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姜瘟病是中国生姜生产上发生较为普遍的病害,是由青枯劳尔氏菌(Ralstoniasolanacearum)引起的。此病原菌寄主范围广,可侵染44个科300多种植物。菌体短杆状,在TZC选择性培养基上培养出现白边较宽和白边较窄的两种菌落。菌系划分为5个生理小种和5个生化型,中国的姜瘟菌主要属生理小种1号,生物型属II、III、IV。此病害是一种较难防治的土传病害,在高温、高湿、雨水多、氮肥过量的情况下发生较为严重。中国植病工作者对此病害作了大量的研究工作,对中国姜瘟病的病原菌、发病规律、及防治等研究进展作一综述。 相似文献
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有效碳数法研究及其在农药气相色谱分析中的应用 总被引:2,自引:0,他引:2
有机化合物结构与其所含有的有效碳数有一定的关系,本文给出了20类结构化合物及其所含有有效碳数的关系,并对理论计算值和实测值进行了比较,结果十分接近,利用有效碳数法可以设计农药分析实验方案和无标样的情况下测定农药杂质含量。 相似文献
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Composting and thermal drying are amongst the most commonly used post-digestion processes for allowing sanitation and biological stabilization of sewage sludge from municipal treatment plants, and making it suitable as soil conditioner for use in agriculture. To assess the impact of sludge-derived materials on soil microbial properties, fresh (LAF), composted (LAC) and thermally dried (LAT) sludge fractions, each resulting from a different post-treatment process of a same aerobically digested sewage sludge, were added at 1% (w/w) application rate on two contrasting (a loam and a loamy sand) soils and incubated under laboratory conditions for 28 days. Soil respiration, microbial ATP content, hydrolytic activities and arginine ammonification rate were monitored throughout the incubation period. Results showed that soil biochemical variables, including the metabolic quotient (qCO2), were markedly stimulated after sludge application, and the magnitude of this stimulatory effect was dependent on sludge type (precisely LAT > LAF > LAC), but not on soil type. This effect was related to the content of stable organic matter, which was lower in LAT. Genetic fingerprinting by PCR–DGGE revealed that compositional shifts of soil bacterial and, at greater extent, actinobacterial communities were responsive to the amendment with a differing sludge fraction. The observed time-dependent changes in the DGGE profiles of amended soils reflected the microbial turnover dependent on the sludge nutrient input, whereas no indications of adverse effects of sludge-borne contaminants were noted. Our findings indicate that composting rather thermal drying can represent a more appropriate post-digestion process to make sewage sludge suitable for use as soil conditioner in agriculture. 相似文献
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为探讨布氏乳杆菌和甲酸对青藏高原不同物候期燕麦(Avena sativa L.)青贮饲料发酵品质和细菌群落的影响,本试验以开花期、乳熟期和蜡熟期燕麦为原料,设置对照、添加甲酸和添加布氏乳杆菌3个处理,青贮90 d后,测定其营养成分、发酵指标和细菌群落组成。结果表明:布氏乳杆菌和甲酸处理均改变不同物候期燕麦青贮饲料中细菌群落组成(P<0.05),并提高其乳酸细菌相对丰富度;与对照相比,用布氏乳杆菌和甲酸处理不同物候期的燕麦青贮后,蜡熟期的燕麦pH值降低(P<0.05),乙酸均增加9.7%,丙酸分别降低11.6%和8.6%,氨态氮分别降低11.3%和19.2%。综合细菌群落组成、发酵品质和营养成分来看,蜡熟期的燕麦添加布氏乳杆菌和甲酸后,其青贮品质较佳。 相似文献
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阐述了图书出版的几种特殊情况,并结合沈阳化工大学图书馆工作实践,对索书号的给出进行了探讨,以方便读者检索利用。 相似文献
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Intensive land use practices necessary for providing food and raw materials are known to have a deleterious effect on soil. However, the effects that such practices have on soil microbes are less well understood. To investigate the effects of land use intensification on soil microbial communities we used a combined T-RFLP and pyrosequencing approach to study bacteria, archaea and fungi in spring and autumn at five long term observatories (LTOs) in Europe; each with a particular land use type and contrasting levels of intensification (low and high). Generally, due to large gradients in soil variables, both molecular methods revealed that soil microbial communities were structured according to differences in soil conditions between the LTOs, more so than land use intensity. Moreover, variance partitioning analysis also showed that soil properties better explained the differences in microbial communities than land use intensity effects. Predictable responses in dominant bacterial, archaeal and fungal taxa to edaphic conditions (e.g. soil pH and resource availability) were apparent between the LTOs. Some effects of land use intensification at individual field sites were observed. However, these effects were manifest when land use change affected soil conditions. Uniquely, this study details the responses of different microbial groups to soil type and land use intensification, and their relative importance across a range of European field sites. These findings reinforce our understanding of drivers impacting soil microbial community structure at both field and larger geographic scales. 相似文献
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