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DAFTAR PUSTAKA

Abdullah B. 2002. Wild species Oryza spp. : a prospective source of bacterial blight resistance for rice breeding. J Penel Pertan Tan Pangan 21:1-5.

Agustiansyah. 2009. Perlakuan benih untuk perbaikan mutu fisiologi dan patologis benih padi serta efisiensi pemupukan fosfat [tesis]. Bogor: Mayor Ilmu dan Teknologi Benih, Institut Pertanian Bogor.

Arwiyanto T, Maryudani YMS, Azizah NN. 2007. Sifat-sifat fenotik Pseudomonas fluorescens, agensia pengendali hayati penyakit lincat pada Tembakau Temanggung. J Biodiversitas 8:147-151.

Asman A. 1996. Penyakit layu pada tanaman nilam dan cara pengendaliannya. Di dalam: Integrated Control on Main Disease of Industrial Crops. Prosiding Pertemuan Ilmiah Tahunan; Bogor, 13-14 Mar 1996. Bogor: Research Institute for Spice and Medicinal Crops, Bogor. hlm 284-290.

Astuti RI. 2008. Analisis karakter Pseudomonas sebagai agen pemacu tumbuh pertumbuhan tanaman dan biokontrol fungi patogen [tesis]. Bogor: Sekolah Pascasarjana IPB.

Bai Y, Zhou X, Smith DL. 2003. Enhanced soybean plant growth resulting from co inoculation of Bacillus strains with Bradyrhizobium japonicum. Crop Sci 43:1774-1781.

Beatty PH, Susan EJ. 2002. Paenibacillus polymyxa produce fusaricidin-type antifungal antibiotic active againts Leptospaeria maculans, the causative agent of blackleg disease of canola. Can J Microbiol 48:159-169.

Bizani D, Brandelli A. 2002. Characterization of bacteriocin produced by a newly isolated Bacillus sp. Strain A. J Appl Microbiol 93:512-519.

Blanco JM, Bakker PAHM. 2007. Interaction between plant and beneficial Pseudomonas spp: exploiting bacterial traits for crop protection. Springer Sci Rev 92:367-389.

Carbonell GV, Amorim CRN, Furumura MT, Darini ALC, Foseca BAL, Yano T. 2003. Biological activity of Serratia marcescens cytotoxin. Braz J Med Biol Res 36:351-359.

Chermin L, Chet I. 2002. Microbial enzymes in the Biocontrol of Plant Pathogens and Pests. Di dalam: Burn RG, Dick RP, editor. New York: Maecel Dekker, Inc. Enzymes in the Environment. hlm 171-226.

(2)

[Deptan] Departemen Pertanian. 2011. Penyakit padi karena bakteri [terhubung

berkala].htpp://bbpadi.litbang.deptan.go.id/index.php/in/penyakit-padi-karena-bakteri/204-penyakit-hawar-daun-bakteri-blb-in[20 November 2011]. Devadath S. 1988. Chemical control on bacterial blight of rice. International

workshop on bacterial blight of rice. IRRI. hlm 20-21.

Dirmawati SR. 2005. Penurunan intensitas penyakit pustule bakteri kedelai melalui strategi cara tanam tumpangsari dan penggunaan agensia hayati. J Agrijati 1:7-10.

Duijff BJ, Gianinazzi P, Lemanceau P. 1997. Involvement of the outermembrane lipopolysacharides in the endophytic root colonization of tomato roots by biocontrol Pseudomonas fluorescens strain WCS417r. J Phyto 135:325-334. Dwivedi D, Johri BN. 2003. Antifungals from Fourescens pseudomonads:

biosynthesis and regulation. Curr Sci 85:1693-1703.

Fernando WGD, Nakkeran S, Zhang Y. 2006. Biosynthesis of antibiotic by PGPR and its relation in biocontrol of plant disease. Di dalam: Siddqui ZA, Editor. PGPR: Biocontrol and Biofertilizer. Zeeland: Springer. hlm 23-35. Gerami E, Hassanzadeh N, Abdollahi H, Hajmansoor S. 2011. Biological control

of fire blight disease Erwinia amylovora under field condition of Karaj, Iran. J Phyto 101:60-68.

Gnanamanickam SS, Priyadarisini VB, Narayanan NN, Vasudevan P, Kavitha S. 1999. An overview of bacterial blight disease of rice and strategies for its management. Curr Sci 77:1435-1443.

Goto M. 1998. Kresek and pale yellow leaf systemic symptoms of bacterial leaf blight of rice caused by Xanthomonas oryzae. PI Dis Rep 48:858-861.

