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1.
江汉平原水稻白叶枯病菌致病型的变异研究   总被引:2,自引:0,他引:2  
 从水稻和稻田周围常见的10种杂草上来集梨孢属菌株,以涂沫法作交互接种,分离自牛筋草、狗尾草、法氏狗尾草、李氏禾、罗氏草、铺地黍、稗和马唐的梨孢菌与分离自水稻的梨孢菌可以交叉侵染其寄主,茭白和碎米莎草梨孢菌与稻梨孢菌不能交互侵染;自然诱发条件下来自牛筋草和狗尾草的梨孢菌与来自水稻的梨孢菌对其寄主同样发生交叉侵染。直接从杂草寄主上分离的梨孢菌株对水稻的致病性较弱,接种到水稻感病品种发病后再分离的菌株,对水稻致病性增强,对原寄主的致病性基本保持不变。推断稻瘟病区稻田周围牛筋草、狗尾草、法氏狗尾草、李氏禾、罗氏草、铺地黍、稗和马唐等杂草寄主上的梨孢菌在稻瘟病菌的积累和传播方面具有作用。  相似文献   
2.
棉花黄萎病菌致病型的AFLP分析   总被引:16,自引:0,他引:16  
 选用41个棉花黄萎病菌(Verticillium dahliae)代表菌系,在温室条件下,对4个棉花品种鄂荆1号(感)、中棉所12(耐)、文-5(抗)和唐棉2号(抗)进行致病性测定,结果可将供试菌系分为落叶型与非落叶型2类。选取8对AFLP引物PCR扩增的结果中,统计带型稳定、清晰且有多态性的条带,共169条作系统聚类分析,将上述菌系分为2大类,第一类为非落叶型菌系,包括10个非落叶型菌系和1个过渡菌系;第二类为30个落叶型菌系。根据聚类分析建立树状图,发现菌系与地理来源存在一定的相关性,而依据菌系致病力强弱分类则相关关系不大。选用25对EcoRⅠ和MseⅠ引物组合,对供试的41个V.dahliae进行AFLP扩增,筛选到2对引物E64(GACTGCGTACCAATTCGAC)、M53(GATGAGTCCTGAGTAACCG)和E49(GACTGCGTACCAATTCCAG)、M65(GAT-GAGTCCTGAGTAAGAG),能分别扩增出433bp和110bp2条仅为V.dahliae非落叶型菌系独有的特异片段,可将落叶型与非落叶型菌系分开,这2条特异片段被命名为EM433和EM110。  相似文献   
3.
The pathogenicity of 36 isolates of Xanthomonas oryzae pv. oryzae (Xoo), which were collected from japonica rice varieties in the Yunnan Plateau, China, was evaluated. It was evaluated on 29 rice varieties including a set of seven varieties to identify pathogenicity, i.e., Haonuoyang, TN1, Kogyoku, Zhenzhu'ai, IR26, Nanjing 33, and Kinmaze, which may be considered as a set of differential varieties for Xoo races from Yunnan japonica rice. The efficiency of the seven varieties was further confirmed. The results showed reversible and specific interactions between isolates and varieties. The isolates were classified into nine pathotypes from pathotyp Ⅰ to Ⅸ according to their pathogenic reactions on the seven rice varieties. The pathotype V was the epidemic, whereas pathogen Ⅶ was the most pathogenic. Most japonica varieties grown in the Yunnan Plateau were susceptible to Xoo. The rice lines IRBB21 (Xa-21), Zhachanglong (Xa-22,, Xa- 24,), and IR1545-339 (xa-5), which were resistant to all the isolates tested, can be used as donors of resistant genes for bacterial blight in japonica rice breeding in the Yunnan Plateau.  相似文献   
4.
水稻抗性基因Pi对福建省稻瘟病菌优势菌群的抗性分析   总被引:1,自引:0,他引:1  
【目的】抗病品种的合理利用和布局是实现水稻抗瘟持久化的关键因子之一。为明确水稻24个抗性基因在福建省的抗病性及其应用前景,【方法】首先分别采用全国稻瘟病菌生理小种鉴别品种和CO39近等基因系来鉴定2012-2015年间从福建省各稻区种植的普感品种丽江新团黑谷上采集的347株稻瘟病菌单孢菌株的生理小种类型和致病型,再测定24个抗性基因对福建省稻瘟病菌的抗性。【结果】根据全国稻瘟病菌生理小种鉴别品种对菌株的抗感反应,可将供试稻瘟病菌的生理小种划分为6个群36个生理小种,其中ZA、ZB和ZC为主要种群,ZC15、ZD7和ZB15为优势生理小种。根据CO39近等基因系的接种结果,将供试稻瘟病菌划分为17个致病类型,其中I34.1为优势致病型。供试的24个抗性基因对347株福建省稻瘟病菌菌株的抗性频率不同,抗谱为9.80%~89.91%。其中,Pi-k~m、Pi-7(t)、Pi-9(t)、Pi-k~p、Pi-k、Pi-k~h、Pi-z~5和Pi-ta(1)等8个抗性基因的抗病性较强,抗谱均高于70.00%。【结论】说明这8个抗性基因在福建省具有较好的应用前景,育种时可以考虑联合利用这些抗性基因。同时,实验结果表明,这8个抗性基因对主要生理小种的抗谱和主要致病型的抗谱均值高于69.00%,与其对所有测试菌株的抗谱吻合。说明利用稻瘟病菌的优势种群或优势致病型来鉴定水稻品种的抗病性是可靠的。  相似文献   
5.
