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71.
植物病原效应蛋白功能研究方法 总被引:1,自引:0,他引:1
植株病原会分泌一些与植物相互作用的效应蛋白,这些蛋白在病原菌与寄主植物互作过程中起着重要作用。结合几种细菌、真菌分泌的效应蛋白研究进展,介绍了用于病原菌效应蛋白研究的试验方法及其独特之处,包括图位克隆、异源表达分析等,提出研究一个单一效应蛋白需要多种分析方法。 相似文献
72.
Biofumigation, as originally defined, is the use, in agriculture, of the toxicity of Brassica crop residues to control soilborne plant pathogens. This toxicity is specifically attributed to the release of toxic isothiocyanates, through the hydrolysis of glucosinolates present in the crop residues. This technique is considered a possible alternative to the use of pesticides, but field studies have generated conflicting data concerning the efficacy of biofumigation at field scale, limiting the use of this technique. Analytical studies based on a systematic approach involving evaluation of the potential effects of isothiocyanates can be used to address this problem in a rigorous manner. However, many recent studies have indicated that the mechanisms underlying biofumigation are much more complex than a simple toxic effect of residues. In this review, we dissect and discuss the problems encountered when trying to understand the variability in biofumigation efficacy and propose an integrative epidemiological approach to overcome these problems. This approach involves separating the effects of the different parameters of the system, such as the effects of different management phases of the biofumigant crop (i.e. the period of biofumigant crop growth and the phase during which crop residues are pulverised and incorporated into the soil) on the epidemiological mechanisms driving the development of an epidemic (density of primary inoculum and dynamics of disease progression). Finally, we propose new avenues of research into biofumigation in which the use of epidemiological tools and methods may improve our understanding of the factors underlying variation in the efficacy of biofumigant crops. 相似文献
73.
云南省荞麦叶枯病病原菌鉴定及其生物学特性 总被引:1,自引:0,他引:1
为明确云南省荞麦叶枯病病原菌种类,采用常规组织分离法获得病原菌菌株LW2015.3,通过形态学特征及分子生物学技术对菌株LW2015.3进行鉴定,并研究其生物学特性。结果表明,荞麦叶枯病病原菌的分生孢子呈倒棍棒状或倒梨状,褐色,具3~8个横隔膜,0~4个纵斜隔膜,大小为16.5~45.0μm×5.0~13.5μm,厚垣孢子呈球形,直径为6.0~12.0μm;该菌株ITS序列系统发育进化分析结果表明,菌株LW2015.3与链格孢Alternaria alternata(登录号:MG195995.1)的同源性为100%,结合形态学特征与分子鉴定结果确定云南省荞麦叶枯病病原菌为链格孢A. alternata(登录号:KT362732.1)。该病原菌菌丝生长适宜温度为20~30℃,25℃为最适温度;当p H为6~9时菌丝生长速率加快,pH 7最适菌丝生长;PDA培养基和PSA培养基最适菌丝生长;该病原菌对以麦芽糖为碳源和以硝酸钠为氮源时的利用率最高;菌丝的致死温度为50℃,10 min;不同光照条件对菌丝生长的影响有显著差异,连续光照最有利于菌丝生长。 相似文献
74.
为明确贵州省白及叶褐斑病病原菌及其生物学特性,采用组织分离法和离体接种法分别对其病原菌进行分离和致病性测定,利用形态学及ITS、EF-1α、β-tubulin基因序列分析对病原菌的分类进行鉴定,并对病原菌的生物学特性进行研究。结果表明:分离得到的白及叶褐斑病病原菌菌株编号为HGUP_(17)355;该菌菌丝白色、羊绒状,菌落中心隆起呈淡黄色、背面枫叶红色,大型分生孢子窄镰刀形,3~8个分隔,未见厚垣孢子,小型分生孢子卵圆形,1~2个分隔;在以ITS、EF-1α、β-tubulin三个基因序列构建的系统发育树中,菌株HGUP_(17)355与燕麦镰刀菌Fusarium avenaceum聚于一支,且支持率达100%,结合形态特征与分子生物学将其鉴定为燕麦镰刀菌。该菌菌丝最适生长温度为20℃,最适生长pH为6,在燕麦片琼脂培养基上生长最快,以麦芽糖为碳源、以L-苯丙氨酸为氮源时利用率最高,致死温度为45℃,对光照不敏感。 相似文献
75.
