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1.
近年,越来越多的研究表明,中链脂肪酸(MCFAs)抵抗病原菌是哺乳动物先天防御系统的重要组成部分,而且MCFAs也能够诱导人、猪和鸡内源性防御肽的表达,MCFAs的这些新功能尚未引起重视。MCFAs还和饲用有机酸或饲用植物精油具有协同抗菌增效作用,可以减少这些活性物质的使用量。相比于长链脂肪酸,日粮中添加MCFAs能显著地提高动物机体内氧气消耗量和线粒体呼吸速率,但产生活性氧自由基少,特别适合幼龄动物肠代谢和肝代谢所需的快速能量供应特点。日粮添加低浓度MCFAs(0.1%—0.5%,质量比)能显著提高新生或断奶仔猪存活率、粗蛋白粗脂肪消化率、饲料转化率,调节肠道菌群和改善肠上皮结构,进而促进生长。基于MCFAs的上述功能,将MCFAs与饲用有机酸或植物精油复配制备成微囊颗粒,可能是其用于仔猪抗生素替代品的尚佳方式。 相似文献
2.
Biological and molecular characterization of tomato brown rugose fruit virus and development of quadruplex RT-PCR detection 下载免费PDF全文
Zhi-yong YAN Mei-sheng ZHAO Hua-yu MA Ling-zhi LIU Guang-ling YANG Chao GENG Yanping TIAN Xiang-dong LI 《农业科学学报》2021,20(7):1871-1879
Tomato brown rugose fruit virus(ToBRFV) is a novel tobamovirus firstly reported in 2015 and poses a severe threat to the tomato industry. So far, it has spread to 10 countries in America, Asia, and Europe. In 2019, ToBRFV was identified in Shandong Province(ToBRFV-SD), China. In this study, it was shown that ToBRFV-SD induced mild to severe mosaic and blistering on leaves, necrosis on sepals and pedicles, and deformation, yellow spots, and brown rugose necrotic lesions on fruits. ToBRFV-SD induced distinct symptoms on plants of tomato, Capsicum annumm, and Nicotiana benthamiana, and caused latent infection on plants of Solanum tuberosum, Solanum melongena, and N. tabacum cv. Zhongyan 102. All the 50 tomato cultivars tested were highly sensitive to ToBRFV-SD. The complete genomic sequence of ToBRFV-SD shared the highest nucleotide and amino acid identities with isolate IL from Israel. In the phylogenetic tree constructed with the complete genomic sequence, all the ToBRFV isolates were clustered together and formed a sister branch with tobacco mosaic virus(TMV). Furthermore, a quadruplex RT-PCR system was developed that could differentiate ToBRFV from other economically important viruses affecting tomatoes, such as TMV, tomato mosaic virus, and tomato spotted wilt virus. The findings of this study enhance our understanding of the biological and molecular characteristics of ToBRFV and provide an efficient and effective detection method for multiple infections, which is helpful in the management of ToBRFV. 相似文献
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华北地区十字花科芸薹属蔬菜上立枯丝核菌的病原生物学研究 总被引:2,自引:0,他引:2
由丝核菌引起的十字花科蔬菜叶腐和茎基腐病在中国华北地区普遍发生,其中以河北、内蒙以及北京较为严重。2011~2018年,从华北地区不同省份具有典型叶腐和茎基腐症状的芸苔属蔬菜上分离获得95个丝核菌(Rhizoctonia spp.)分离物,大多数分离自发病植株的叶部,少数分离自茎基部。通过细胞核染色,87株菌属于多核丝核菌,另外8株属于双核丝核菌;经菌丝融合鉴定、rDNA-ITS区及TEF-1α(translation elongation factor 1-alpha, TEF-1α)序列分析,大多数多核丝核菌属于立枯丝核菌(Rhizoctonia solani)AG-2-1(74%),其他少数分别属于AG-1-IB(16%)、AG-4-HG II(2%)和双核丝核菌AG-A(8%)。温室条件下进行寄主范围致病力测定,各分离物对原寄主都表现出致病力,呈现典型叶腐或茎基腐症状;对其他作物的致病力差异较大。不同融合群(Anastomosis group,AG)的菌株对寄主致病力大小存在差异,AG-2-1致病力最强,只有AG-A对叶部没有致病力。AG-2-1对寄主叶部的致病力和对茎基部的致病力呈显著正相关,AG-1-IB对寄主叶部的致病力和对茎基部的致病力无显著相关性。 相似文献
5.