The application of disinfectants through drip irrigation could be a feasible practice against verticillium wilt (Verticillium dahliae) of olive. OX-VIRIN (activated peroxide) and OX-AGUA AL25 (quaternary ammonium compounds) are two disinfectants that have shown efficacy against V. dahliae in irrigation water and potential for reducing the disease in young olive plants. In this work, various post-planting application strategies incorporating OX-VIRIN (once a month, or twice a month on alternate or successive weeks) or OX-AGUA AL25 (once a month, or twice a month on alternate weeks) were assessed for their effect on V. dahliae in soil, disease in olive trees, and olive yield, in a 2-year pot-experiment under natural environmental conditions. The disinfectants were injected via metering pumps into a drip irrigation system that irrigated olive trees planted in V. dahliae-inoculated soil. All the application strategies significantly reduced the total inoculum density in soil compared to controls with no disinfectants and noninoculated soil. The microsclerotia density was also significantly reduced in disinfested soils by 73.6–86.8%, depending on the strategy. The symptoms and infection incidence were always lower in treatments subjected to disinfestation. The treatment with OX-AGUA AL25 applied twice a month on alternate weeks most reduced the symptoms (by 53.0%) and colonization index (by 70.8%) with respect to untreated water control. This soil disinfestation also significantly strengthened the symptom remission. Tree growth and production were negatively affected by soil inoculation (reduced by 45.6% and 88.7%, respectively), but not so by disinfectants, which even relieved the reduction in inoculated soils, especially when OX-AGUA AL25 was applied.  相似文献   
6.
福建省花生青枯病菌致病型及生物型的测定   总被引:3,自引:0,他引:3  
从采自福建 10个县 (市 )花生青枯病株标样中 ,分离出花生青枯病原菌菌株 72个 .对其中有代表性的15个菌株进行致病型测定 ,2 9个菌株进行生理生化测定 .供试菌株在鉴别寄主上的致病反应表明 ,福建省的花生青枯病菌属于致病型 和 ,其中以致病型 为主 .对乳糖、麦芽糖、纤维二糖、甘露醇、山梨醇和甜醇的利用能力以及对硝酸盐的还原作用表明 ,除晋江菌株的硝酸盐还原作用不产生气泡 ,定为生物型 - 4 ,同安菌株由于不利用三糖而利用三醇定为生物型 外 ,供测的其他菌株都属于生物型  相似文献   
7.
Bacterial wilt caused by Ralstonia solanacearum is a destructive disease for many crops. The aim of this study was to investigate the phylogenetic relationships and genetic structure of an R. solanacearum population from diverse origins in Taiwan. All 58 tested isolates belonged to phylotype I, except the two biovar 2 isolates from potato. These belonged to phylotype IIB sequevar 1 and were identical to known potato brown rot strains, which were probably introduced. Phylotype I isolates were grouped into 10 sequevars. Sequevar 15 was predominant (34 out of 56 isolates). Its distribution covered the whole island and it was largely associated with solanaceous crops such as tomato, and with tomato field soil. A total of 14 haplotypes were identified based on a partial endoglucanase gene sequence. Parsimony network analysis revealed that haplotype A was the oldest haplotype in the local population. It encompassed all but one of the sequevar 15 isolates. Large variation in virulence on tomato was observed among the 58 isolates, and seven pathotypes were identified. Significant genetic differentiation was detected among pathotypes. Moreover, genetic differentiation was detected between biovar 3 and biovar 4 subgroups and between the strains associated with solanaceous and non‐solanaceous species, but none was detected between strains from different geographic origins. The results suggest that the phylotype I population in Taiwan is homogeneous, while mutation and local adaptation to specific ecological niches keep shaping the population.  相似文献   
8.
应用聚合酶链式反应鉴定新疆棉花落叶型黄萎病菌   总被引:9,自引:0,他引:9  
张莉  段维军  李国英  宋蓓 《植物检疫》2004,18(5):266-268
用一对棉花落叶型黄萎病菌的特异性引物D1和D2进行PCR扩增,对于落叶型黄萎病菌,该对引物可特异性地扩增产生一段550bp的产物,而非落叶型黄萎病菌则不能被扩增.供试的35个新疆黄萎菌系中,有3个菌系扩增出550bp大小的落叶型黄萎病菌特异性片段,表明目前新疆已存在落叶型黄萎病菌,用此技术可快速、准确地检疫和鉴定落叶型黄萎病菌.  相似文献   
9.
