최소 단어 이상 선택하여야 합니다.
최대 10 단어까지만 선택 가능합니다.
다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
NTIS 바로가기Research in plant disease = 식물병연구, v.27 no.4, 2021년, pp.129 - 136
김정애 ((재)농축산용미생물산업육성지원센터) , 송정섭 ((재)농축산용미생물산업육성지원센터) , 정민혜 (순천대학교) , 박숙영 (순천대학교) , 김양선 ((재)농축산용미생물산업육성지원센터)
Rice is responsible for the stable crop of 3 billion people worldwide, about half of Asian depends on it, and rice is grown in more than 100 countries. Rice diseases can lead to devastating economic loss by decreasing yield production, disturbing a stable food supply and demand chain. The most commo...
Ashnaei, S. P. 2019. Plant growth promoting rhizobacteria and Rhizophagus irregularis: biocontrol of rice blast in wild type and mycorrhiza-defective mutant. J. Plant Prot. Res. 59: 362-375.
Cha, K.-H., Oh, H.-J., Park, R.-D., Park, H.-G., An, K.-N. and Jung, W.-J. 2010. Comparison of growth, yield and quality between organic cultivation and conventional cultivation in rice (Oryza sativa L.) field. Korean J. Org. Agric. 18: 199-208. (In Korean)
Chaiharn, M., Chunhaleuchanon, S. and Lumyong, S. 2009. Screening siderophore producing bacteria as potential biological control agent for fungal rice pathogens in Thailand. World J. Microbiol. Biotechnol. 25: 1919-1928.
Chaiharn, M., Theantana, T. and Pathom-Aree, W. 2020. Evaluation of biocontrol activities of Streptomyces spp. against rice blast disease fungi. Pathogens 9: 126.
Chiangsin, R., Kesee, C. and Sangchote, S. 2018. Biological control of Bipolaris oryzae with Bacillus subtilis and the development of a formulation for rice seed treatment. Thai J. Agric. Sci. 51: 139-151.
Chung, H. K., Sung, J. H. and Lee, H. J. 2019. 2019 Current status of domestic and foreign eco-friendly agricultural products production and consumption and future tasks. KREI Issue Anal. 66: 1-17. (In Korean)
Da Silva, J., Torres, D. B., Lustosa, D. C., De Filippi, M. C. C. and Da Silva, G. B. 2012. Rice sheath blight biocontrol and growth promotion by Trichoderma isolates from the Amazon. Rev. Cienc. Agr. 55: 243-250.
De Franca, S. K. S., Cardoso, A. F., Lustosa, D. C., Ramos, E. M. L. S., De Filippi, M. C. C. and Da Silva, G. B. 2015. Biocontrol of sheath blight by Trichoderma asperellum in tropical lowland rice. Agron. Sustain. Dev. 35: 317-324.
De Souza Junior, I. T., Schafer, J. T., Correa, B. O., Funck, G. D. and Moura, A. B. 2017. Expansion of the biocontrol spectrum of foliar diseases in rice with combinations of rhizobacteria. Rev. Cienc. Agron. 48: 513-522.
Divya, R., Aju, K. A. and Jisha, M. S. 2018. Bio control potential of rice endophyte Fusarium oxysporum against rice sheath blight pathogen Rhizoctonia solani. Agric. Res. Technol. 19: 556079.
Gnanamanickam, S. S. 2009. Biological Control of Rice Diseases. Springer Nature, Dordrecht, Germany. 108 pp.
Gupta, V., Shamas, N., Razdan, V. K., Mahajan, S., Fatima, K., Sharm, S. et al. 2018. Management of brown spot of rice (Oryza sativa L.) caused by Bipolaris oryzae by bio-control agents. Int. J. Curr. Microbiol. Appl. Sci. 7: 3472-3477.
Hirooka, T. and Ishii, H. 2013. Chemical control of plant diseases. J. Gen. Plant Pathol. 79: 390-401.
Ilsan, N. A., Nawangsih, A. A. and Wahyudi, A. T. 2016. Rice phyllosphere actinomycetes as biocontrol agent of bacterial leaf blight disease on rice. Asian J. Plant Pathol. 10: 1-8.
