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Kaiping Deng Steffen Uhlig Laura B. Goodman Hon S. Ip Mary Lea Killian Sarah M. Nemser Jodie Ulaszek Shannon Kiener Matthew Kmet Kirstin Frost Karina Hettwer Bertrand Colson Kapil Nichani Anja Schlierf Andriy Tkachenko Mothomang Mlalazi-Oyinloye Andrew Scott Ravinder Reddy Gregory H. Tyson 《Journal of veterinary diagnostic investigation》2022,34(5):825
The COVID-19 pandemic presents a continued public health challenge. Veterinary diagnostic laboratories in the United States use RT-rtPCR for animal testing, and many laboratories are certified for testing human samples; hence, ensuring that laboratories have sensitive and specific SARS-CoV2 testing methods is a critical component of the pandemic response. In 2020, the FDA Veterinary Laboratory Investigation and Response Network (Vet-LIRN) led an interlaboratory comparison (ILC1) to help laboratories evaluate their existing RT-rtPCR methods for detecting SARS-CoV2. All participating laboratories were able to detect the viral RNA spiked in buffer and PrimeStore molecular transport medium (MTM). With ILC2, Vet-LIRN extended ILC1 by evaluating analytical sensitivity and specificity of the methods used by participating laboratories to detect 3 SARS-CoV2 variants (B.1; B.1.1.7 [Alpha]; B.1.351 [Beta]) at various copy levels. We analyzed 57 sets of results from 45 laboratories qualitatively and quantitatively according to the principles of ISO 16140-2:2016. More than 95% of analysts detected the SARS-CoV2 RNA in MTM at ≥500 copies for all 3 variants. In addition, for nucleocapsid markers N1 and N2, 81% and 92% of the analysts detected ≤20 copies in the assays, respectively. The analytical specificity of the evaluated methods was >99%. Participating laboratories were able to assess their current method performance, identify possible limitations, and recognize method strengths as part of a continuous learning environment to support the critical need for the reliable diagnosis of COVID-19 in potentially infected animals and humans. 相似文献
13.
为了筛选得到对稻瘟病菌Magnaporthe grisea具有较高抑菌活性的新型化合物,根据稻瘟病菌中1,3,8-三羟基萘酚还原酶(3HNR)的结构信息,设计合成了系列2-硝基-1-芳乙烯(2a~2e)和2-溴-2-硝基-1-芳乙烯(3a,3b)目标化合物,并测试了其对3HNR和稻瘟病菌的抑制活性,同时运用分子对接方法对目标化合物与3HNR可能的结合模式进行了分析。结果表明:大部分目标化合物对3HNR都有很好的抑制作用(IC503的抑制活性最好,IC50值为0.53 μmol/L。在50 μg/mL下,目标化合物对稻瘟病菌的生长具有不同程度的抑制作用,其中2e、3a和3b的抑制率高于96%;3a和3b的EC50值分别为16.4和11.6 μg/mL。分子对接方法分析结果表明,硝基苯乙烯骨架结构与稻瘟病菌的3HNR活性空腔的氨基酸残基有较好的相互作用,其中化合物3中的溴原子可与3HNR中Tyr223和Tyr178的羟基形成氢键,从而解释了化合物3对3HNR有较好抑制作用的原因。 相似文献
14.
为发掘西藏地区本土的赤眼蜂资源,本研究利用灭活米蛾卵卡在西藏林芝嘎玛地区的梨园采集到一个赤眼蜂种群。采用ITS2序列比对鉴定所采集的赤眼蜂种类,并测定该蜂的生物学指标。结果表明:西藏林芝嘎玛地区所诱集的赤眼蜂鉴定为螟黄赤眼蜂Trichogramma chilonis Ishii,羽化率为80%,雌性比为57.14%,耐饥饿时间为1.08 d,后足径节长度为157.6μm。本研究将为发掘西藏地区赤眼蜂资源提供参考,并为利用赤眼蜂在西藏自治区开展生物防治实践奠定基础。 相似文献
15.
