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1.
The morphological and physiological variability of six isolatesof Pyricularia oryzae, the causal organism of rice blast disease,were investigated. The rate of growth, colony characters, andtime of sporulation were found to vary with the different isolatesthough not by appreciable amounts. Each of the isolates showedconsistently better growth on Takahashi's B medium than on Czapek-Dox'smedium although the growth trend was the same in both media.The colony characters developed by each isolate are not dependenton the medium on which it is growing—a pointer to thefact that such characters may be genetically controlled. Germinationwas faster in distilled water than in 2 per cent agar. All theisolates produced appresoria in vivo and in vitro; those producedin vivo were, however, considerably larger than those producedin vitro. On the basis of appresorial types, the isolates werefound to fall into two physiological races—smooth-walledand rough-walled. Each isolate produced consistently only oneappresorial type in vitro from the apical or basal cell of theconidium. The utilization of carbon and nitrogen compounds variedfrom one isolate to the other, carbon compounds being generallybetter utilized than nitrogen compounds. Pyricularia oryzaecan metabolize a wide range of carbon compounds. However, mannose,sucrose, glucose, fructose, and maltose proved to be most suitablecarbon sources. The variations in the utilization of the variouscarbon and nitrogen compounds seem to reflect inherent biochemicaland physiological differences among the isolates.  相似文献   

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Morphological Variation in Spores of Pyricularia oryzae Cavara   总被引:1,自引:0,他引:1  
S. Arase    Y. Katano    X. Li    Y. Honda  M. Nozu 《Journal of Phytopathology》1994,142(3):253-257
Two mutant isolates of Pyricularia oryzae formed abnormal, longer, cylindrical spores with more septa than those of normal, obpyriform spores of wild isolates. These isolates also produced normal spores, although their number was less than that of the abnormal spores. When normal and abnormal spores were single-spore-isolated from the lesions caused by the mutant isolates and inoculated to an agar medium, each colony produced both types of spores, regardless of the type of single spores usedfor inoculation.  相似文献   

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Two mutant isolates of Pyricularia oryzae formed abnormal, longer, cylindrical spores with more septa than those of normal, obpyriform spores of wild isolates. These isolates also produced normal spores, although their number was less than that of the abnormal spores. When normal and abnormal spores were single-spore-isolated from the lesions caused by the mutant isolates and inoculated to an agar medium, each colony produced both types of spores, regardless of the type of single spores used for inoculation.  相似文献   

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Pyricularia oryzae produced toxin(s) during spore germination which induced susceptibility to infection by non-pathogenic Alternaria alternata of rice leaves. The induced susceptibility was independent of the compatibility between the races of blast fungi used for obtaining the toxin(s) and the rice cultivars used for bioassay. Susceptibility was also induced in other susceptible species (e.g. barley, Italian ryegrass, perennial ryegrass and wheat), results suggesting that the toxin(s) are host-selective and determine the host specificity at plant species level.  相似文献   

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K. Fujita    S. Arase    H. Hiratsuka    Y. Honda  M. Nozu 《Journal of Phytopathology》1994,142(3):245-252
Pyricularia oryzae produced toxin(s) during spore germination which induced susceptibility to infection by non-pathogenic Alternaria alternata of rice leaves. The induced susceptibility was independent of the compatibility between the races of blast fungi used for obtaining the toxin(s) and the rice cultivars used for bioassay. Susceptibility was also induced in other susceptible species (e.g. barley, Italian ryegrass, perennial ryegrass and wheat), results suggesting that the toxin(s), are host-selective and determine the host specificity at plant species level.  相似文献   

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The effect of organophosphorus fungicide, Kitazin P (IBP, S-benzyl diisopropyl phosphorothiolate), on lipid biosynthesis of Pyricularia oryzae was investigated. Addition of IBP to the mycelial cells suspension of P. oryzae induced a striking decrease in incorporation of methionine-methyl-14C, S-adenosylmethionine-methyl-14C, and glycerol-1-14C into phosphatidylcholine, which is the most abundant phospholipid in P. oryzae, but incorporation of choline-methyl-14C into phosphatidylcholine and that of methionine-methyl-14C into simple lipids were not affected. Incorporation of methionine-methyl-14C into phosphatidylcholine is found to be directly proportional to mycelial cells growth of P. oryzae. Enzymes responsible for the biosynthesis from glycerol to phosphatidylcholine through Greenberg’s pathway, except phospholipid N-mefhyltransferase, were not inhibited by IBP. IBP concentration required for 50% inhibition of phospholipid N-methyltransferase was 40 ppm. IBP had no effect on activities of glycerokinase, glycerophosphate acyltransferase, phosphatidic acid cytidyltransferase, phosphatidylserine synthetase, and phosphatidylserine decarboxylase, respectively. Therefore, the specific inhibition of conversion from phosphatidylethanolamine to phosphatidylcholine by the transmethylation of S-adenosylmethionine might be regarded as one of the modes of action of IBP.  相似文献   

