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41.
食用菌企业能否通过龙头企业进行并购重组,调整产能过剩,解决产业集中度低,技术水平低和科研创新能力低的问题,从而激发市场的竞争活力,提升食用菌产业的规模结构,提高企业管理效率,迅速实现食用菌产业的转型升级。为此,通过分析食用菌市场的发展现状,龙头企业的运行模式,企业并购的现实因素等方面来总结龙头企业进行并购的积极影响,以期能为食用菌产业的技术进步和规模扩大提出建设性的意见,促进食用菌产业的高质量发展。  相似文献   
42.
为探讨贺兰山野生大型真菌孢子的多样性,2012-2016年在内蒙古贺兰山南寺和哈拉乌沟两地进行取样,每个样地分别由5人从沟谷入口处进行拉网式调查,共获得4 000余份样品,经过微观形态观察和基因ITS序列比对,鉴定出8目25科69属189种大型真菌,主要对其孢子形态特征、表面特征及长宽比进行分析,得到如下结论:质量性状上,孢子形态特征和表面特征相互独立;数量性状上,大小孢子长宽比、孢子极端比和平均比均具有一致性和关联性,显示孢子数量特征的稳定性;菌种间孢子质量性状和数量性状具有很强的多样性;按照孢子多样性低、中、高分类,贺兰山野生大型真菌物种数分别为152种、26种和11种;孢子多样性分类为大型真菌鉴别、分类提供了基本依据。  相似文献   
43.
寄藏真菌可侵染大豆种子,降低种子的萌芽及活力,影响种子的品质和商品等级。为探讨不同接种方法对寄藏真菌致病性的影响,在实验室条件下比较了种子接种法和植株接种法(切顶端接种法、伤口接种法、切茎接种法和下胚轴接种法)对寄藏真菌致病性的影响。结果表明:各方法中寄藏真菌均对大豆产生致病性,并能显著区分寄藏真菌间致病性差异。其中切顶端接种法相比其他3种植物接种方法更简单有效而准确,而种子接种法更适合在室内进行,且周期短,相比植株接种法方便快捷。  相似文献   
44.
The significance of arbuscular mycorrhizal fungi (AMF) in soil remediation has been widely recognized because of their ability to promote plant growth and increase phytoremediation efficiency in heavy metal (HM) polluted soils by improving plant nutrient absorption and by influencing the fate of the metals in the plant and soil. However, the symbiotic functions of AMF in remediation of polluted soils depend on plant–fungus–soil combinations and are greatly influenced by environmental conditions. To better understand the adaptation of plants and the related mycorrhizae to extreme environmental conditions, AMF colonization, spore density and community structure were analyzed in roots or rhizosphere soils of Robinia pseudoacacia. Mycorrhization was compared between uncontaminated soil and heavy metal contaminated soil from a lead–zinc mining region of northwest China. Samples were analyzed by restriction fragment length polymorphism (RFLP) screening with AMF-specific primers (NS31 and AM1), and sequencing of rRNA small subunit (SSU). The phylogenetic analysis revealed 28 AMF group types, including six AMF families: Glomeraceae, Claroideoglomeraceae, Diversisporaceae, Acaulosporaceae, Pacisporaceae, and Gigasporaceae. Of all AMF group types, six (21%) were detected based on spore samples alone, four (14%) based on root samples alone, and five (18%) based on samples from root, soil and spore. Glo9 (Rhizophagus intraradices), Glo17 (Funneliformis mosseae) and Acau3 (Acaulospora sp.) were the three most abundant AMF group types in the current study. Soil Pb and Zn concentrations, pH, organic matter content, and phosphorus levels all showed significant correlations with the AMF species compositions in root and soil samples. Overall, the uncontaminated sites had higher species diversity than sites with heavy metal contamination. The study highlights the effects of different soil chemical parameters on AMF colonization, spore density and community structure in contaminated and uncontaminated sites. The tolerant AMF species isolated and identified from this study have potential for application in phytoremediation of heavy metal contaminated areas.  相似文献   
45.
规模化蛋鸡场病原菌溯源与生物安全防控研究   总被引:1,自引:0,他引:1  
细菌病严重威胁蛋鸡健康,以抗生素为主导的细菌病传统防控方式会导致病原菌耐药性严重、鸡蛋药物残留,影响蛋品安全。要保证蛋鸡产蛋期不用抗菌药物而又能生产出"无菌、无抗"的鸡蛋,是国内外技术难题。本团队以规模化蛋鸡场全封闭鸡舍为研究对象,基于PFGE、MLST、全基因组测序等技术,探明了蛋鸡病原菌的种类及基因组特征;对病原菌的耐药性研究表明,蛋鸡病原菌多重耐药严重,依靠药物防控的方式亟待转变;对规模化蛋鸡场细菌溯源研究结果表明,鸡舍生物媒介(鼠、苍蝇等)和非生物媒介(空气、饮水、饲料、鸡粪等)是蛋鸡病原菌的重要传染来源和传播途径;对规模化蛋鸡场生物安全量化评价结果表明,外部和内部生物安全权重高达92.2%。根据溯源和生物安全权重分析结果,提出了在规模化全封闭蛋鸡舍将蛋鸡细菌病从药物防控转变为生物安全防控的新策略;创新了规模化蛋鸡场细菌病防控的系统技术,实现蛋鸡规模养殖整个产蛋期不用抗生素,为生产"无菌、无抗"安全鸡蛋提供技术支撑。  相似文献   
46.
