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1.
以南方地区的蓝莓品种为主要对象,利用SSR标记分析现有品种种质的遗传多样性。设计合成了56对蓝莓SSR分子标记引物,进行扩增和多态性引物筛选,将多态性好的引物用于66份蓝莓不同类型种质的遗传多样性分析。结果表明,56对引物均能扩增出预期大小条带,其中条带清晰多态性较好的引物为25对,占比引物数的44.64%,多数引物扩增的位点数在5~7个之间。25对引物在66份蓝莓供试种质中检测多态性,共检测到165个等位变异,平均每个位点有6.6个等位变异,PIC值变幅为0.656~0.947,平均值为0.777。多态性最好的引物Vc26可以检测到15个等位基因数目。北方高丛、南方高丛和兔眼类型66份蓝莓种质的遗传相似系数位于0.60~0.96之间,品种间遗传差异较丰富。利用UPGMA聚类将3种类型种质进行分析,发现除了兔眼类型品种‘红粉佳人’外,其余明显分为3个类群,且同一类型的种质基本聚在一起。结合不同类型种质的系谱分析,发现分类与品种种质的遗传成分相似有一定的相关。研究利用SSR分子标记揭示了蓝莓不同类型种质的遗传多样性,对今后杂交育种亲本选择利用有一定借鉴意义。  相似文献   
2.
马铃薯镰刀菌干腐病研究进展及防控手段   总被引:1,自引:0,他引:1  
马铃薯是世界第四大粮食作物。马铃薯干腐病是一种重要的马铃薯收获后真菌病害,在我国各马铃薯产区内广泛发生,导致马铃薯块茎的商品薯率大幅下降,对马铃薯的产量造成严重经济损失。本文针对马铃薯干腐病的症状、发生与危害、病原菌种类以及综合防控手段进行综述,以期为病害的研究及防治提供参考。  相似文献   
3.
This study determined the effectiveness of copper sulfate (CuSO4) to inhibit fungal growth (caused by Saprolegnia spp.) on largemouth bass (LMB) eggs spawned on/in fiber mats in very high-alkalinity/-hardness waters; experiments also determined the toxicity of CuSO4 to LMB fry and juveniles. An untreated control and three CuSO4 concentrations (10, 20, and 40 mg/L) were tested under a flow-through scenario in the effectiveness experiment. Eggs were treated daily until hatching began. Fungal load at the time of hatch had a total area > 3.0 cm2 in the untreated controls, total area 1.0 to <2.0 cm2 in the 10 and 20 mg/L CuSO4 treatments, and total area > 1.0 cm2 in the 40 mg/L CuSO4 treatments. Fungus samples were identified as Saprolegnia australis. The 24-hr median lethal concentration (LC50) values on the LMB yolk-sac and swim-up fry were 32.0 and 4.6 mg/L CuSO4, respectively; the No Observed Effect Concentrations (NOEC) were 16.0 and 0.125 mg/L CuSO4, respectively. Juvenile LMB were extremely tolerant to CuSO4, and their 24-hr LC50 value was 185.5 mg/L; the NOEC was 64 mg/L. This study indicates that CuSO4 can be an important resource for hatcheries to control egg fungus, especially in high-alkalinity/-hardness waters.  相似文献   
4.
