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91.
An insight into spore dispersal of <Emphasis Type="Italic">Ganoderma boninense</Emphasis> on oil palm 总被引:1,自引:0,他引:1
Sanderson FR 《Mycopathologia》2005,159(1):139-141
The disease of oil palm caused by Ganoderma boninense, although universally referred to as Ganoderma basal stem rot, occurs in three very distinct phases, with basal stem rot only part of the disease cycle. G. boninense also causes a seedling disease and an upper stem rot. An understanding of spore dispersal provides an insight into where spores of G. boninense have a role in the infection process. This role will be discussed in relation to each of these three infection phases. This understanding is a critical component of developing a successful disease control strategy. 相似文献
92.
Yang DE Jin DM Wang B Zhang DS Nguyen HT Zhang CL Chen SJ 《Molecular genetics and genomics : MGG》2005,274(3):229-234
The maize inbred lines 1145 (resistant) and Y331 (susceptible), and the F1, F2 and BC1F1 populations derived from them were inoculated with the pathogen Pythium inflatum Matthews, which causes stalk rot in Zea mays. Field data revealed that the ratio of resistant to susceptible plants was 3:1 in the F2 population, and 1:1 in the BC1F1population, indicating that the resistance to P. inflatum Matthews was controlled by a single dominant gene in the 1145×Y331 cross. The gene that confers resistance to P. inflatum Matthews was designated Rpi1 for resistance to P. inflatum) according to the standard nomenclature for plant disease resistance genes. Fifty SSR markers from 10 chromosomes were first
screened in the F2 population to find markers linked to the Rpi1 gene. The results indicated that umc1702 and mmc0371 were both linked to Rpi1, placing the resistance gene on chromosome 4. RAPD (randomly amplified polymorphic DNA) markers were then tested in the F2population using bulked segregant analysis (BSA). Four RAPD products were found to show linkage to the Rpi1 gene. Then 27 SSR markers and 8 RFLP markers in the region encompassing Rpi1 were used for fine-scale mapping of the resistance gene. Two SSR markers and four RFLP markers were linked to the Rpi1 gene. Finally, the Rpi1 gene was mapped between the SSR markers bnlg1937 and agrr286 on chromosome 4, 1.6 cM away from the former and 4.1 cM distant
from the latter. This is the first time that a dominant gene for resistance to maize stalk rot caused by P. inflatum Matthews has been mapped with molecular marker techniques. 相似文献
93.
Degradation of aromatic hydrocarbons by white-rot fungi in a historically contaminated soil 总被引:10,自引:0,他引:10
D'Annibale A Ricci M Leonardi V Quaratino D Mincione E Petruccioli M 《Biotechnology and bioengineering》2005,90(6):723-731
Phanerochaete chrysosporium NRRL 6361 and Pleurotus pulmonarius CBS 664.97 were tested for their ability to grow under nonsterile conditions and to degrade various aromatic hydrocarbons in an aged contaminated soil that also contained high concentrations of heavy metals. After 24 days fungal incubation, carbon-CO2 liberated, an indicator of microbial activity, reached a plateau. At the end of the incubation time (30 days), fungal colonization was clearly visible and was confirmed by ergosterol and cell organic carbon determinations. In spite of unfavorable pH (around 7.4) and the presence of heavy metals, both fungi produced Mn-peroxidase activity. In contrast, laccase and aryl-alcohol oxidase were detected only in the soil treated with P. pulmonarius CBS 664.97 and lignin-peroxidase in that with P. chrysosporium NRRL 6361. No lignin-modifying enzyme activities were present in non-inoculated soil incubated for 30 days (control microcosm). Regardless of the fungus employed, a total removal of naphtalene, tetrachlorobenzene, and dichloroaniline isomers, diphenylether and N-phenyl-1-naphtalenamine, was observed. Significant release of chloride ions was also observed in fungal-treated soil, in comparison with that recorded in the control microcosm. Both fungi led to a significant decrease in soil toxicity, as assessed using two different soil contact assays, including the Lepidium sativum L. germination test and the Collembola mortality test. 相似文献
94.
Saadat M Bahaoddini A Nazemi S 《Biochemical and biophysical research communications》2004,313(3):568-569
In order to show the alteration of blood pressure in subjects chronically exposed to natural gas containing sulfur compounds, the present study was done. The blood pressure of 94 (43 males, 51 females) of healthy individuals living in the polluted area of Masjid-i-Sulaiman (Khozestan province, southwest of Iran) was measured. The non-parametric Sign test was applied in order to detect differences between the study subjects and the normal mean values according to the sex and age of subjects. Statistical analysis showed that the systolic blood pressure significantly decreased (Z=-2.74; P=0.0031) while the diastolic blood pressure (Z=+2.11; P=0.0174) and heart rate (Z=+3.62; P<0.001) significantly increased in individuals living in the contaminated areas compared with those of normal mean values. The systolic and diastolic blood pressure decreased and increased, respectively, in individuals chronically exposed to natural sour gas containing sulfur compounds. 相似文献
95.
