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1.
病毒病是危害萝卜作物的主要病害之一,芜菁花叶病毒(TuMV)作为萝卜病毒病的主要毒源,给萝卜生产造成严重经济损失。由于缺乏精准鉴定,萝卜育种中缺乏稳定可靠的抗TuMV材料。本研究就国家蔬菜种质资源中期库提供的来自中国25个省份125个县市和其他3个国家的150份代表性萝卜种质资源对TuMV的抗性进行了苗期鉴定和ELISA检测,筛选出23份抗病材料,其中1份表现免疫。这些材料对萝卜抗病毒病基因定位和新品种培育具有重要意义。  相似文献   

2.
为促进国外引进种质的有效利用,对国家长期库中引进的2156份国外大豆种质的来源、主要农艺性状、蛋白质及脂肪含量进行了分析.结果表明:国家长期库现存的引进大豆种质主要来自美国等国家,多表现为生育期较长、紫花、棕毛、无限结荚习性、种皮黄、多深色脐、百粒重中等,蛋白质含量多介于40.01%~45.00%之间,油分含量多介于18.01%~22.0%之间;株高的变异系数最高,蛋白质及脂肪含量的变异系数较低;7个质量性状遗传多样性平均值低于国内微核心种质.  相似文献   

3.
4.
采用针刺叶片接种法、温室地面水层保湿方式,对146份普通菜豆种质资源进行抗普通细菌性疫病鉴定和评价,结果表明,该接种方法简便实用,保湿方式效果良好,鉴定结果准确;从146份普通菜豆种质中筛选出抗病种质(R)2份、中抗(MR)种质50份、感病(S)种质81份、高感种质(HS)13份。本研究表明针刺叶片接种、温室地面水层自然蒸发保持湿度可以作为大规模菜豆抗普通细菌性疫病鉴定的适宜方法。  相似文献   

5.
本研究依托"第三次全国农作物种质资源普查与收集行动",利用巢式PCR(Nested PCR)检测技术,对从湖南各地区采集的甘薯种质资源进行甘薯曲叶病毒的调查、检测、统计与分析,获得该地区甘薯种质资源曲叶病毒的感染和分布情况。对收集的246份甘薯种质资源进行了甘薯曲叶病毒病症状的调查,记录了每份种质资源的田间生长特性;建立了一种甘薯曲叶病毒巢式PCR检测技术,该技术相对其他技术具有特异性强、灵敏度高、检测通量大、检测成本低的特点。利用建立的巢式PCR检测技术对选取的样品进行甘薯曲叶病毒检测,分析检测结果发现:(1)巢氏PCR共检测出14份甘薯种质资源感染甘薯曲叶病毒,根据病毒基因测序结果分析湖南省至少存在2种曲叶病毒株系。(2)田间调查共发现8份甘薯种质资源的叶片具有甘薯曲叶病毒病典型的卷曲症状,但是其中仅有4份资源与曲叶病毒巢氏PCR检测结果一致;另外4份资源虽然具有明显的卷叶现象但是未检测出曲叶病毒。(3)曲叶病毒检测呈阳性的14份甘薯种质资源分别来源于邵阳市、长沙市、永州市和株洲市4个地区,占种质资源总数的5.7%;4个地区甘薯种质资源的病毒感染率分别为17.6%、14.5%、7.1%和6.7%;全省范围内的种质资源染病情况具有较大的地域差异性;综合甘薯种植情况和地理环境分析,商品薯的跨区域流通和农民自留种的种植习惯是影响甘薯病毒传播的主要因素。本研究首次利用巢式PCR技术对湖南地区甘薯曲叶病毒进行检测和调查,为甘薯种质资源的保存、繁殖、鉴定与利用提供了重要的技术支撑,也为湖南地区甘薯曲叶病毒侵染情况及相关的分子生物学研究提供了数据参考。  相似文献   