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Phenolic Azo Dye Oxidation by Laccase from Pyricularia oryzae   总被引:2,自引:0,他引:2       下载免费PDF全文
Laccase oxidation of phenolic azo dyes was examined with a commercially available laccase from Pyricularia oryzae as the model. Methyl-, methoxy-, chloro-, and nitro-substituted derivatives of 4-(4(prm1)-sulfophenylazo)-phenol were examined as substrates for this laccase. Only the substituents on the phenolic ring were changed. Among the dyes examined, only 2-methyl-, 2-methoxy-, 2,3-dimethyl-, 2,6-dimethyl-, 2,3-dimethoxy-, and 2,6-dimethoxy-substituted 4-(4(prm1)-sulfophenylazo)-phenol served as substrates. Preliminary kinetic studies suggest that 2,6-dimethoxy-substituted 4-(4(prm1)-sulfophenylazo)-phenol is the best substrate. Laccase oxidized the 2,6-dimethyl derivative of 4-(4(prm1)-sulfophenylazo)-phenol to 4-sulfophenylhydroperoxide (SPH) and 2,6-dimethyl-1,4-benzoquinone. The 2-methyl- and 2-methoxy-substituted dyes were oxidized to SPH and either 2-methyl- or 2-methoxy-benzoquinone. Six products were formed from laccase oxidation of the 2,6-dimethoxy-substituted dye. Three of them were identified as SPH, 4-hydroxybenzenesulfonic acid, and 2,6-dimethoxybenzoquinone. A mechanism for the formation of benzoquinone and SPH from laccase oxidation of phenolic azo dyes is proposed. This study suggests that laccase oxidation can result in the detoxification of azo dyes.  相似文献   

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Pyricularia oryzae and Pyricularia grisea are pathogens that cause blast disease in various monocots. It has been reported that P. oryzae infects the leaves and roots of rice via different mechanisms. However, it is unclear to what extent the tissue types affect the host specificities of P. oryzae and P. grisea. Here, we evaluated the tissue‐specific infection strategies of P. oryzae and P. grisea in various gramineous plants. Generally, mycelial plug inoculation caused root browning but the degree of browning did not simply follow the disease index on leaves. Interestingly, the Triticum and Digitaria pathotypes caused strong root growth inhibition in rice, wheat, and barley. Moreover, the Digitaria pathotype inhibited root branching only in rice. Culture filtrate reproduced these inhibitory effects on root, suggesting that some secreted molecules are responsible for the inhibitions. Observation of root sections revealed that most of the infection hyphae penetrated intercellular spaces and further extended into root cells, regardless of pathotype and host plant. The infection hyphae of Digitaria and Triticum pathotypes tended to localize in the outer layer of rice roots, but not in those of wheat and barley roots. The infection hyphae of the Oryza pathotype were distributed in both the intercellular and intracellular spaces of rice root cells. Pathogenesis‐related genes and reactive oxygen species accumulation were induced after root inoculation with all combinations. These results suggest that resistance reactions were induced in the roots of gramineous plants against the infection with Pyricularia isolates but failed to prevent fungal invasion.  相似文献   

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茶多酚对稻瘟病菌的抑制作用及抑菌机理   总被引:1,自引:0,他引:1  
用不同浓度茶多酚对稻瘟病菌进行抑菌和抑菌机理研究。结果表明,不同浓度的茶多酚对稻瘟病菌菌丝生长和分生孢子萌发具有很强的抑制作用。随着茶多酚浓度的增加,其抑制作用增强,其中5.00 mg/mL和10.00 mg/mL抑制效果最好,其抑制率高达100%,且分生孢子畸形,细胞破裂,原生质外溢。其作用机理主要是破坏菌体的细胞膜结构,抑制CAT、POD酶活,使其丧失细胞膜的屏障和酶系的保护功能,最终导致菌体生长受到抑制或死亡。  相似文献   

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《Phytochemistry》1990,29(1):91-92
Appressorium formation of Pyricularia oryzae P2 on cover-glass coated with each of the components of rice leaf wax was examined. Wax esters, aldehydes and alcohols, having polar groups and low contact angles, promoted appressorium formation, but alkanes, non-polar molecules having high contact angles, had no effects. Germination of conidia, however, was not aftected with those constituents.  相似文献   

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