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E. A. van der Biezen B. Overduin T. J. A. Kneppers L. A. Mesbah H. J. J. Nijkamp J. Hille 《Euphytica》1994,79(3):205-217
The Alternaria stem canker disease of tomato is caused by the fungal pathogen Alternaria alternata f. sp. lycopersici and its host-selective AAL-toxins. Resistance to the pathogen and insensitivity to the toxins are conferred by the Asc locus on chromosome 3L. Sensitivity to AAL-toxins is a relative character; the toxins inhibit development of all tested tomato tissues but susceptible cultivars are much more sensitive than resistant cultivars. In addition to tomato, some other plant and animal species are sensitive to the toxins as well. The likely mode of action of AAL-toxins is interference with sphingolipid biosynthesis by specific inhibition of ceramide synthase activity. To molecularly isolate Asc, transposon tagging and positional cloning strategies are applied. As a first step, transposon insertions and restriction fragment length polymorphism (RFLP) markers are identified in proximity of the Asc locus. Subsequently, the transposons are used to inactivate Asc by insertion mutagenesis, and the RFLP markers are used to identify yeast artificial chromosomes (YACs) with tomato DNA inserts. Once an Asc-insertion mutant and/or a YAC encompassing Asc has been obtained, physical isolation and characterisation of Asc will be conceivable. Elucidation of the molecular role of Asc will illuminate the specificity of host recognition by Alternaria alternata f. sp. lycopersici.Abbreviations AAL-toxin
Alternaria alternata lycopersici-toxin
-
A. a. lycopersici
Alternaria alternata f. sp. lycopersici
- Asc
Alternaria stem canker
- HST
host-selective toxin 相似文献
13.
Total phenolic content in eight diverse wheat lines showed that PF-70354 YACO'S' had the highest (802.90 ± 1.35 μg g−1 fresh weight) and Agra Local possessed the lowest amount (684.72 ± 5.28 μg g−1 fresh weight). However, for further experiments two lines namely, ACC-8226 and MP-845, with contrasting disease scores under field trials were assessed. Pre-infectional levels of total phenolics and peroxidase activity were higher in ACC-8226 than in MP-845. Furthermore, the amount of phenolics and peroxidase activity in each case increased after inoculation. The post-infectional levels of phenolics and peroxidase were again higher in ACC-8226 than in MP-845. The peroxidase activity decreased with age in both the varieties, with very little peroxidase activity after 35th day. However, the amount of phenolics started to decrease with the progress of disease and age in MP-845, whereas in ACC-8226 an elevated level of it was maintained. Our findings not only support that ACC-8226 is the resistant and MP-845 is the susceptible variety but also provide important biochemical parameters for plant breeders to authentically identify potential breeding material and plan effective breeding strategies using these tools. 相似文献
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Early blight disease, caused by Alternaria solani Sorauer, is a serious disease of potato foliage and tubers that occurs in most potato‐growing regions world‐wide. Developing new potato cultivars with resistance to early blight may reduce losses in the field and in storage, and lessen the need for fungicide applications. A total of 280 clones, derived from 72 maternal half‐sib families from a diploid random‐mated hybrid population of Solarium phureja×Solarium stenotomum were examined for resistance to early blight. The clones that were evaluated in a replicated field trial for 2 years in Pennsylvania, USA, had similar early blight intensity both years. Significant differences were found among families, within families and for the interaction of years × within families. Broad‐sense heritability for resistance, measured as area under the disease progress curve (AUDPC), was estimated as 0.73, with a 95% confidence interval of 0.65‐0.78, and narrow‐sense heritability was estimated as 0.61 ± 0.29 (P = 0.05). The correlation of AUDPC for early blight between years was 0.57 (P < 0.0001). These results suggest that this diploid population is worthy of use in breeding for early blight resistance. 相似文献
16.
Fungal isolations and fungicide efficacy trials were carried out to determine the possible causes of discoloration in oat groats and potential control measures. Alternaria species and Microdochium nivale were isolated from field samples, and Fusarium poae was found in glasshouse tests. Symptoms could be induced reliably in the field through the use of a mist irrigation system. The cultivar ‘Gerald’ was most resistant followed by ‘Jalna’. Cultivar ‘Image’ was most severely affected by discoloration and ‘Millennium’ was of intermediate susceptibility. None of the 28 fungicide‐timing combinations used in the field trials affected the occurrence of discoloured groats. It was concluded that the best strategy for minimizing risk of discoloured groats would be screening new cultivars or breeding material in mist‐irrigated field trials for genetically based resistance. 相似文献
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杏贮藏过程中主要致病菌的分离与鉴定 总被引:1,自引:0,他引:1
为有效控制杏果采后贮藏中的主要致病菌,对贮藏中腐烂小白杏果实上的病菌进行了分离与鉴定。分离并筛选得到了3种主要霉菌,经过形态结构鉴定和显微镜观察,确定为粉红单端孢霉(Trichothecium roseum)、链格孢霉(Alternaria alternata)和天门冬拟茎点霉(Phomopsis asparagi)。经过回接发现,该3种霉菌能使健康杏果致病,且病状与自然发病一致,从这些病斑中又分离得到了相同的霉菌,从而确定该3种霉菌为小白杏采后的主要致病菌。 相似文献
19.
烟草赤星病菌遗传多样性ISSR和RAPD标记比较分析 总被引:1,自引:1,他引:1
对分离出的链格孢菌株用ISSR和RAPD分子标记技术分析研究其遗传多样性,比较2种分子生物学方法在链格孢遗传分析中的优劣,为研究烟草赤星病菌遗传多样性及烟草抗病品种的培育奠定基础。采用ISSR和RAPD分子标记方法对来自不同地区的28份烟草赤星病菌进行遗传多样性分析,筛选出10个ISSR引物和10个RAPD引物;ISSR扩增出多态性条带112条,多态性条带比率为86.82%,菌株间相似性系数为0.53~0.97;RAPD引物扩增出多态性条带70条,多态性条带比率为81.39%,菌株间相似性系数为0.57~0.94。用SPSS 17.0 软件对2种标记遗传距离进行相关性分析,发现2种分子标记结果呈显著正相关,表明2种分子标记方法都适合于烟草赤星病菌遗传多样性研究,ISSR是一种多态性优于RAPD的标记技术。根据2种标记的结果,利用NTSYS软件按UPGMA方法进行聚类分析,发现烟草赤星病菌遗传多样性与地理差异没有显著相关性。 相似文献
20.
A study was conducted to understand the genetics of rate limiting disease reaction to Alternaria solani in tomato. The results from χ2 analysis and Castle Wright estimation revealed that resistance is an oligogenic character controlled by two to few genes.
In general, the results for predominant gene effects reveal that both additive and non-additive effects are involved in the
inheritance of early blight resistance. The results for predominant gene effects obtained for various crosses studied are
discussed along with their implications for improvement of this trait. 相似文献