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131.
优化的VHb基因和GFMcryIA基因构建的双价基因在烟草中的表达 总被引:1,自引:0,他引:1
利用人工合成的、密码子优化后的透明颤菌血红蛋白(VHb)基因与人工合成的GFMcryIA基因构建成双价基因植物高效表达载体。通过根癌农杆菌介导转化烟草,获得了36株卡那霉素抗性植株。经转基因植株的PCR及Southern blot检测,证实了双价基因在35株烟草基因组中的整合。Western blot检测证实了VHb基因的表达,杀虫实验证实GFMcryIA基因也表达出活性毒蛋白。且转基因烟草平均每株干重比非转基因烟草植株高7%。本研究结果表明转基因育种技术在培育出既高产又具抗虫性的作物或经济作物新品种方面具有良好的应用前景。 相似文献
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Shima E. Abdalla Akebe L.K. Abia Daniel G. Amoako Keith Perrett Linda A. Bester Sabiha Y. Essack 《The Onderstepoort journal of veterinary research》2022,89(1)
BackgroundDiarrheagenic E. coli (DEC) strains are a major cause of diarrheal diseases in both developed and developing countries. Healthy asymptomatic animals may be reservoirs of zoonotic DEC, which may enter the food chain via the weak points in hygiene practices.AimWe investigated the prevalence of DEC along the pig production continuum from farm-to-fork.MethodsA total of 417 samples were collected from specific points along the pig production system, that is, farm, transport, abattoir and food. E. coli was isolated and enumerated using Colilert. Ten isolates from each Quanti-tray were selected randomly and phenotypically identified using eosin methylene blue agar selective media. Real-time polymerase chain reaction (PCR) was used to confirm the species and to classify them into the various diarrheagenic pathotypes. Antimicrobial susceptibility was determined against a panel of 20 antibiotics using the Kirby-Bauer disk diffusion method and EUCAST guideline.ResultsThe final sample size consisted of 1044 isolates, of which 45.40% (474/1044) were DEC and 73% (762/1044) were multidrug-resistant. Enteroinvasive E. coli (EIEC) was the most predominant DEC at all the sampling sites.ConclusionThe presence of DEC in food animal production environments and food of animal origin could serve as reservoirs for transmitting these bacteria to humans, especially in occupationally exposed workers and via food. Adherence to good hygienic practices along the pig production continuum is essential for mitigating the risk of transmission and infection, and ensuring food safety. 相似文献
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不同种源的柠条锦鸡儿的生理特性与抗旱性 总被引:10,自引:0,他引:10
以内蒙赤峰、内蒙杭锦旗、山西武寨和宁夏盐池4种源的柠条锦鸡儿(Caragana korshinskii)为材料,在不同水分条件下对其叶片的净光合速率、蒸腾速率、气孔导度、胞间二氧化碳体积分数、水分利用效率和耐旱致死点进行测定.结果表明:各种源柠条在受到干旱胁迫时,光合速率明显下降,但内蒙赤峰种源明显表现出比其他种源光合效率高;蒸腾速率和气孔导度各种源都呈下降趋势,但在不同种源间变化规律性不明显;胞间二氧化碳体积分数基本与净光合速率成反比;水分利用效率变化规律不明显,但内蒙赤峰种源明显表现出比其他种源水分利用效率高.各种源的耐旱致死点依次为赤峰42.3 d>杭锦旗41.7 d>盐池38.7 d>五寨31.0d,致死含水量依次为1.6%、1.8%、1.8%和1.9%. 相似文献
137.
Wheat streak mosaic virus (WSMV) is an economically important pathogen of wheat (Triticum aestivum) causing major yield losses in regions where severe infection occurs. To detect the presence of any new virus or new WSMV isolates, green foxtail (Setaria viridis) plants exhibiting virus-like symptoms were sampled in a summer-fallowed wheat field at the Agricultural Research Center-Hays, Kansas State University, Hays, Kansas. These plants were tested serologically for four wheat viruses: WSMV, Triticum mosaic virus (TriMV), High Plains wheat mosaic virus (HPWMoV) and Foxtail mosaic virus (FoMV). Among 38 plant samples exhibiting virus-like symptoms, 29 contained WSMV as indicated by ELISA. Four isolates from samples with relatively strong reactions were transferred to healthy wheat seedlings by mechanical inoculation in a growth chamber for pathogenicity testing. Three isolates were avirulent to a wheat variety RonL, which contains Wsm2, a gene providing temperature-sensitive resistance to currently prevalent isolates of WSMV. However, one isolate, KSH294, was able to infect RonL and showed more virulence on two other varieties/lines containing Wsm2. Further sequence and phylogenetic analysis of KSH294 confirmed that this isolate displays a sequence homology with WSMV, but has sequence differences making it distinct from previously identified WSMV isolates included in the phylogenetic analysis. 相似文献
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D R Clements M D Day V Oeggerli S C Shen L A Weston G F Xu F D Zhang X Zhu 《Weed Research》2019,59(3):155-169
Increasingly, weeds have been taking on global distributions. With the proliferation of invasive weeds has come the challenge of managing these species over broad geographical regions, with diverse habitats and political jurisdictions. Here, we review the management of Mikania micrantha Kunth (Asteraceae; mile‐a‐minute) throughout its invaded range, extending through most of the Pacific islands and southern and south‐east Asia. Context matters when determining the best course of action for managing M. micrantha, as it has invaded a large variety of agricultural and natural systems. In Queensland, Australia and Florida, USA, M. micrantha has been targeted in relatively successful eradication campaigns, highlighting the importance of early detection and rapid response methods, while elsewhere in its invaded range, populations are either still increasing or showing limited signs of decline. An inter‐regional approach to research and management should incorporate successful management strategies employed throughout the invaded range including, but not limited to, chemical and cultural control practices, manual and mechanical control, classical biological control using the rust fungus Puccinia spegazzinii, plant–plant competition and integrated approaches utilising two or more control methods concurrently. Additional knowledge of M. micrantha genetics is required to determine if management approaches could be fine‐tuned for particular populations. Countries bordering the Mekong River formed a network in 2011 to co‐ordinate the management of invasive species such as M. micrantha. Expanding such a collaborative approach to other regions could further reduce populations of M. micrantha and limit its spread. 相似文献
139.
Filip Franeta Sanja Mikić Željko Milovac Bojan Mitrović Dušanka Inđić Slavica Vuković 《国际虫害防治杂志》2019,65(1):23-32
Maize is arguably the most widely grown crop in the world, but it is often associated with one of its major insect pests, the European corn borer (ECB). The damage caused by this species to maize production is generally variable, but in many cases it is economically significant. This review paper provides an overview of the research findings on the natural plant defence mechanisms against ECB larvae published till now. What is resistance and how it is achieved, what is the chemical response of maize plants to insect feeding and how tolerance can be increased. A short introduction in breeding for resistance and a discussion if the mentioned traits can be used in conventional breeding in order to create maize hybrids less affected by ECB are given. 相似文献
140.