Hassanein WA, Awny NM, El-Mougith AA, Salah El-Dien SH. 2009. The antagonistic activities of some metabolites produced by Pseudomonas aeruginosa Sha8. J Appl Sci Res 5:404-414.

He L, Weiliang C, Yang L. 2005. Production and partial characterization of bacteriocin like peptides by Bacillus licheniformis ZJU12. J Microbiol Res 161:321-326.

Hejazi A, Falkiner FR. 1997. Serratia marcescens. J Med Microbiol 46:903-912. Holt JG, Kreig NR, Sneath PHA, Staley JT, Williams ST. 1994. Bergey’s Manual

of Determinative Bacteriology. Lipponicott W, Wilkins, editor. Ed ke-9. Philadelphia. hlm 63-67.

(3)

Hu J, Qian W, He C. 2007. The Xanthomonas oryzae pv. oryzae eglXoB endoglucanase gene is required for virulence to rice. FEMS Microbiol Lett 269:273-279.

Isramilda. 2007. Karakterisasi zat antimikrob penghambat pertumbuhan Vibrio harveyi dan Escherichia coli dari Bacillus sp. asal tambak udang [tesis]. Bogor: Sekolah Pascasarjana, Institut Pertanian Bogor.

Jack RW, Tagg JR, Ray B. 1995. Bacteriosin of Gram-positive bacteria. Microb Rev 59:171-200.

Jaiganesh V, Eswaran A, Balabaskar P, Kannan C. 2007. Antagonistic activity of Serratia marcescens against Pyricularia oryzae. Not Bot Hort Agrobot Cluj 35:48-54.

Keel C, Defago G. 1997. Suppression of root diseases by Pseudomonas fluorescens CHA0: importance of the bacterial secondary metabolite 2,4-diacetylphloroglucinol. Mol Plant Microbe Interact 5:4-13.

Khaeruni AR. 2001. Masalah penyakit HDB pada padi dan pemecahannya. J Penel Pertan Tan Pangan 25:108-109.

King EO, Ward MK, Raney DE. 1998. Two simple media for the demonstration of pyocyanin and fluorescein. J Lab Clin Med 44:301-7.

Lisboa MP, Bonatto D, Bizani D, Henriques JAP, Brandelli A. 2006. Characterization of a bakteriosin-like substance produced by Bacillus amyloliquefaciens islolated from the Brazilian Atlantic forest. Int Microbiol 9:111-118.

Loccoz YM, Defago G. 2004. Life as a biocontrol Pseudomonads. Di dalam: Ramos JL, editor. Pseudomonas. Volume ke-1. New York: Plenum Publishers. hlm 44-50.

Machmud M, Farida. 1995. Isolasi dan identifikasi bakteri antagonis terhadap hawar daun padi. Di dalam: Risalah Kongres Nasional XII dan Seminar Ilmiah PFI. Yogyakarta. hlm 295-296.

Madigan MT, Martinko JM, Parker J. 2000. Brock Biology of Microorganisms. New Jersey: Prentice-Hall. International Edition. hlm 255-260.

Mew TW, Mew C, Huang JS. 1984. Scanning electron microscopy of virulent and avirulent strains of Xanthomonas campestris pv. oryzae on rice leaves. J Phyto 74:635-641.

(4)

Mubarik NR, Mahagiani I, Putri AA, Santoso S, Rusmana I. 2010. Chitinolytic bacteria isolated from chili rhizosphere: chitinase characterization and application as biocontrol for whitefly (Bemisia tabaci Genn.). Am J Agric Biol Sci 5:430-535.

Nakayachi O. 1995. Transposon mutagenesis of Xanthomonas oryzae pv. oryzae and partial characterization of isolated mutans expressing reduced virulence. Bull RIAR Ishikawa Agr Coll 4:75-85.

Nawangsih AA. 2006. Seleksi dan karakterisasi bakteri biokontrol untuk mengendalikan penyakit layu bakteri (Ralstonia solanacearum) pada tomat [disertasi]. Bogor: Program Pascasarjana, Institut Pertanian Bogor.

Neilands JB, Nakamura K. 1991. Detection, Determination, Isolation, Characterization, and Regulation of Microbial Iron Chelator. Di dalam: Winkelman G, editor. Handbook of Microbial Iron Chelates. CRC Press. Boca Raton. New York. hlm 1-14.

Nishijima T, Toyota K, Mochizuki M. 2005. Predominant culturable Bacillus sp. in Japanese arable soils and their potential as biocontrol agents. Microb Environ 20:61-68.