白腐菌对培养环境pH的调节及其产漆酶的相关性 总被引:3,自引:1,他引:2
研究了不同种属白腐菌多孔菌属C1(Polyporussp.)、侧耳属B2(Pleurotussp.)、香菇属A3(Lentinusedodes)对培养环境pH的调节,及其与菌株产漆酶状况的相关性。结果表明:3株白腐菌均可调节培养液酸化,培养环境的pH可分别由初始的4.5~5.0持续下降至培养结束时3.0~3.5水平,相应C1、B2、A3三者的漆酶合成与分泌在pH值较高(pH 4.5以上)时均表现较弱(酶活分别处于约1 500、200、50 U/mL以下的水平),在pH 3.2~4.5范围内的不同偏酸性条件下则得到较好表达(最高酶活分别达5 000、340、144 U/mL)。统计学分析指出,白腐菌调节环境pH状况与其产漆酶状况之间存在显著或极显著相关性,但不同白腐菌调节培养环境pH的能力之间并不具有显著性差异。 相似文献
96.
Fifteen polymorphic microsatellite markers were developed from microsatellite‐enriched DNA libraries of the devastating dry rot fungus, Serpula lacrymans. The loci exhibited two to four alleles per locus and the expected heterozygosity ranged from 0.13 to 0.47. The codominant markers, described here for this fungus, will permit further studies in population genetics and phylogeography of this economically highly important species. 相似文献
97.
F. A. Azevedo F. A. A. Mourão Filho B. M. J. Mendes W. A. B. Almeida E. H. Schinor R. Pio J. M. Barbosa S Guidetti-Gonzalez H. Carrer E. Lam 《Plant Molecular Biology Reporter》2006,24(2):185-196
Transgenic plants expressing the bacterio-opsin (bO) gene can spontaneously activate programmed cell death (ped) and may enhance broad-spectrum pathogen resistance by activating
an intrinsic defense pathway in plant species such as tobacco and potato. In this work, we produced transgenic Rangpur lime
plants with thebO gene, viaAgrobacterium tumefaciens-mediated transformation, and evaluated these plants forPhytophthora nicotianae resistance. Two transgenic lines were successfully regenerated and transformation was confirmed by GUS activity assay, PCR
analysis, Southern, Northern and Western blot analyses, in addition to detecting the expressed bO protein by an immunological
approach. Evaluation forPhytophthora nicotianae resistance was carried out by plant inoculations with the pathogen and quantification of the affected area. One of the two
transgenic lines showed greater tolerance to the fungal pathogen as compared to the control, with significantly smaller stem
lesions after pathogen challenge. This increase in pathogen tolerance is correlated with a significantly higher level of transgene
expression in this line when compared with the other transgenic line. This is the first report of the introduction of a potentially
important gene into Rangpur lime to provide novel pathogen tolerance. 相似文献
98.
AIMS: The aim of the study was to develop a sensitive detection method of Fusarium culmorum contamination in cereal samples. METHODS AND RESULTS: A nested-PCR method using a single closed tube was developed for the detection of F. culmorum in infected cereal samples. The concentrations of the first primer pair was diluted 10,000 times compared to the concentration used for the second primer pair. Differing annealing temperatures allowed both first and second polymerase chain reaction (PCR) reactions to be performed subsequently in the same closed tube. The detection limit was 5-50 fg of purified target DNA and allowed the detection of 1% infected seeds of wheat in a mixture with uninfected grains. CONCLUSIONS: F. culmorum can be specifically detected in cereal samples by the highly sensitive method of nested-PCR in a single closed tube. SIGNIFICANCE AND IMPACT OF THE STUDY: This work describes the detection of F. culmorum in cereal samples that is approximately 100 times more sensitive than previous PCR methods, involves low risk of cross contaminations between samples, low costs and reduced hands-on time as compared to standard nested-PCR protocols. 相似文献
99.
An identification key for 20 common strand-forming indoor wood decay fungi is given. The key is based on observations of material from affected buildings and on wood samples that have been incubated in the laboratory. The key is with macro- and microscopic photographs. 相似文献
100.
青海豌豆根腐病病原菌种类及致病性的研究 总被引:4,自引:0,他引:4
豌豆极腐病是青海东部干旱地区豌豆生产上的一种新病害,近年来危害逐年加重,致使豌豆产量遭受严重损失。根据分离鉴定和致病性测定结果,青海豌豆根腐病病原真菌是由茄镰刀菌、尖孢镰刀菌、豌豆丝囊霉、根串珠霉、立枯丝核菌、腐霉、链孢粘帚霉等复合反染所引起的。经回接试验:镰刀菌和豌豆丝囊霉对豌豆具有较强的致病力;腐霉及其他病原菌则有加强腐烂作用。 相似文献