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21.
犬瘟热,猫细小病毒,犬腺病毒弱毒株的理化特性及生物学试验 总被引:2,自引:3,他引:2
以鸡胚成纤维细胞(CEF)、猫肾传代细胞(CRFK)、狗肾传代细胞(MDCK)从引进的疫苗中分别分离到犬瘟热CDV-A株、猫细小病毒FPV株、犬腺病毒CAV1株。对三个弱毒株的细胞病变规律,形态特征,病毒滴度,理化特性,核酸型,血清学交叉反应,本动物的安全性及免疫原性等内容进行了试验。鉴定结果表明,3个弱毒株均可作为制苗用毒种 相似文献
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D I Bransby A G Matches C R Richardson 《African Journal of Range and Forage Science》2013,30(2):47-51
Abstract Due to rapid growth, stem build‐up in forage sorghum crops often leads to considerable wastage by animals and consequent loss of production. In this study the potential of the chemical plant growth regulator, mefluidide, for modifying the morphology of forage sorghum was examined. Mefluidide was applied to two consecutive plantings of forage sorghum at 0; 0,14 and 0,28 kg/ha. Treatment with mefluidide suppressed stem elongation of sorghum plants and stimulated tillering 4–6 weeks after application. After 6 weeks the stem:leaf ratio of treated plants was significantly lower (P ≤0,05) than that of control plants. On average, total dry matter (DM) yield was marginally higher for the control, but DM yield of leaf material was significantly higher. (P ≤0,05) for treated plots from 6 weeks after mefluidide application. No significant differences were observed between levels of mefluidide but responses of different variables over time differed between plantings. This was associated with different stages of plant growth when mefluidide was applied and different environmental conditions for two plantings. 相似文献
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中药凤尾草的研究进展 总被引:3,自引:0,他引:3
凤尾草是一种传统的药用植物,具有很高的药用价值,应用前景广阔。本文综述了凤尾草的鉴定、临床应用、药理作用和化学成分的研究概况,为中药凤尾草资源开发与合理利用提供依据。 相似文献
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不同氮磷处理对老芒麦种子产量、产量组分及根系的影响 总被引:2,自引:0,他引:2
试验采用裂区设计,研究不同氮磷处理对老芒麦(Elymus sibiricus L.)种子产量组分、产量以及对不同生育期老芒麦根系生长的影响.结果表明:施90 kg N·hm-2时,种子产量达到最高为592.26 kg·hm-2,氮肥对千粒重影响显著(P<0.05);施90 kg P·hm-2时,种子产量达到最大为680.61kg·hm-2,磷肥主要通过影响分蘖数、生殖枝数和小穗数来提高产量;氮磷互作对千粒重影响显著(P<0.05).不施肥时总根长和根系表面积根生长处于较高的水平,随着施氮量和施磷量的增加,根表面积和总根长均先减小后增加,氮肥对老芒麦根平均直径无显著影响;返青期至抽穗期根系生长速 相似文献
26.
沙地一年生植物五星蒿的构件特征研究 总被引:4,自引:0,他引:4
在甘肃省古浪县鸣沙咀,对典型沙生植物五星蒿Bassia dasyphylla形态及生物量空间分布特征进行研究。结果表明:冠幅、地径、根深、根幅、侧根数量与长度均与高度呈极显著线性正相关(P<0.01),其中地上部形态指标与高度的相关程度相对地下部较高;枝条分枝数量较多,一级分枝数为30.40个,二级分枝数达到了260.87个。五星蒿单株平均生物量为75.21 g,其中地上生物量为67.83 g,地下生物量仅为7.38 g;地上生物量集中于1030 cm,占地上生物量的77.64%,各构件依生物量的大小依次为:枝条、果实、叶片;地下生物量集中于010 cm,占地下生物量的76.29%,侧根较主根发达;不同层次间各构件鲜、干生物量的差异性基本相似,地上部分的差异主要表现在1020、2030与3040、4050 cm之间,地下部分的差异主要表现在010与1020、2030 cm之间,其他各层次相互之间的差异相对不显著。 相似文献
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Six Swedish Red and White dairy cows, producing 20-39 kg of 4% fat-corrected milk were given a ration balanced in energy and protein. They had access to feed from 05.15 to 09.00 and from 13.00 to 16.30 and were milked at 06.15 and 15.30. The milk was analysed for urea with a FIA technique.There was a significant diurnal variation in milk urea. The highest values were found 3–5 h after the beginning of the morning feeding and the lowest values (down to 60% of the max. values) during late night. Within 1 h after the start of the morning feeding the urea values had increased significantly, but they had decreased within the same time after the start of the afternoon feeding. Since there was a pronounced diurnal variation in the milk fat content, the urea concentration was also recalculated to concentration in the water phase of the milk. It was higher in that phase, but the pattern of the diurnal variation was not changed significantly. However, analyses on milk with a very high fat content may give misleading results.There were no important differences in the milk urea concentration of different udder quarters. When calculated as concentration in the water phase of the milk, no differences in urea concentration were found between the beginning and the end of milking. The analytical method had a good precision (coefficient of variation max. 3%). The milk urea concentration was not changed significantly after storage during 10 days at 4°C when no preservative was added; but after 17 days the milk had turned sour and the urea value had increased. When a preservative (bronopole) was added the urea concentration remained unchanged during 17 days. Deepfreezing did not influence the urea concentration. 相似文献
30.
An experiment was conducted to analyze feed, climate and animal factors affecting dry matter intake (DMI) in lactating dairy cows. Sixteen lactating Holstein cows, with parity from 1 to 6, were assigned to a feeding trial for 2 years, comprising 31 lactations. The animals were fed Italian ryegrass silage, oat hay, alfalfa hay, beet pulp and three types of concentrate. The data, pooled and classified by stage of lactation, season of lactation and parity were analyzed by stepwise multiple regression to determine the nature and extent of factors affecting DMI. A total of 45 prediction equations for DMI were derived. Energy‐corrected milk yield or milk yield was selected as the primary factor of DMI in all the equations in which the ratio of contribution (R2) varied from 0.26 to 0.67. The dietary concentration of organic cell wall, crude fiber, crude protein, organic b fraction, forage to concentrate ratio, average ambient temperature and temperature–humidity index were selected as the secondary factors affecting DMI for pooled data, late lactation (251–350 days of lactation), summer (June–August), spring (March–May), ≥4th lactation, autumn (September–November) and 3rd lactation, respectively, and improved R2 up to 0.77. Except for an impact of bodyweight in several equations, feed and climatic factors significantly improved prediction equations effectively for data classified in different ways. To estimate DMI accurately in lactating dairy cows, feed and climatic factors should be considered for specific conditions. 相似文献