6.
中国普通菜豆种质资源朊蛋白变异及多样性分析   总被引:1,自引:0,他引:1  
朊蛋白是研究普通菜豆遗传多样性的一种重要且有效的生化标记。本试验通过SDS-PAEG凝胶电泳检测中国普通菜豆种质资源的朊蛋白变异类型,分析中国普通菜豆种质资源的遗传多样性及组成特点。来自中国13个省(自治区)的445份供试材料共检测到S、Sb、Sd、B、C、CA、T、PA、To、H、H1、CH 12种朊蛋白类型,表明中国普通菜豆种质朊蛋白变异类型丰富,遗传多样性水平较高。其中,Sb型朊蛋白种质最多,占比29.0%;T型其次,占比28.1%。依据朊蛋白类型在不同基因库的特异性,将研究材料明显地区分为中美基因库和安第斯基因库两大类。研究还发现中国普通菜豆种质资源中地方种质朊蛋白类型变异丰富,多样性明显高于现代育成品种或品系。最后,对种质朊蛋白类型与百粒重、子粒颜色、粒型进行相关性分析,结果表明朊蛋白类型与百粒重呈极显著正相关,而朊蛋白类型与子粒颜色、粒型2个性状之间无明显相关性。本研究结果将为普通菜豆种质资源的保护及有效地挖掘优质种质资源提供理论依据。  相似文献   

7.
黄瓜核心种质遗传多样性的苗期和初花期形态标记分析   总被引:1,自引:0,他引:1  
对92份黄瓜核心种质进行苗期和初花期形态学标记分析,以评价供试核心种质资源的遗传多样性水平。结果表明:供试黄瓜核心种质的苗期和初花期性状存在明显的遗传变异,不同种质间各性状的平均变异系数为31.0%,其中第一雌花节位的变异系数最大,为59.4%;始花期最小,为14.2%。聚类分析表明,在Pearson相关系数为6.5时,把92份黄瓜核心种质划分为3大类群;Pearson相关系数为3.5时,把92份黄瓜核心种质划分为8个类群。本研究结果丰富了黄瓜种质资源的评价体系,为今后优异基因资源的挖掘与利用提供了科学参考。  相似文献   

8.
【背景】香菇病毒通常具有潜隐性特征,携带病毒的香菇菌株往往并不表现出明显症状,然而一旦发生常造成较大的经济损失。【目的】解析中国香菇核心种质中真菌病毒多样性特点。【方法】以56个中国香菇核心种质为试验材料,采用RT-PCR和RT-qPCR检测技术对34种香菇病毒携带情况进行检测和分析。【结果】研究结果表明,分别有14种和5种香菇病毒的目标基因在绝大多数阳性菌株中扩增出较亮和较暗的条带,RT-qPCR结果也表明阳性带毒香菇菌株中病毒目标基因的扩增结果与病毒含量呈正相关,即病毒在阳性菌株中的含量越高则病毒扩增条带越亮;被检测的34种香菇病毒中,LeFV5和LeMV1检测率为100%;21个栽培种质和35个野生种质中分别有8种和6种香菇病毒检测率为80%以上,而且其中4种病毒相同(LeDFV2、LeFV2、LeSV和LeHV2);栽培菌株和野生菌株携带病毒数分别为8-21种和9-23种,平均每个菌株携带16.4种和16.7种。【结论】香菇种质资源中普遍携带复杂的多种真菌病毒,被检测的病毒在阳性菌株中扩增亮度不同,而且存在明显遗传差异的香菇菌株中携带的一些高检测率病毒相似,暗示这些病毒在香菇进...  相似文献   

9.
食用豆类种质资源粗蛋白及粗淀粉含量的评价   总被引:8,自引:0,他引:8  
对"十五"期间收集、整理并存入国家种质库的1696份食用豆类种质资源的主要品质性状进行了鉴定评价.结果表明,9种食用豆类种质资源的粗蛋白、粗淀粉平均含量分别为24.93%、45.11%,不同食用豆类种质资源中各品质性状变异程度不同,其中菜豆和鹰嘴豆的粗蛋白和豇豆的粗淀粉含量变异最大.不同来源的食用豆类种质资源品质性状比较结果表明,国内绿豆种质资源粗蛋白含量明显优于国外种质资源.通过鉴定筛选出一批品质性状优良的食用豆类种质,并对使用的评价标准进行了讨论.  相似文献   

10.
不结球白菜种质资源对TuMV的抗性鉴定与评价   总被引:1,自引:0,他引:1  
分别利用苗期人工接种鉴定及ELISA检测方法,对127份不结球白菜种质资源进行芜菁花叶病毒(TuMV)的抗性鉴定。结果显示,苗期人工接种鉴定的病情指数(DI)分布在3.55~95.68之间,不同种质间表现出较大的抗性差异。不同抗性级别的次数分布图基本符合正态分布,略向感病区域偏离。基于病情指数的聚类分析结果与抗病性分级基本一致。通过苗期鉴定共筛选获得高抗TuMV的不结球白菜种质6份,抗病种质13份,其主要农艺性状表现出一定的多样性。其中叶面皱缩和具有刺毛的抗病材料所占比例较高,可能与TuMV抗性存在一定的相关性。ELISA检测结果显示,117份供试种质的P/N值分布在3.10~25.37之间,不同种质间表现出病毒含量的差异,但与DI值未呈现明显相关性,可作为抗病材料筛选的辅助指标。  相似文献   