Jamali, H., Sharma, A., Roohi and Srivastava, A. K. 2020. Biocontrol potential of Bacillus subtilis RH5 against sheath blight of rice caused by Rhizoctonia solani. J. Basic Microbiol. 60: 268-280.
Kanjanasopa, D., Aiedhet, W., Thitithanakul, S. and Paungfoo-Lonhienne, C. 2021. Plant growth promoting rhizobacteria as biological control agent in rice. Agric. Sci. 12: 1-8.
Kato, H. 2001. Rice blast disease. Pestic. Outlook 12: 23-25.
Kazempour, M. N. 2004. Biological control of Rhizoctonia solani, the causal agent of rice sheath blight by antagonistics bacteria in greenhouse and field conditions. Plant Pathol. J. 3: 88-96.
Kyndt, T., Fernandez, D. and Gheysen, G. 2014. Plant-parasitic nematode infections in rice: molecular and cellular insights. Annu. Rev. Phytopathol. 52: 135-153.
Lee, S.-G., Lee, Y.-H., Kim, J.-S., Lee, B.-M., Kim, M.-J., Shin, J.-H. et al. 2005. Diseases and weeds occurrence and control in organic and conventional rice paddy field. Korean J. Org. Agric. 13: 291-300.
Li, Q., Jiang, Y., Ning, P., Zheng, L., Huang, J., Li, G. et al. 2011. Suppression of Magnaporthe oryzae by culture filtrates of Streptomyces globisporus JK-1. Biol. Control 58: 139-148.
Mao, J., Gong, M. and Guan, Q. 2019. Published. Induced disease resistance of endophytic bacteria REB01 to bacterial blight of rice. AIP Conf. Proc. 2079: 020017.
Mew, T. W. and Gonzales, P. 2002. A Handbook of Rice Seedborne Fungi. Science Publishers, Inc., Enfield, NH. 83 pp.
Montesinos, E. 2003. Development, registration and commercialization of microbial pesticides for plant protection. Int. Microbiol. 6: 245-252.
Moura, A. B., Ludwig, J., Santos, A. G., Schafer, J. T., Soares, V. N. and Correa, B. O. 2014. Biocontrol and seed transmission of Bipolaris oryzae and Gerlachia oryzae to rice seedlings. J. Seed Sci. 36: 407-412.
Navarro-Pedreno, J., Almendro-Candel, M. B. and Zorpas, A. A. 2021. The increase of soil organic matter reduces global warming, myth or reality? Sci 3: 18.
Niu, D.-D., Liu, H.-X., Jiang, C.-H., Wang, Y.-P., Wang, Q.-Y., Jin, H.-L. et al. 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. Mol. Plant-Microbe Interact. 24: 533-542.
Park, J.-S., Lee, S.-Y. and Kang, C.-K. 2001. Technological and economic analysis of environment-friendly rice farming. Korean J. Org. Agric. 9: 69-82. (In Korean)
Paustian, K., Larson, E., Kent, J., Marx, E. and Swan, A. 2019. Soil C sequestration as a biological negative emission strategy. Front. Clim. 1: 8.
Rashid, M. M., Bhuiyan, M. R., Dilzahan, H. A., Hamid, M. A., Hasan, N., Khan, M. A. I. et al. 2020. Biological control of rice sheath blight disease (Rhizoctonia solani) using bio-pesticides and bio-control agents. Bangladesh Rice J. 24: 47-58.
Resti, Z., Liswarni, Y. and Martinius, M. 2020. Endophytic bacterial consortia as biological control of bacterial leaf blight and plant growth promoter of rice (Oryza sativa L.). J. Appl. Agric. Sci. Technol. 4: 134-145.
Saito, H., Sasaki, M., Nonaka, Y., Tanaka, J., Tokunaga, T., Kato, A. et al. 2021. Spray application of nonpathogenic fusaria onto rice flowers controls bakanae disease (caused by Fusarium fujikuroi) in the next plant generation. Appl. Environ. Microbiol. 87: e01959-e01920.
Saranya, D. K. and Sowndaram, S. 2014. Biological control of rhizobacteria against rice diseases caused by Rhizoctonia solani (sheath blight) and Sarocladium oryzae (sheath rot). Int. J. Adv. Res. 2: 818-823.