Niu DD, Liu HX, Jiang CH, Wang YP, Wang QY, Jin HL, Guo JH. 2011. The plant growth promoting rhizobacterium Bacillus cereus AR156 induces systemic resistance in Arabidopsis thaliana by simultaneously activating salicylate and jasmonate/ethylene dependent signaling pathways. J Phyto 5:533-542

Nurdebyandaru N. 2008. Pemanfaatan bakteri kitinolitik asal perakaran tanaman cabai sebagai biokontrol kutu daun Aphis gossypii Glover [skripsi]. Bogor: Departemen Biologi, Fakultas Matematika dan Ilmu Pengetahuan Alam, Institut Pertanian Bogor.

Padmini OS. 1997. Pengaruh nitrogen dan Bradyrhizobium japonicum terhadap pertumbuhan kedelai (Glycine max L.) [tesis]. Bogor: Fakultas Matematika dan Ilmu Pengetahuan Alam, Institut Pertanian Bogor.

Pal KK, Gardener BM. 2006. Biological control of plant pathogens. APSnet J The Plant Health Instructor 02:1-25.

Patra et al. 2009. Antimicrobial activity of organic solvent extracts of three marine macroalgae from Chilika Lake, Orissa, India. Malay J Microbiol 5:128-131.

Press CM, Wilson M, Tuzun S, Kloepper JW. 1997. Salicylic acid produced by Serratia marcescens 90-166 is not the primary determinant of induced systemic resistance in cucumber or tobacco. Am J Phyto 6:761-768.

(5)

Price WA, Dietrich LEP, Newman DK. 2006. Rethinking secondary metabolism: physiological roles for phenazine antibiotics. Nature Chem Biol 2:71-78. Quadt-Hallman A, Hallman J, Kloepper JW. 1997. Bacterial endophytes in cotton:

location and interaction with other plant associated bacteria. J Microbiol 43:254-259.

Raaijmakers JM, Bonsal RF, Weller DM. 1999. Effect of population density of Pseudomonas fluorescens on production of 2,4-diacetylphloroglucinol in the rhizosphere of wheat. J Phyto 89:470-475.

Rammamoorthy V, Raguchander T, Samiyappan R. 2001. Induction of defence related protein in tomato roots treated with Pseudomonas fluorescens Pfl and Fusarium oxysporum f.sp. lycopersici. Plant Soil 239:55-68.

Ratna AR. 2000. Kelompok bakteri Xanthomonas campestris pv. oryzae berdasarkan patogenitasnya pada varietas padi. J Penel Pertan Tan Pangan 6:74-76.

Reddy APK, Kenzie M, DI Rose, Rao AV. 1979. Relationships of bacterial blight severity to grain yield to rice. J Phytol 69:967-969.

Roos IMM, Hattingh MJ. 1987. Systemic invasion of plum leaves and shoots by P. syringae pv. syringae introduced into petioles. J Phyto 77:1253-1257. Santhini E, Pradeepa D, Angayarkanni T, Kamalakannan A. 2005. Identification

of biochemical markers for the selection of effective strains of Pseudomonas fluorescens against Phythium spp. Di dalam: Gnanamanickam SS, Balasubramaniam R, Anand N, editors. Procedings of the Asian Conference on Emerging Trends in Plant-Microbes Interactions. Chennai: Center for 295-Advanced Studies in Botany University of Madras. hlm 295-303.

Shaner G, Finney RE. 1977. The effect of nitrogen fertilization on the expression of slow-mildewing resistance in knox wheat. J Phyto 67:1051-1056.

Shen D. 1997. Microbial diversity and application of microbial product for agricultural purposes in china. Agric Ecosyst Environ 62:237-245.

Silva HAS et al. 2004. Rhizobacterial induction of systemic resistance in tomato plant: non specific protection and increase in enzyme activities. Bio Control 29:288-295.

Someya NK, Tsuchiya, Akutsu K. 2005. Negative interaction between antagonistic microbes phytopathogens and epiphytic microbes in biological control of plant pathogens. Di dalam: Gnanamanickam SS, Balasumbramaniam R, Anand N, editors. Procedings of the Asian Conference on Emerging Trends in Plant-Microbes Interactions. Chennai: Univ. Madras Chennai. hlm 25-29.

(6)

Sugio A, Yang B, White FF. 2005. Characterization of the hrpF pathogenicity peninsula of Xanthomonas oryzae pv. oryzae. Mol Plant Microbe Interact 18:546-554.

Sugiyono. 2006. Statistika untuk Penelitian. Bandung: Alfabeta.