11.
Two viruses occur widely in lupins in Britain. Alfalfa mosaic virus (AMV), of which two strains were isolated, was found mainly in named Russell varieties. Lupin mottle virus (LMV), a previously undescribed strain of the bean yellow mosaic virus (BYMV) common pea mosaic virus (CPMV) complex, was found more commonly in seedling lupins. Cucumber mosaic virus (CMV) was isolated once. The AMV strains were differentiated by their reaction in Phaseolus vulgaris; they were serologically closely related. Both AMV and LMV were aphid transmitted but not transmitted in lupin seed. LMV was distantly serologically related to both BYMV and CPMV. It cross-protected against BYMV but not against CPMV and it differed from both these viruses in some host reactions. The CMV isolate from lupins was similar to type CMV. It was transmitted both mechanically and by aphid, easily from cucumber to cucumber, but with difficulty from cucumber to lupin.  相似文献   

12.
Samples collected in 1994 and 1995 from commercial crops of chickpeas and lentils growing in the agricultural region of south-west Western Australia were tested for infection with alfalfa mosaic (AMV) and cucumber mosaic (CMV) viruses, and for members of the family Potyviridae using enzyme-linked immunosorbent assay (ELISA). In 1994 no virus was detected in the 21 chickpea crops tested but in 1995, out of 42 crops, AMV was found in two and CMV in seven. With lentils, AMV and/or CMV was found in three out of 14 crops in 1994 and 4 out of 13 in 1995, both viruses being detected in two crops in each year. Similar tests on samples from chickpea and lentil crops and plots growing at experimental sites, revealed more frequent infection with both viruses. No potyvirus infection was found in chickpeas or lentils in agricultural areas either in commercial crops or at experimental sites. However, bean yellow mosaic virus (BYMV) was detected along with AMV and CMV in irrigated plots of chickpeas and lentils at a site in Perth. When samples of seed from infected crops or plots of chickpeas and lentils were germinated and leaves or roots of seedlings tested for virus infection by ELISA, AMV and CMV were found to be seed-borne in both while BYMV was seed-borne in lentils. The rates of transmission found through seed of chickpea to seedlings were 0.1–1% with AMV and 0.1–2% with CMV. Seed transmission rates with lentil were 0.1–5% for AMV, 0.1–1% for CMV and 0.8% for BYMV. Individual seed samples of lentil and chickpea sometimes contained both AMV and CMV. With both species, infection with AMV and CMV was sometimes found in commercial seed stocks or seed stocks from multiplication crops of advanced selections nearing release as new cultivars. Seed-borne virus infection has important practical implications, as virus sources can be re-introduced every year to chickpea and lentil crops or plots through sowing infected seed stocks leading to spread of infection by aphid vectors, losses in grain yield and further contamination of seed stocks.  相似文献   

13.
Many surveys were conducted during 2003–2005 to study the identity, prevalence and fluctuation of bean infecting viruses in northwestern Iran. In total, 649 bean samples with virus- like symptoms were collected and analysed by double antibody sandwich enzyme-linked immunosorbent assay (DAS-ELISA) and tissue-print immunoassay to detect infectious viruses. Serological tests revealed the presence of Bean common mosaic virus (BCMV), Bean common mosaic necrosis virus (BCMNV), Bean yellow mosaic virus (BYMV), Cucumber mosaic virus (CMV), Alfalfa mosaic virus (AMV), Bean leaf roll virus (BLRV), Bean pod mottle virus (BPMV) and Southern bean mosaic virus (SBMV), with some co-infection occurred, with prevalence of BCMV, BCMNV and BYMV (17–29% infection rate). The incidence of viruses showed variation in over 3 years of research including more than double increase in CMV from 2004 to 2005 and obvious one-third decrease in AMV from 2003 to 2005. SBMV and BPMV were detected sporadically in the fields and the response of some differential test plants was analysed by mechanical inoculation. Western immunoblotting analysis of SBMV infected bean leaf total proteins using SBMV-specific polyclonal antibody revealed viral CP with molecular mass of 28.5 kDa which confirmed the presence of SBMV as a new threat for bean production.  相似文献   