Sha, Y., Wang, Q. and Li, Y. 2016. Suppression of Magnaporthe oryzae and interaction between Bacillus subtilis and rice plants in the control of rice blast. Springerplus 5: 1238.
Shrestha, B. K., Karki, H. S., Groth, D. E., Jungkhun, N. and Ham, J. H. 2016. Biological control activities of rice-associated Bacillus sp. strains against sheath blight and bacterial panicle blight of rice. PLoS ONE 11: e0146764.
Skamnioti, P. and Gurr, S. J. 2009. Against the grain: safeguarding rice from rice blast disease. Trends Biotechnol. 27: 141-150.
Spence, C., Alff, E., Johnson, C., Ramos, C., Donofrio, N., Sundaresan, V. et al. 2014. Natural rice rhizospheric microbes suppress rice blast infections. BMC Plant Biol. 14: 130.
Suparno, S., Hakim, L. and Aidawati, N. 2016. Trichoderma spp. as agent of biological control in local rice diseases in tidal swamp lands in South Kalimantan, Indonesia. IOSR J. Agric. Vet. Sci. 9: 1-6.
Suprapta, D. N. 2012. Potential of microbial antagonists as biocontrol agents against plant fungal pathogens. J. ISSAAS 18: 1-8.
Tann, H. and Soytong, K. 2016. Biological control of brown leaf spot disease caused by Curvularia lunata and field application method on rice variety IR66 in Cambodia. J. Agric. Sci. 39: 111-117.
Tokpah, D. P., Li, H., Newmah, J. T., Page, Z., Luther, Z., King, C. F. et al. 2017. Biological control of potential antagonistic bacteria isolates to restrict Magnaporthe grisea infection on rice. Afr. J. Microbiol. Res. 11: 1108-1119.
Van Hop, D., Hoa, P. T. P., Quang, N. D., Ton, P. H., Ha, T. H., Van Hung, N. et al. 2014. Biological control of Xanthomonas oryzae pv. oryzae causing rice bacterial blight disease by Streptomyces toxytricini VN08-A-12, isolated from soil and leaf-litter samples in Vietnam. Biocontrol Sci. 19: 103-111.
Velusamy, P., Immanuel, J. E., Gnanamanickam, S. S. and Thomashow, L. 2006. Biological control of rice bacterial blight by plant-associated bacteria producing 2,4-diacetylphloroglucinol. Can. J. Microbiol. 52: 56-65.
Wilkinson, K. A. 2019. Mining for biological control agents against Burkholderia glumae, the causal agent of bacterial panicle blight of rice. M.S. thesis. University of Arkansas, Fayetteville, AR, USA.
Yadav, R. N., Mishra, D., Zaidi, N. W., Singh, U. S. and Singh, H. B. 2018. Bio-control efficacy of Trichoderma spp. against the major diseases of rice (Oryzae sativa L.). Int. J. Agric. Environ. Biotechnol. 11: 543-548.
Yang, J.-H., Zhang, W.-W., Zhuang, Y.-Q. and Xiao, T. 2017. Biocontrol activities of bacteria from cowdung against the rice sheath blight pathogen. J. Plant Dis. Prot. 124: 131-141.
Yasmin, S., Hafeez, F. Y., Mirza, M. S., Rasul, M., Arshad, H. M. I., Zubair, M. et al. 2017. Biocontrol of bacterial leaf blight of rice and profiling of secondary metabolites produced by rhizospheric Pseudomonas aeruginosa BRp3. Front. Microbiol. 8: 1895.
Yu, Y.-Y., Jiang, C.-H., Wang, C., Chen, L.-J., Li, H.-Y., Xu, Q. et al. 2017. An improved strategy for stable biocontrol agents selecting to control rice sheath blight caused by Rhizoctonia solani. Microbiol. Res. 203: 1-9.
Zarandi, M. E., Bonjar, G. H. S., Dehkaei, F. P., Moosavi, S. A. A., Farokhi, P. R. and Aghighi, S. 2009. Biological control of rice blast (Magnaporthe oryzae) by use of Streptomyces sindeneusis isolate 263 in greenhouse. Am. J. Appl. Sci. 6: 194-19.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.