Academic literature on the topic 'Cochliobolus miyabeanus'

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Journal articles on the topic "Cochliobolus miyabeanus"

1

Ahn, Il-Pyung, Soonok Kim, Seogchan Kang, Seok-Cheol Suh, and Yong-Hwan Lee. "Rice Defense Mechanisms Against Cochliobolus miyabeanus and Magnaporthe grisea Are Distinct." Phytopathology® 95, no. 11 (2005): 1248–55. http://dx.doi.org/10.1094/phyto-95-1248.

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Responses of rice to Magnaporthe grisea and Cochliobolus miyabeanus were compared. In Tetep, a rice cultivar resistant to both fungi, pathogen inoculation rapidly triggered the hypersensitive reaction (HR), resulting in microscopic cell death. In rice cv. Nakdong, susceptible to both pathogens, M. grisea did not cause HR, whereas C. miyabeanus caused rapid cell death similar to that associated with HR, which appeared similar to that observed in cv. Tetep, yet failed to block fungal ramification. Treatment with conidial germination fluid (CGF) from C. miyabeanus induced rapid cell death in both
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2

Dekka, Satish, K.NarasimhaRaju, Satish Bonu, Suresh Koduru, and Manendra Sai Dasari. "Fuzzy Logic Based Alert on Cochliobolus Miyabeanus to Control the Rice Crop Loss." International Journal of Engineering and Advanced Technology (IJEAT) 9, no. 3 (2020): 3961–64. https://doi.org/10.35940/ijeat.C6511.029320.

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Agriculture is a source of living in many areas and acts a backbone for the Indian economy. Agriculture crops are affected by fungus and bacteria to cause diseases in the plant. Brown spot is a serious hazard that takes place on leaves of the rice plant. The presence of fungus ‘Cochliobolus miyabeanus’ is the main factor for brown spot disease. The severity of the disease depends on growth of the fungus. The development of fungus depends on several factors such as temperature, humidity and rainfall. Whenever the disease occurs on a plant, level of the infection plays an importance
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3

Eruotor, P. G. "A Comparative Study of Six Isolates of Cochliobolus miyabeanus in Rice From U.S.A." International Rice Research Newsletter 10, no. 3 (1985): 23. https://doi.org/10.5281/zenodo.7008844.

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This article 'A Comparative Study of Six Isolates of Cochliobolus miyabeanus in Rice From U.S.A' appeared in the International Rice Research Newsletter series, created by the International Rice Research Institute (IRRI). The primary objective of this publication was to expedite communication among scientists concerned with the development of improved technology for rice and for rice based cropping systems. This publication will report what scientists are doing to increase the production of rice in as much as this crop feeds the most densely populated and land scarce nations in the world.
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4

Zainudin, Nur Ain Izzati Mohd, Bradford Condon, Lieselotte De Bruyne, et al. "Virulence, Host-Selective Toxin Production, and Development of Three Cochliobolus Phytopathogens Lacking the Sfp-Type 4′-Phosphopantetheinyl Transferase Ppt1." Molecular Plant-Microbe Interactions® 28, no. 10 (2015): 1130–41. http://dx.doi.org/10.1094/mpmi-03-15-0068-r.

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The Sfp-type 4′-phosphopantetheinyl transferase Ppt1 is required for activation of nonribosomal peptide synthetases, including α-aminoadipate reductase (AAR) for lysine biosynthesis and polyketide synthases, enzymes that biosynthesize peptide and polyketide secondary metabolites, respectively. Deletion of the PPT1 gene, from the maize pathogen Cochliobolus heterostrophus and the rice pathogen Cochliobolus miyabeanus, yielded strains that were significantly reduced in virulence to their hosts. In addition, ppt1 mutants of C. heterostrophus race T and Cochliobolus victoriae were unable to biosyn
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5

Ahn, Il-Pyung, and Seok-Cheol Suh. "Calcium Restores Prepenetration Morphogenesis Abolished by Methylglyoxal-Bis-Guanyl Hydrazone in Cochliobolus miyabeanus Infecting Rice." Phytopathology® 97, no. 3 (2007): 331–37. http://dx.doi.org/10.1094/phyto-97-3-0331.

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Cochliobolus miyabeanus forms a specialized infection structure, an appressorium, to infect its host rice plants. Curtailment of prepenetration development by spermidine and spermine was more evident in appressorium development and germination remained unaffected, whereas putrescine and methylglyoxal-bis-guanyl hydrazone (MGBG) impaired both morphogenetic events. Exogenous calcium nullified the inhibitory effect of MGBG on the prepenetration development in vitro and in vivo and the disease progression. High levels of polyamines were detected in freshly collected conidia, but the amounts were r
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6

Cao, Fang-Yuan, Yuting Zeng, Ah-Rim Lee, et al. "OsFBN6 Enhances Brown Spot Disease Resistance in Rice." Plants 13, no. 23 (2024): 3302. http://dx.doi.org/10.3390/plants13233302.

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Brown spot (BS) is caused by necrotrophs fungi Cochliobolus miyabeanus (C. miyabeanus) which affects rainfed and upland production in rice, resulting in significant losses in yield and grain quality. Here, we explored the meJA treatment that leads to rice resistance to BS. Fibrillins (FBNs) family are constituents of plastoglobules in chloroplast response to biotic and abiotic stress, many research revealed that OsFBN1 and OsFBN5 are not only associated with the rice against disease but also with the JA pathway. The function of FBN6 was only researched in the Arabidopsis. We revealed gene expr
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7

Kubo, Yasuyuki, Mitsuya Tsuda, Iwao Furusawa, and Jiko Shishiyama. "Genetic analysis of genes involved in melanin biosynthesis of Cochliobolus miyabeanus." Experimental Mycology 13, no. 1 (1989): 77–84. http://dx.doi.org/10.1016/0147-5975(89)90010-8.

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8

Maji, E. A., and E. D: Imolehin. "Studies on the behaviour of some fungal diseases of rice in the mangrove swamp ecology at Warri, south eastern Nigeria." Acta Agronomica Hungarica 51, no. 4 (2003): 429–36. http://dx.doi.org/10.1556/aagr.51.2003.4.8.

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Studies on the ecological behaviour of Cochliobolus miyabeanus (Ito et Kurib.) Drechsl. ex Dast., syn. Bipolaris oryzae (Breda de Haan Shoem.), the causal agent of brown spot in rice (Oryza sativa L.), were carried out in the tidal mangrove swamp at Warri Experimental Farm, Southeastern Nigeria. A split randomised complete block design with four replications was used. Monthly transplantings from July to September formed the main plot, which was subdivided into control and N-treated subplots. Disease incidence increased when transplanting was delayed. This was probably due to the fact that flow
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9

NANBA, HIROAKI, and HISATORA KURODA. "The chemical structure of an antitumor polysaccharide in mycelia of Cochliobolus miyabeanus." CHEMICAL & PHARMACEUTICAL BULLETIN 35, no. 3 (1987): 1285–88. http://dx.doi.org/10.1248/cpb.35.1285.

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10

Ahn, Il-Pyung, and Seok-Cheol Suh. "Calcium/calmodulin-dependent signaling for prepenetration development in Cochliobolus miyabeanus infecting rice." Journal of General Plant Pathology 73, no. 2 (2007): 113–20. http://dx.doi.org/10.1007/s10327-006-0326-4.

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