14.
Plants from 2nd to 6th year leys of the legume goat's rue (Galega orientalis Lam.) were tested for infection with bean yellow mosaic (BYMV), bean common mosaic (BCMV), alfalfa mosaic (AMV), broad bean stain (BBSV), red clover mottle (RCMV) and cucumber mosaic (CMV) viruses by enzyme-linked immunosorbent assay (ELISA), electron microscopy, and by sap-inoculation to various test plant species. No virus infections were observed in goat's rue in the field. Glasshouse-grown seedlings of goat's rue were inoculated with the above viruses. No virus was detected in the inoculated plants. The results suggest that goat's rue is extremely resistant to the above six viruses which are important in other forage legumes.  相似文献   

15.
The isolation and identification of rhubarb viruses occurring in Britain   总被引:1,自引:0,他引:1  
Virus-like symptoms were common in British crops of rhubarb. All plants tested of the three main varieties, ‘Timperley Early’, ‘Prince Albert’ and ‘Victoria’, were virus-infected. Turnip mosaic virus and a severe isolate of arabis mosaic virus (AMV) were obtained from ‘Timperley Early’; and ‘Prince Albert’ contained turnip mosaic virus, cherry leaf roll virus (CLRV), a mild isolate of AMV and, infrequently, cucumber mosaic virus (CMV). The main commercial variety ‘Victoria’ contained turnip mosaic virus, CLRV, a mild isolate of AMV and, infrequently, strawberry latent ringspot virus (SLRV). All the viruses were identified serologically. The rhubarb isolates did not differ markedly from other isolates of these viruses in herbaceous host reactions, properties in vitro or particle size and shape. A rhubarb isolate of CLRV was distinguished serologically from a cherry isolate of the virus. Turnip mosaic virus, CLRV and SLRV, were transmitted with difficulty, but AMV isolates were readily transmitted by mechanical inoculation. Turnip mosaic virus was also transmitted to rhubarb by Myzus persicae and Aphis fabae. CLRV was transmitted in 6–8% of the seed of infected ‘Prince Albert’ and ‘Victoria’ rhubarb and in 72% of the seed of infected Chenopodium amaranticolor. Mild isolates of AMV were also transmitted in 10–24% of the seed of infected ‘Prince Albert’ and ‘Victoria’ plants.  相似文献   

16.
In this paper we present the data on the disease intensity of the tomato plants grown in glass and plastic-houses, and in the open field. The infection was caused by the following viruses: Tomato mosaic virus (ToMV), Tobacco mosaic virus (TMV), Tomato spotted wilt virus (TSWV), Alfalfa mosaic virus (AMV), Potato virus X (PVX), Potato virus Y (PVY), Tomato black ring virus (TBRV), Tomato ringspot virus (ToRSV), Tomato aspermy virus (TAV), and Cucumber mosaic virus (CMV). These viruses represented most frequent tomato pathogens in Serbia. According to the obtained results, it could be concluded that 92.94% of the tested tomato plants grown in glass and plastic-houses, and 89.82% grown in the open field were infected by one of the above viruses. Most of the plant samples were infected by two or more viruses. The most frequent viruses — tomato pathogens in Serbia were ToMV, PVY and TMV.  相似文献   

17.
Yang  Xiangdong  Niu  Lu  Zhang  Wei  He  Hongli  Yang  Jing  Xing  Guojie  Guo  Dongquan  Zhao  Qianqian  Zhong  Xiaofang  Li  Haiyun  Li  Qiyun  Dong  Yingshan 《Transgenic research》2019,28(1):129-140

Viruses constitute a major constraint to soybean production worldwide and are responsible for significant yield losses every year. Although varying degrees of resistance to specific viral strains has been identified in some soybean genetic sources, the high rate of mutation in viral genomes and mixed infections of different viruses or strains under field conditions usually hinder the effective control of viral diseases. In the present study, we generated transgenic soybean lines constitutively expressing the double-strand RNA specific ribonuclease gene PAC1 from Schizosaccharomyces pombe to evaluate their resistance responses to multiple soybean-infecting virus strains and isolates. Resistance evaluation over three consecutive years showed that the transgenic lines displayed significantly lower levels of disease severity in field conditions when challenged with soybean mosaic virus (SMV) SC3, a prevalent SMV strain in soybean-growing regions of China, compared to the non-transformed (NT) plants. After inoculation with four additional SMV strains (SC7, SC15, SC18, and SMV-R), and three isolates of bean common mosaic virus (BCMV), watermelon mosaic virus (WMV), and bean pod mottle virus (BPMV), the transgenic plants exhibited less severe symptoms and enhanced resistance to virus infections relative to NT plants. Consistent with these results, the accumulation of each virus isolate was significantly inhibited in transgenic plants as confirmed by quantitative real-time PCR and double antibody sandwich enzyme-linked immunosorbent assays. Collectively, our results showed that overexpression of PAC1 can increase multiple virus resistance in transgenic soybean, and thus provide an efficient control strategy against RNA viruses such as SMV, BCMV, WMV, and BPMV.