Greenhouse gas emissions in response to straw incorporation,water management and their interaction in a paddy field in subtropical central China 总被引:2,自引:0,他引:2
Cong Wang Hong Tang Kazuyuki Inubushi Georg Guggenberger 《Archives of Agronomy and Soil Science》2017,63(2):171-184
A field experiment was conducted to study the effects of combination of straw incorporation and water management on fluxes of CH4, N2O and soil heterotrophic respiration (Rh) in a paddy field in subtropical central China by using a static opaque chamber/gas chromatography method. Four treatments were set up: two rice straw incorporation rates at 0 (S1) and 6 (S2) t ha?1 combined with two water managements of intermittent irrigation (W1, with mid-season drainage) and continuous flooding (W2, without mid-season drainage). The cumulative seasonal CH4 emissions for the treatments of S1W2, S2W1 and S2W2 increased significantly by 1.84, 5.47 and 6.63 times, respectively, while seasonal N2O emissions decreased by 0.67, 0.29 and 1.21 times, respectively, as compared to S1W1 treatment. The significant increase in the cumulative Rh for the treatments S1W1, S2W1 and S2W2 were 0.54, 1.35 and 0.52 times, respectively, in comparison with S1W2. On a seasonal basis, both the CO2-equivalents (CO2e) and yield-scaled CO2e (GHGI) of CH4 and N2O emissions increased with straw incorporation and continuous flooding, following the order: S2W2>S2W1>S1W2>S1W1. Thus, the practices of in season straw incorporation should be discouraged, while mid-season drainage is recommended in paddy rice production from a point view of reducing greenhouse gas emissions. 相似文献
16.
陕西黄土高原中南部土壤CO2释放量变化研究 总被引:4,自引:0,他引:4
本文根据 NaOH溶液吸收CO_2的方法 ,对陕西黄土高原中南部4个观测点的土壤CO_2释放量时行了昼夜观测。观测结果表明 ,不同地区、不同气候和不同土质土壤CO_2释放量存在差异 ,冷干地区较暖湿地区土壤CO_2释放量少,凉季较暖季土壤CO_2释放量少;粘性硬质土较松散黄土CO_2 释放量少。长武、洛川、西安南郊土壤CO_2释放量变化再次证明 ,在厚层黄土发育的地区 ,土壤CO_2释放量变化相对于大气温度变化具有滞后性,从当日早晨至次日早晨,CO_2释放量具有由低变高再变低的普遍规律。 相似文献
17.
研究硅对盐胁迫下黄瓜幼苗生长及根细胞质膜H^+-ATPase、液泡膜H^+-ATPase、H^+-PPase和Ca^2+-ATPase活性的影响。结果表明:盐胁迫严重抑制黄瓜幼苗生长,根细胞质膜H^+-ATPase、液泡膜H^+-ATPase、H^+-PPase和Ca^2+-ATPase活性明显降低。硅处理明显提高盐胁迫黄瓜根液泡膜H^+-ATPase、H^+-PPase、Ca^2+-ATPase活性,一定程度上维持了液泡膜质子泵活性,有效地防御了细胞质酸化,这可能是硅提高黄瓜耐盐性的一个重要因素。 相似文献
18.
Peach tree replant disease, though reported on in the literature for more than two centuries, has yet to have its causes clearly defined. Decline in peach productivity has been attributed to toxic agents, insects, nutritional disturbances, spray residues, fungi and nematodes. Bacteria has also been indicated as a contributing factor.Peach replant disease was reproduced by using two successive cultures on the same soil. Bacterial communities were isolated and characterized from healthy and diseased peach trees. The potential role of cyanide production by rhizobacteria in the replant problem of peaches was studied. Culture-dependent (evaluation of the number of culturable bacteria, metabolic activities, Biolog® GN2) and independent (ribosomal intergenic spacer analysis, RISA) methods were used, in order to compare bacterial community structure and diversity in healthy and sick soils and to evaluate the possible role of cyanide.Bacterial densities were significantly increased in sick soils. Metabolic activities (Biolog® GN2) and genetic structure, observed through RISA, were also significantly modified in sick soils. Changes in the composition of individual microbial groups in the rhizosphere of peach trees excavated from healthy or sick soil indicated the involvement of rhizobacteria in the etiology of the replant sickness of peach soil. More than 60% of the strains isolated from healthy soils corresponded to Pseudomonas sp. and 58% of the isolates from sick soils were Bacillus sp. This study determined that Bacillus were able to produce in vitro HCN. It also appeared that in sick soil, there was a shift in the structure of bacterial communities with an increase noted in phytotoxic microorganisms capable of producing HCN compounds. 相似文献
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为了明确新型化合物苯并噻二唑甲酸三氟乙酯对土传病害的诱导抗病作用,本文研究了该化合物诱导仙客来对枯萎病的抗病效果。通过叶面喷施苯并噻二唑甲酸三氟乙酯可诱导仙客来对枯萎病的抗病效果,在仙客来移栽缓苗后7d叶面喷施该化合物,不同浓度对枯萎病的抗病效果不同,其中100mg.L-1的处理,在诱导后25、30和35d的抗病效果分别为82.90%、58.59%和64.17%;在仙客来成株枯萎病发病初期用该化合物诱导,抗病效果仍可达63.91%,显著高于噁霉灵处理(47.63%)。该研究将为寻求通过叶面喷雾施药防治园艺作物土传病害的新途径起到参考作用。 相似文献