Since 2012, a new pathogenic syndrome has frequently been observed in many areas of kiwifruit cultivation in Italy. The main symptoms include an initial withering of the leaves followed by a total and sudden collapse of plants, mainly occurring during summer. The withered leaves fall and the main and secondary feeder roots appear rotten, sometimes showing a reddish-brown discoloration. The disease, that affects both the green and yellow-fleshed cultivars, has been called kiwifruit vine decline and is locally known as moria. The syndrome has been found consistently associated with soil waterlogging, which frequently occurs either after the traditional agronomical practice of irrigating orchards through surface irrigation or after very heavy rainfall. So far, the role played by bacteria in this syndrome has not been investigated. In the present study, Clostridium spp. were isolated from both rotten roots and soils obtained from Italian kiwifruit orchards affected by the syndrome, indicating for the first time that anaerobic bacteria are able to cause damage to woody crops. C. bifermentans and C. subterminale incited symptoms in kiwifruit in both in vivo and in vitro pathogenicity tests. Soil waterlogging seems to potentially favour colonization of kiwifruit roots by anaerobic bacteria, probably because saturation of the soil can facilitate proliferation and persistence of these bacteria during long periods of the vegetative growth of the crop. The occurrence of anaerobic bacteria does not exclude the possibility that other microorganisms can play additional/synergic role(s) in causing the kiwifruit vine decline.  相似文献   
5.
从连作苹果园健康苹果树根际土壤中筛选出1株对苹果连作障碍镰孢属病原菌具有较强拮抗作用的细菌XC1,该菌对尖孢镰孢菌的抑菌率最高,达到79.83%。根据其形态、生理生化特征和基于16S rDNA、gyrA基因的系统发育分析,鉴定该菌为贝莱斯芽孢杆菌(Bacillus velezensis)。目前菌株XC1已保藏于中国微生物菌种保藏管理委员会普通微生物中心,保藏号为CGMCC No.20057。苹果连作土盆栽试验表明,XC1菌肥处理能显著促进平邑甜茶(Malus hupehensis Rehd.)幼苗的生长,其株高、地径、鲜质量和干质量分别比对照提高了54.8%、34.8%、121.1%和96.0%;显著提高连作土壤中的蔗糖酶、脲酶、过氧化氢酶和中性磷酸酶的活性,分别为对照的1.57倍、2.71倍、1.21倍和1.79倍;显著减少连作土壤中真菌的数量,提高细菌和放线菌的数量,且对尖孢镰孢菌(Fusarium oxysporum)有很好的抑制作用,尖孢镰孢菌的基因拷贝数比对照降低了76.4%。这说明贝莱斯芽孢杆菌抑制连作障碍病原菌的效果明显,可改善土壤环境,促进平邑甜茶幼苗的生长,能在一定程度上减轻苹果连作障碍。  相似文献   
6.
车轮虫病是鱼类重要的常见纤毛虫病。近年来,对传统化学药物耐药的车轮虫和小车轮虫越来越多。本文介绍了复方中草药联合苯扎溴铵治疗河鲀、黄颡鱼和草鱼车轮虫病的典型案例,以期为类似病例治疗提供参考。  相似文献   
7.
Downy mildew (Plasmopara viticola) is one of the most important diseases in grape-growing areas worldwide, including Brazil. To examine pathogen population biology and structure, P. viticola was sampled during the 2015/16 growing season from 516 lesions on nine grape cultivars in 11 locations in subtropical areas of São Paulo State, Brazil. For identification of cryptic species, a subsample of 130 isolates was subjected to cleaved amplified polymorphic sequence (CAPS) analysis, and for 91 of these isolates the ITS1 region was sequenced. These analyses suggest that the population of P. viticola in São Paulo State consists of a single cryptic species, P. viticola clade aestivalis. Seven microsatellite markers were used to determine the genetic structure of all 516 P. viticola isolates, identifying 23 alleles and 55 multilocus genotypes (MLGs). Among these MLGs, 34.5% were clonal and represented 93% of the isolates sampled. Four dominant genotypes were present in at least five different locations, corresponding to 65.7% of the isolates sampled. Genotypic diversity (Ĝ = 0.21–0.89) and clonal fraction (0.58–0.96) varied among locations (populations). Most populations showed significant deviation from Hardy–Weinberg expectations; in addition, excess of heterozygosity was verified for many loci. However, principal coordinate analysis revealed no clusters among locations and no significant isolation by distance was found, suggesting high levels of migration. The results indicate that downy mildew epidemics result from multiple clonal infections caused by a few genotypes of P. viticola, and reproduction of P. viticola in São Paulo State is predominantly asexual.  相似文献   
8.