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18.
RNA沉默是真核生物体内由病毒来源的干扰小RNA(virus derived small interfering RNA, vsiRNA)沉默复合物介导目标RNA特异降解的一种保守机制,通过对vsiRNA分析可进行植物病毒病原鉴定。本文利用小RNA深度测序技术对感病半夏叶片进行鉴定,结果发现,表现典型花叶症状的半夏叶片受到大豆花叶病毒(Soybean mosaic virus, SMV)、黄瓜花叶病毒(Cucumber mosaic virus, CMV)、芋花叶病毒(Dasheen mosaic virus, DsMV)、魔芋花叶病毒(Konjac mosaic virus, KoMV)、烟草花叶病毒(Tobacco mosaic virus, TMV)等多种病毒的复合侵染。为明确SMV山西半夏分离物(SMV-SXBX)的进化关系,进行SMV-SXBX全基因组克隆与分析,获得SMV-SXBX全长为9 735 nt,编码一个由3 105个氨基酸组成的多聚蛋白质。通过核苷酸与氨基酸序列比对发现,SMV-SXBX与半夏分离物P同源性最高,分别为91.1%和94.1%,且系统发育分析表明,SMV-SXBX与半夏SMV分离物P聚为一簇。同时,也对vsiRNA进行了系统分析,研究结果有望为半夏SMV的有效防治提供一定科学依据。  相似文献   

19.
A virus survey was conducted during the spring and autumn of 2001 and 2002 to determine the presence, prevalence and distribution in Spain of the viruses that are most commonly found infecting lettuce and Brassica worldwide. Crop plants showing virus symptoms from the principal lettuce and Brassica-growing regions of Spain, and some samples of the annual and perennial flora nearby, were tested by enzyme-linked immunosorbent assays using specific commercial antibodies against the following viruses: Alfalfa mosaic virus (AMV), Broad bean wilt virus 1 (BBWV-1), Beet western yellows virus (BWYV), Cauliflower mosaic virus (CaMV), Cucumber mosaic virus (CMV), Lettuce mosaic virus (LMV), Pea seed-borne mosaic virus (PSbMV), Turnip mosaic virus (TuMV) and Tomato spotted wilt virus (TSWV). Samples were also tested with a Potyvirus genus antibody. Virus incidence was much lower in spring than in autumn, especially in 2001. In spring 2002, CMV and LMV were the most prevalent viruses in lettuce, while CaMV was the most important virus present in Brassica crops grown in Navarra, followed by CMV and BWYV. In the autumn, the spectrum of viruses was different; potyviruses were widespread in lettuce grown in Madrid, but TSWV and BWYV were predominant in the Murcia region. The prevalent Potyvirus detected in lettuce fields was LMV, but none of the samples collected were positive for PSbMV or TuMV. In Brassica crops, TSWV was the most abundant in autumn-sown crops, especially in the Navarra region. All of the viruses present in lettuce and Brassica were also frequently detected in their associated natural vegetation at the same time, suggesting that they probably play an important role as virus reservoirs. Sonchus spp. were particularly common and were frequently infected with CMV, LMV and BWYV. Another common species, Chenopodium album, was often infected with TSWV and BWYV. Multiple infections were common, especially in non-crop plants, and the most common combination was BWYV and TSWV. The role of weeds in the epidemiology of viruses that infect lettuce and Brassica crops in Spain is discussed.  相似文献   

20.
马铃薯Y病毒组病毒高产量提取方法的建立   总被引:11,自引:0,他引:11  
本文报道了高产量提取芜菁花叶病毒(TuMV)、莴苣花叶病毒(LMV)、芋花叶病毒(DMV)和大豆花叶病毒(SMV)的提取方法。本方法通过使用高盐浓度的磷酸盐缓冲液以及在缓冲液中加入氯化镁和脲,并用TritonX-100作为澄清剂,替代常规使用的氯仿和正丁醇,成功的提取到了大量病毒粒子,上述四种病毒提取的得率分别是TuMV为173.3mg/kg病叶,LMV为96mg/kg病叶,SMV为199.2mg/kg病叶,DMV为176.6mg/kg病叶。  相似文献   

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