Suparyono, Sudir, Suprihanto. 2003. Phathotype profile of Xanthomonas oryzae pv. oryzae isolate from the rice ecosystem in Java. Indonesia J Agri Sci 5:63-69.

Suryadi Y, Susilowati DN, Mubarik NR, Putri KE. 2011. Antagonistic activity of indigenous Indonesian bacteria as the suppressing agent of rice fungal pathogen. J Int Environ Appl Sci, siap terbit.

Syachroni FA. 2011. Efektivitas formulasi konsorsium bakteri sebagai pengendali penyakit hawar pelepah daun tanaman padi [skripsi]. Bogor: Fakultas Matematika dan Ilmu Pengetahuan Alam, Institut Pertanian Bogor.

Tay L, Goh KT, Tan SE. 2008. An outbreak of Bacillus cereus Food Poisoning. Singapore J Medic 23:214-217.

Tsuyuma S, Takikawa Y, Furutani N, Tanaka K, Kanamori H, Kondoh Y, Nagai H. 1996. Factors involved in the pathogenicity of Xanthomonas campestris pv citri. J Mol Asp Phatogen Resist 11:105-114.

Utkhede R. 2005. Molecular approaches for diagnosis and biological control of diseases of green house crops. Di dalam: Gnanamanickam SS, Balasumbramaniam R, Anand N, editor. Procedings of the Asian Conference on Emerging Trends in Plant-Microbes Interactions. Chennai: Univ. Madras Chennai. hlm 11-18.

Vecchi ED, Dargo L. 2006. Lactobacillus sporogenes or Bacillus coagulans: misdentification or mislabelling? J Probiotic Prebio 3:3-10.

Velusamy P, Immanuel JE, Gnanamanickam SS, Thomashow L. 2006. Biological control of bacterial blight by plant associated bacteria producing 2,4-diacetylphloroglucinol. Can J Microbiol 52:56-65.

Verschuere L, Geert R, Patrick S, Willy V. 2000. Probiotic bacteria as biological control agents in aquaculture. J Microbiol Mol Biol 64:665-671.

Vleesschauwer DD, Cornelis P, Hofte M. 2006. Redox active pyocyanin secreted by Pseudomonas aeruginosa 7NSK2 tringgers systemic resistance to Magnoporthe grisea but enhances Rhizoctonia solani susceptibility in rice. J Phyto 12:406-419.

(7)

Wahyudi AT, Astuti RI, Mubarik NR, Faulina SA. 2009. Detection and cloning of a gene involved in zwitermicin a biosynthesis from plant growth promoting rhizobacterium Bacillus sp. CR64. J Biotechnol 15:9-14.

Watanabe I, So R, Ladha JK, Katayama FY, Kuraishi H. 1987. A new nitrogen fixing species of Pseudomonad: Pseudomonas diazotrophichus, nov. isolate from rice. Can J Microbiol 33:670-678.

Weisbeek PJ, Gerrits H. 2000. Iron and biocontrol. Di dalam: Stacey G, Keen NT, editor. Vol 4. The American Phytopathological Society. St. Paul. Minnesota. hlm 102-139.

Weller DM. 1988. Biological control of soilborne plant pathogens in the rhizosphere with bacteria. Ann Rev Phyto 26:379-407.

West TP. 2005. Effect of carbon source on pyrimidine formation in Pseudomonas flourescens ATCC 13525. J Microbiol 160:337-342.

Widyawati A. 2008. Bacillus sp. asal rhizosfer kedelai yang berpotensi sebagai pemacu pertumbuhan tanaman dan biokontrol fungi patogen akar [tesis]. Bogor: Sekolah Pascasarjana, Institut Pertanian Bogor.

Yamasaki RAD, Murata N, Suwa T. 2006. Studies on the culture of Xanthomonas oryzae. J Bacteriol 42:946-949.

Yuan M, Wang S. 2011. The role of copper in rice Xanthomonas oryzae interaction. J Mol Plant Pathol 101:207-211.

Zhang LF. 2006. Eludication of the hrp cluster of Xanthomonas oryzae pv. oryzicola that control the hiversensitive respone in nonhost tobacco and pathogenicity in susceptible host rice. Appl Environ Microbiol 72:6212-6224.

Zhu W, Magbanua MM, White FF. 2000. Identification of two novel hrp-associated genes in the hrp gene cluster of Xanthomonas oryzae pv. oryzae. J Bacteriol 182:1844-1853.

Zou L et al. 2006. Elucidation of the hrp clusters of Xanthomonas oryzae pv. oryzicola that control the hypersensitive response in nonhost tobacco and pathogenicity in susceptible host rice. Appl Environ Microbiol 72:6212-6224.

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