D. Sadiković B. Piškur I. Barnes T. Hauptman D. Diminić M. J. Wingfield D. Jurc 《Plant pathology》2019,68(6):1120-1131
Brown spot needle blight (BSNB), a disease of pine trees caused by the fungus Lecanosticta acicola, has been known in Slovenia since 2008 and in Croatia since 1975. Recent outbreaks in Slovenia prompted this study to compare L. acicola populations in these two neighbouring European countries. Sixty-nine isolates collected from three pine species (Pinus mugo, P. halepensis and P. nigra) were used to determine the phylogenetic relationships, genetic structure, and reproductive strategy of the pathogen. EF1-α sequences showed that Slovenian and Croatian isolates share a common ancestry with individuals from central and northern Europe. Population structure analysis revealed four distinct population clusters of L. acicola in these two countries, generally corresponding to their respective geographic location and host. An unequal ratio of mating types and a low overall genetic diversity in the population indicated a strong influence of asexual reproduction. Although some of the oldest recorded European occurrences of BSNB are from Croatia, this study provided no evidence that the population studied in Croatia was the source of the sampled outbreaks in Slovenia. Recent outbreaks of L. acicola in Slovenia are most likely due to introductions from other, yet to be identified, sources. 相似文献
6.
草地贪夜蛾Spodoptera frugiperda(J. E. Smith),又称秋黏虫,是新入侵我国的外来物种。为探究本土天敌斑痣悬茧蜂寄生不同龄期草地贪夜蛾幼虫后的生长发育表现,本研究检测了斑痣悬茧蜂寄生2龄、3龄和4龄草地贪夜蛾幼虫后子代蜂幼虫发育历期、茧历期、羽化率、茧重、成蜂个体大小和成蜂寿命。结果表明,寄主龄期对子代蜂的幼虫发育历期、茧历期和成蜂寿命存在显著影响。与寄生4龄幼虫的子代蜂相比,寄生2龄和3龄幼虫的子代蜂幼虫发育历期分别平均延长了2.08 d(z=5.42,P0.05)和1.64 d(z=4.23,P0.05);寄生2龄幼虫的子代蜂茧历期平均延长了0.46 d(z=3.51,P0.05),但寄生4龄幼虫的子代蜂茧历期与寄生3龄幼虫的子代蜂茧历期无显著差异。4龄幼虫体内羽化的子代蜂成蜂寿命比在2龄和3龄幼虫体内羽化的子代蜂成蜂寿命分别平均延长了1.46 d(z=-2.60,P0.05)和1.68 d(z=-2.98,P0.05)。寄主龄期对子代蜂羽化率、茧重和成蜂个体大小无显著影响。随寄主龄期增大,子代蜂的发育速度加快,但寿命缩短。研究结果将为揭示斑痣悬茧蜂与寄主草地贪夜蛾的互作关系提供参考。 相似文献
7.