张嘉城  方香玲  南志标 《草业科学》2021,38(8):1513-1524
镰刀菌(Fusarium spp.)是多种重要农作物的病原体,不仅可造成农作物产量和品质的严重损失还可在离体培养条件下或植物寄主体内产生一系列被称为镰刀菌毒素的次生代谢产物。这些毒素一方面作为致病因子与镰刀菌对宿主植物的致病力密切相关,另一方面可导致家畜生产性能下降和相关病症的出现,进而影响农业生态系统并对人类健康造成威胁。鉴于镰刀菌毒素对农作物生产的影响及其对家畜和人类的毒性作用,目前已有较多关于镰刀菌侵染粮食作物后产生毒素种类的研究,但关于镰刀菌侵染豆科牧草后产生的毒素种类以及毒素在镰刀菌对豆科牧草致病力方面作用的研究则较少。本文对引起主要粮食和饲料作物病害的常见镰刀菌物种产生的主要毒素,以及这些毒素对植物、家畜和人类的危害进行了综述,并对豆科牧草中镰刀菌毒素的研究前景及意义进行了展望。  相似文献   
9.
Shrimp cultivation has been faced with huge losses in productivity caused by infectious shrimp pathogenic vibrios, especially Vibrio parahaemolyticus that causes acute hepatopancreatic necrosis disease (AHPND). Hence, purple nonsulphur bacteria (PNSB) were isolated from shrimp ponds for investigating their abilities to control shrimp pathogenic Vibrio spp. and their use as probiotics for sustainable shrimp cultivation. Based on their probiotic properties, strains S3W10 and SS15 were selected because of their strong abilities to produce amylase, gelatinase and vitamin B12. However, only three PNSB strains (SS15, TKW17 and STW181) strongly inhibited V. harveyi_KSAAHRC and V. vulnificus_KSAAHRC including V. parahaemolyticusAHPND strains by secreting antivibrio compounds. Four selected PNSB also grew in the presence of pancreatic enzymes, and they were identified as Rhodobacter sphaeroides for strains S3W10, SS15 and TKW17 and Afifella marina for strain STW181. The effects of a mixed culture were also investigated as follows: T1 (S3W10 + SS15), T2 (S3W10 + TKW17) and T3 (S3W10 + STW181) on postlarval white shrimp (Litopenaeus vannamei) for 60 days by comparison with a control. All three probiotic PNSB sets significantly improved the digestive enzyme activities and shrimp growth with their proliferation in shrimp gastrointestinal tract although the shrimp survival was not significantly different. They also significantly reduced the cumulative mortality of shrimp exposed to a virulent AHPND strain (V. parahaemolyticusSR2). This is the first to conclude that selected probiotic PNSB strains have great potential to be used for shrimp cultivation to control vibrios including AHPND strains.  相似文献   
10.
前期蛋白质组学研究发现尖孢镰刀菌古巴专化型4号生理小种(Foc4)中的过氧化氢酶1(cat1)基因受到巴西蕉诱导上调表达,为研究cat1基因在Foc4侵染香蕉过程中的作用,利用同源重组方法敲除Foc4的cat1基因,并对获得的敲除突变体开展表型分析和致病性测定。结果表明:cat1基因缺失对Foc4的菌丝、孢子形态、菌落生长、抗渗透压胁迫和细胞壁选择性压力等没有影响;但引起菌株抵抗外源氧胁迫、细胞壁穿透能力、纤维素利用能力减弱和对巴西蕉的致病性减弱。显示cat1基因的产物通过清除香蕉分泌的活性氧在Foc4对香蕉的致病过程中起作用,并参与病原菌对寄主纤维素成分的代谢。此结果为进一步深入研究香蕉枯萎病菌的致病机理奠定基础。  相似文献   
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