and Molecular Biology of Membrane and Storage Lipids of Plants.

Edited by N. Murata and C.R. Somerville. pp. 174-182. American Society of Plant Physiologists.

 

8. ²“¡’¼Ž÷(2002)

A•¨×–E•ª‰»‚ðŽx‚¦‚éƒvƒ‰ƒXƒ`ƒh‚Æ×–EŠj‚̃Rƒ~ƒ…ƒjƒP[ƒVƒ‡ƒ“B@

×–EHŠw•Êû@A•¨×–EHŠwƒVƒŠ[ƒY‚P‚V@uA•¨ƒIƒ‹ƒKƒlƒ‰‚Ì•ª‰»‚Æ‘½—l«vi¼‘º‚¢‚­‚±C’†–ì–¾•FC²“¡’¼Ž÷ŠÄCj@GŽÐ pp. 94-104.

 

9. Kabeya, Y., Sekine, K., and Sato, N. (2004)

Evolution of the organellar transcription machinery in bryophytes and vascular plants. In gNew Frontiers in Bryology. Physiology, Molecular Biology and Functional Genomicsh ( Wood, A. J., Oliver, J. J. and Cove, D. J., Eds.). Kluwer Academic Publishers, Dordrecht, pp. 91-110.

 

10. ²“¡’¼Ž÷(2003)

‘ãŽÓŒni‰»‚ƃCƒ“ƒtƒHƒ}ƒeƒBƒNƒX

’`”’Ž¿ŠjŽ_y‘f‘Š§†uA•¨‚Ì‘ãŽÓƒRƒ~ƒ…ƒjƒP[ƒVƒ‡ƒ“vi™ŽR’B•vC…–ì–ÒC’·’JrŽ¡CÄ“¡˜a‹G•ÒWj@‹¤—§o”Å@ 48: 2211-2217

 

11. ²“¡’¼Ž÷(2003)

Œõ‡¬Ž–“Ti“ú–{Œõ‡¬Œ¤‹†‰ï•Òji•ª’SŽ·•MjŠw‰ïo”ŃZƒ“ƒ^[

 

12. Kabeya, Y. and Sato, N. (2004)

Evolution of organellar transcription machinery in bryophytes and vascular plants. In gPlant Genome. Biodiversity and Evolutionh Volume 2, Part A Lower Groups (Sharma, A. K. and Sharma, A., Eds.) Science Publishers, Inc., pp. 263-283, Enfield (NH) USA.

 

13. ²“¡’¼Ž÷ (2005)

ƒ|ƒPƒbƒgƒKƒCƒh@ƒoƒCƒIƒeƒN—pŒêŽ–“TiR. D. Schmid’˜C‘º¼³›‰ŠÄ–óC•ª’S–|–ój

“Œ‹ž‰»Šw“¯l

 

14. ²“¡’¼Ž÷ (2005)

•W€‰»Šw—pŒêŽ«“T‘æ“ñ”Åi“c‹÷ŽO¶‘¼•Òji•ª’SŽ·•MjŠÛ‘P@840 ƒy[ƒWCISBN 4-621-07531-4

 

15. ²“¡’¼Ž÷ (2005)

F‘f‘̃Qƒmƒ€‚Ì\‘¢E•¡»‚Æ“®“I‚ÈŠj—l‘Ì\‘¢‚̉Ž‹‰»

’`”’Ž¿ŠjŽ_y‘f‘Š§†u“ñ‘w–ŒƒIƒ‹ƒKƒlƒ‰‚̈â“`Šwvi—уˆêC™ŽRN—YCâ–{˜jC“c’†Š°C³–Øt•F•ÒWj@‹¤—§o”Å@50: 1838-1842

 

16. Ž›àVŒöGC“¡Œ´½C²“¡’¼Ž÷(2006)

@@—t—Α̊j—l‘Ì‚Æ•ª—ô‘•’u‚̉Ž‹‰»

@@V”Å@A•¨‚Ì×–E‚ðŠÏ‚éŽÀŒ±ƒvƒƒgƒR[ƒ‹iA•¨×–EHŠwƒVƒŠ[ƒY22j

@@GŽÐ pp. 149-155.

 

17. N. Sato (2006) Origin and Evolution of Plastids: Genomic View on the Unification and Diversity of Plastids. In Robert R. Wise and J. Kenneth Hoober (eds), The Structure and Function of Plastids, ISBN: 1-4020-4060-1. Chapter 4, 75–102. Springer, Berlin.

 

18. ²“¡’¼Ž÷(2007)

A•¨‚Ì”äŠrƒQƒmƒ€‰ðÍDA•¨‚Ìi‰»iA•¨×–EHŠwƒVƒŠ[ƒY23j

GŽÐ pp. 58-65.

 

19. “Œ‹ž‘åŠwŒõ‡¬‹³ˆçŒ¤‹†‰ï(2007)

Œõ‡¬‚̉ȊwD“Œ‹ž‘åŠwo”ʼnïi291ƒy[ƒWjISBN: 978-4-13-062214-1.