Host-specific AAL-toxins and mycotoxin fumonisins are structurally related and were originally isolated from the tomato pathotype of Alternaria alternata and from Fusarium verticillioides, respectively. Previous reports on the production of fumonisin derivatives by the tomato pathotype suggested a possible involvement in the pathogenicity of the pathogen. Here, we have evaluated the role of fumonisin in A. alternata–tomato interactions. The results indicate that highly pathogenic isolates of A. alternata tomato pathotype produce AAL-toxin as the sole toxin, strongly implicating it as a pathogenicity factor. The related compound, fumonisin, is also toxigenic and has infection-inducing activity on susceptible tomato plants.  相似文献   
10.
【目的】分析中国不同稻区白叶枯病菌(Xanthomonas oryzae pv. oryzae)致病型,建立近等基因系鉴别寄主,为白叶枯病菌群体结构田间实时准确监测、抗性品种应用以及抗病育种提供科学依据。【方法】利用中国鉴别寄主、IR24以及15个抗白叶枯病近等基因系等共21个鉴别寄主,采用人工剪叶接种方法,对2018—2021年采自广东、广西、海南、浙江、湖南、辽宁、云南共7个省(自治区)的954个单菌落分离菌株进行致病型测定,探明白叶枯病菌致病型种类、分布及毒性分化;基于测试菌株与15个近等基因系及IR24的抗感互作,应用主成分因子分析法,开展近等基因系与病菌互作的变量因子分析,构建白叶枯病菌致病型近等基因系鉴别寄主;基于抗病基因与测试菌株的抗感反应,分析抗病基因聚合效应。【结果】954个测试菌株在中国鉴别寄主上鉴定出11个致病型,包括SRRRR(I)、SSRRR(Ⅱ)、SSSRR(Ⅲ)、SSSSR(Ⅳ)、SSRRS(V)、SRSRR(Ⅵ)、SSSSS(Ⅸ)、SSSRS(新型1)、SRSRS(新型2)、SRSSS(新型3)以及SSRSS(新型4),占测试菌株的比率分别为11.53%、4.82%、7.34%、6.18%、7.23%、1.05%、59.96%、1.57%、0.10%、0.10%、0.10%。Ⅸ型菌作为致病性最广的强毒菌系已上升为华南和长江中下游湖南和浙江稻区的优势致病型,西南稻区的云南以Ⅳ型菌为主,东北稻区的辽宁以I型菌为主。15个水稻抗白叶枯病近等基因系对954个菌株的抗感性分析结果表明,测试的15个近等基因系可分为5种类型,第Ⅰ类为高感基因系,包括IRBB1、IRBB2、IRBB10、IRBB11、IRBB4;第Ⅱ类为中感基因系,包括IRBB3、IRBB203、IRBB14;第Ⅲ类为中抗基因系,包括IRBB8、IRBB13;第Ⅳ类为抗病基因系,有IRBB21;第Ⅴ类为高抗基因系,包括IRBB5、IRBB7、CBB23、GDBB23;测试菌株中,出现可侵染抗病基因xa5的有42个、Xa7的有34个、Xa23的有31个。对以白叶枯病近等基因系为主的16个品种(系)与954个菌株组成的抗感互作变量数据矩阵进行因子分析,以解释总变量>85.0%为界,提取出8个主成分因子,组建了以近等基因系为主的10个品种(系)组成白叶枯病菌近等基因系鉴别寄主,按其对变量方差贡献大小,这些寄主分别为IRBB10(Xa10)、IRBB4(Xa4)、GDBB23(Xa23)、IRBB5(xa5)、IRBB7(Xa7)、IRBB21(Xa21)、IR24(Xa18)、IRBB13(xa13)、IRBB3(Xa3)、金刚30;新鉴别寄主可将954个测试菌株划分为55个致病型,对测试稻区的白叶枯病菌菌株表现出较好的鉴别力。基因聚合联合抗性分析表明,不同抗病基因聚合对病菌的抗性频率有一定的提升,不同抗病基因对测试菌株的抗性具有一定的互补性。【结论】监测稻区的白叶枯病菌系趋向多样化,毒性分化明显,强毒菌系Ⅸ型菌在部分稻区已上升为优势致病型,侵染xa5、Xa7Xa23等广谱抗性基因的菌株有上升趋势;抗病基因聚合可拓宽品种对病原菌系的抗性谱,是培育广谱抗性品种的有效途径;近等基因系鉴别寄主的建立与应用可为白叶枯病发生流行的精准监测以及田间实时预警提供技术支撑。  相似文献   
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