随着人们生活方式的变化,养猪户也变得越来越多,不仅能为其带来更多的经济收入,也可提高其生活质量和水平。调查数据显示,很多养殖户在养猪中通常会因很多因素致使猪群感染疾病,倘若不能及时处理,势必会对自身带来较为严重的经济损失,甚至会加大疫病的扩散。该文主要对高致病性猪蓝耳病防控新理念展开分析,并提出一些可行的对策。  相似文献   
47.
为获得丰富的艾纳香内生真菌资源,筛选出抗性生防菌株,用于活性次生代谢产物的发现,通过水琼脂法对海南产艾纳香进行内生真菌分离,通过ITS序列分析,对其进行鉴定和分析。采用滤纸片法评价内生真菌发酵产物对细菌的抑制活性,采用平板对峙培养法评价艾纳香内生真菌对植物炭疽菌的拮抗作用。本研究共分离鉴定出191株内生真菌,分属于27属,45种,其中优势菌属为DiaportheParaphomaEctophomaPenicilliumTalaromycesHypoxylonPhomopsisColletotrichumFusarium。抗细菌活性结果显示,ClonostachysFusariumDiapothe属活性较强。抗炭疽病菌试验显示,TalaromycesEctophomaPenicillium属活性较强。本研究初步探讨了海南产艾纳香内生真菌种类的多样性,并首次对其进行了抗病原菌活性筛查,获得的活性菌株可作为微生物源菌剂开发的重要材料。  相似文献   
48.
To establish a rapid,sensitive and specific assay for the differential detection of Nipah virus (NiV) and highly pathogenic porcine reproductive and respiratory syndrome virus (HP-PRRSV),a duplex Real-time RT-PCR was developed with specific primers and probes targeting to the special sequences of NiV M gene and HP-PRRSV nsp2 gene by optimization of reaction conditions.The performance of the assay was linear ranging from 4.6×101 to 4.6×107 copies/μL for RNA standard control of NiV M (NiV-M-RNA) and from 4.1×101 to 4.1×108 copies/μL for RNA standard control of HP-PRRSV nsp2 (HP-PRRSV-nsp2-RNA),and detection limits of the assay was 46 copies for the NiV-M-RNA and 4.1 copies for the HP-PRRSV-nsp2-RNA,respectively.The coefficients of variation (CVs) of both inter-assay and intra-assay repeatability were less than 2.0%,showing good repeatability.The assay was able to specifically detect NiV and HP-PRRSV simultaneously without cross-reaction with classical swine fever virus (CSFV),porcine epidemic diarrhea virus (PEDV),swine influenza virus (SIV),porcine parvovirus (PPV),pseudorabies virus (PRV) and porcine circovirus type 2 (PCV2).Of the 236 samples from pigs for both NiV and HP-PRRSV detection by the established assay,all the samples were negative for NiV,8 samples were HP-PRRSV positive.In conclusion,this assay offers a useful approach for the differential detection of NiV and HP-PRRSV in clinical specimens from the pigs.  相似文献   
49.
In order to understand the main bacterial pathogen species causing dairy cow mastitis in Liaoning, as well as the characteristics of drug sensitivity of the pathogenic E.coli,the milk samples from 75 dairy cows with clinical manifestations for mastitis in certain large-scale dairy farm in Liaoning were collected.The bacteria in milk were cultured and isolated with biochemical methods and in vitro drug sensitivity tests were processed with the isolated E.coli strains.The results showed that the main bacterial pathogen for dairy cow mastitis were E.coli(separation rate 58.7%),S.aureus(64.0%)and S.agalactiae(54.7%),and multiple infection including double and triple infection were identified.The drug sensitivity tests on the isolated E.coli indicated that the E.coli isolates were highly resistant to sulfonamides(resistance rate>85%)and chloramphenicol(resistance rate>30%),and they were relatively low resistant to ampicillin(9.5%),ciprofloxacin(9.5%),ceftiofur(7.1%)and ofloxacin(4.8%).The results was able to provide reliable theoretical basis for prevention and control of dairy cow mastitis in Liaoning area.  相似文献   
50.
Surveys were conducted in the five southern rice-producing states of Arkansas, Louisiana, Mississippi, Missouri and Texas in the United States during the 2018 and 2019 cropping seasons to determine the distribution and pathogenicity of fungal pathogens associated with seedling blight in rice. A total of 349 pathogenic fungal isolates were collected and identified as belonging to four genera: Rhizoctonia solani, Fusarium spp., Sclerotium rolfsii and Marasmius graminum based on morphological characteristics, molecular analysis and Koch's postulates. R. solani (252 out of 349 pathogenic isolates) was the most prevalent fungus isolated from diseased samples. Of the 252 pathogenic R. solani isolates, 245 were further classified as anastomosis group 11 (AG-11) and 7 as AG-4. Isolates of R. solani AG-4 and M. graminum were the most aggressive, with the highest stand loss (63% to 100%) and median disease rating (DR; 5.0), followed by isolates of R. solani AG-11 (stand loss = 4% to 100% and DR = 0.6 to 5.0), Fusarium spp. (stand loss = 26% to 48% and DR = 2.0 to 5.0) and S. rolfsii (stand loss = 33% to 48% and DR = 2.0 to 3.0) in causing seedling blight in rice. R. solani (62% to 83% of total pathogenic isolates) and Fusarium spp. (10% to 24% of total pathogenic isolates) were predominant in all the five states surveyed. S. rolfsii and M. graminum were present only in Louisiana and Texas. The results of this first systematic survey of rice seedling diseases in the southern United States will help develop effective fungicide seed treatment strategies for control of stand loss caused by seedling blight, one of the major factors limiting rice production.  相似文献   
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