西北地区马铃薯疮痂病病原菌鉴定及其生物学特性 总被引:1,自引:0,他引:1
为明确西北地区马铃薯疮痂病病原菌的种类和生物学特性,分别采用常规组织分离法和土壤混悬液分离法从宁夏、陕西和甘肃3个省区采集的29份疮痂病发病薯块和8份发病地块土壤中进行病原菌分离,并利用形态特征、生理生化特性和16S rDNA序列分析对病原菌进行鉴定。结果表明,从发病薯块和发病土壤中共分离到50株链霉菌Streptomyces spp.,通过回接法验证获得6株马铃薯疮痂病致病菌株。6株致病菌株的培养特性和形态特征差别较大;其中菌株G4-1、G9和SYN13不能以果糖和木糖为单一碳源,菌株SYNT3不能以棉子糖为单一碳源;除菌株NLG4-1外,其余5株菌株均能在络氨酸琼脂培养基上产生黑色素。经16S rDNA序列分析,菌株G4-1、G9与疮痂病链霉菌S. scabiei的相似率分别达99.47%和99.34%,菌株NLG4-1、SYNT3与S. enissocaesilis的相似率分别达97.90%和98.18%,菌株GBH2与加利利链霉菌S. galilaeus的相似率达99.93%,菌株SYN13与S. turgidiscabies的相似率达97.56%,表明西北地区马铃薯疮痂病病原菌至少存在4个种。 相似文献
76.
经过数年调查发现,安徽省境内的杉木上斑痣盘菌科病原菌共4属5种,它们是杉生小双梭孢盘菌Bifusella cunnighamiicola Korf & Ogimi,皮特拉克散斑壳Lophodermium petrakii Durrian,毁坏舟皮盘菌Ploioderma destruens Y.R.Lin et Hou,汉德尔舟皮盘菌P.handelii (Petrak) Y.R.Lin et Hou和杉木小鞋孢盘菌Soleella cunnighamiae Shao et Zinno.文中描述了各种菌的主要特征,并编制了种的检索表以资识别.对于长期以来杉木落针病病原鉴定中所存在的同物异名问题也进行了商榷. 相似文献
77.
78.
T. D. Khanh M. I. Chung T. D. Xuan S. Tawata 《Journal of Agronomy and Crop Science》2005,191(3):172-184
Crop allelopathy may be useful to minimize serious problems in the present agricultural production such as environmental pollution, unsafe products, human health concerns, depletion of crop diversity, soil sickness and reduction of crop productivity. Several crops including alfalfa, buckwheat, maize, rice, rye, sorghum, sunflower, wheat, etc. are affected either by their own toxicity or phytotoxin exudates when their residues decompose in the soil, that show strong suppression on weed emergences. Allelopathic crops when used as cover crop, mulch, smother crops, green manures, or grown in rotational sequences are helpful in reducing noxious weeds and plant pathogen, improve soil quality and crop yield. Those crop plants, particularly the legumes, incorporated at 1–2 tons ha−1 (alfalfa, buckwheat, rice by-products), which can give weed reduction and increase of rice yield by 70 and 20 %, respectively, are suggested for use as natural herbicides. Allelochemicals from allelopathic crops may aid in the development of biological herbicides and pesticides. Cultivating a system with allelopathic crops plays an important role in the establishment of sustainable agriculture. The introduction of allelopathic traits from accessions with strong allelopathic potential to the target crops will enhance the efficacy of crop allelopathy in future agricultural production. 相似文献
79.
Clubroot, caused by the obligate biotroph Plasmodiophora brassicae Woron., is one of the most damaging diseases of Brassica crops in the world. Because the pathogen can infect all the Brassicaceae, including Arabidopsis thaliana, possible advantages have been found by identifying sources of resistance to P. brassicae in this model plant. Fifty‐seven ecotypes of A. thaliana, including the INRA Arabidopsis core collection, were assessed for resistance to clubroot disease. Ecotypes Burren (Bur‐0), Tsu (Tsu‐0) and Kaunas (Kn − 0) were identified as partially resistant to P. brassicae isolates eH and/or Ms6. Fifteen Arabidopsis mutant lines known for certain physiological processes potentially involved in the host‐pathogen interaction were evaluated for their resistance/susceptibility to P. brassicae. Mutant axr3‐1 appeared to be less susceptible than the wild type Columbia, supporting the hypothesis of the involvement of the auxin pathway in the development of clubs. 相似文献
80.
荸荠秆枯菌(CylindrosporiumeleocharidisLentz)生长发育温度8~35℃,最适于菌丝体生长、产孢的温度为25~30℃,20~28℃孢子萌芽率较高。致死温度46℃10min。病菌在RH75%以上生长良好,其产孢量则随湿度升高而增加。RH81%以上孢子可以发芽,饱和湿度再加水滴时发芽率最高。PH4.50~9.13均较适于病菌生长,产孢量则以在PH6.94~9.13时较多,PH4.20~7.60较适宜孢子发芽。连续黑光灯照射有促进孢子形成和菌丝体旺盛生长的作用。此菌对多种单糖、双糖和多糖都能利用,以蜜二糖、麦芽糖、葡萄糖等产孢量较多。适于病菌生长和产孢的氮源是甘氨酸、DL-α-氨基丙酸和氨基乙酸,脲素较差。 相似文献