应用不同分子标记鉴别入侵广州草地贪夜蛾的寄主型 总被引:1,自引:0,他引:1
【目的】利用不同分子标记对入侵广州的草地贪夜蛾Spodoptera frugiperda进行寄主型鉴定,以便监测虫源扩散规律以及预测预警虫情。【方法】对采集自广州花都玉米植株的草地贪夜蛾,利用3个COI基因标记COI-A、COI-B和COI-C,以及Tpi基因标记进行鉴定,并对结果进行比较。【结果】序列比对和寄主型分析显示,COI-A、COI-B和COI-C标记鉴定到入侵广州的草地贪夜蛾为已报道的水稻型,且COI-A标记鉴定到草地贪夜蛾与黏虫Mythimna separate的杂合子。基于Tpi基因的标记鉴定到入侵广州的草地贪夜蛾为玉米型,且在第126和第127位碱基为GA/AT杂合。【结论】COI-A标记具有较强的物种鉴别能力,能够鉴定到草地贪夜蛾与其他近源种的杂交事件;Tpi标记可用于鉴定草地贪夜蛾寄主型。2个标记结合相互验证可以提高准确率。开发微卫星标记或者寄主取食功能性基因标记可以实现寄主型的精准鉴定。 相似文献
8.
Usman Ijaz Michael Ayliffe Kedar Adhikari Harbans Bariana Urmil Bansal 《Plant pathology》2020,69(7):1227-1236
Uromyces viciae-fabae, rust of faba bean, parasitizes other legume crops such as lentils (Lens culinaris) and field peas (Pisum sativum) in some environments. In this study we examined the host range of two Australian isolates of U. viciae-fabae collected and purified from a faba bean crop and classified as U. viciae-fabae ex V. faba. Field pea (P. sativum), chickpea (Cicer arientinum), lupin (Lupinus spp.), lentil (L. culinaris), and mung bean (Vigna radiata) genotypes were tested with these isolates, as well as resistant and susceptible genotypes of the faba bean host. Race specificity for these two pathogen isolates was observed on Vicia faba, with two faba bean genotypes showing partial resistance. Both U. viciae-fabae isolates also colonized field pea seedlings and successfully produced uredinia under glasshouse conditions, despite this fungus not being known as a pathogen of Australian field pea crops. No sporulation of either isolate of U. viciae-fabae ex V. faba was observed on any of the remaining legume species tested. However, obvious differences in fungal growth were observed, ranging from small infection sites with very rare haustorium formation in mung bean to more extensive growth and the development of potential uredinial structures in chickpea. These observations are discussed in relation to the phylogenetic relationship of these host and nonhost species. 相似文献
9.
Tomato chlorosis virus (ToCV) is a plant virus that is mainly propagated by Bemisia tabaci in a semi-persistent and non-circulative manner.It has a wide range of host plants,and has been reported in many countries,causing serious economic losses in vegetable production.In 2019,we investigated about 10 fields,one ha each in Shouguang,Shandong province (China),and in each field we observed symptoms of interveinal chlorosis on lower leaves of the Solanum torvum Swartz,and a large number of B.tabaci gathered on the back of its leaves.To determine the presence of ToCV,total RNA of S.torvum was extracted followed by RT-PCR.The 1 074 (GenBank accessions number MN545620) and 466 bp (GenBank accessions number MN545621) fragments were gel purified and sequenced.The sequences shared 99.44% and 99.57% similarity with ToCV reference sequence tomato chlorosis virus segment RNA1 (AY903447) and RNA2 (AY903448).The results of insect transmission test confirmed that ToCV can spread from S. torvum to tomato.This study confirms S.torvum as a newly reported host of ToCV. 相似文献
10.
构建感染草莓镶脉病毒(SVBV)森林草莓的酵母cDNA文库,利用酵母双杂交系统,筛选出与SVBV P1蛋白互作的15种寄主因子。生物信息学分析发现,这15种寄主因子参与茉莉酸途径、泛素化、光合作用、抗病抗逆、蛋白修饰、蛋白运输和氧化还原等多种生物过程。另外,这些寄主因子还具有其他分子功能,包括氧化还原酶活性、蛋白二硫化物异构酶活性和金属离子结合活性等。本研究初步探讨了P1与寄主因子的互作机理,为揭示SVBV侵染森林草莓以及SVBV在寄主中扩展的分子机制提供理论依据。 相似文献