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41.
选用14日龄健康的海佩科内用仔鸡48羽,随机分成试验(24羽)和对照(24羽)两组.试验组在饲粮中添加0.25%的茶多酚(TP),研究TP对鸡免疫功能的作用.试验结果表明,TP对自然感染法氏囊病鸡,有明显提高(p<0.05)鸡血液中红细胞C_(3b)受体和免疫复合物的含量及保护鸡脾脏正常的免疫功能,同时也发现TP对公母鸡法氏囊的重量有不同影响.本试验表明,TP具有提高家禽免疫功能的作用. 相似文献
42.
43.
通过本试验观察表明:黄皮[Clausena Lansium (Lour.)Skeels]的开花与温度有密切关系,温度高,开花过程短;温度低,开花过程长。花穗中的花轴增长速度也随温度升高而加快,花轴增长快,则花轴长,花穗大;反之,花轴增长速度慢,花轴短,花穗小。黄皮开花的顺序是从花穗基部第1—4个分枝开始,每个分枝则先从基部1—8个二次分枝首先开放。31℃是黄皮花粉萌发最适宜温度。在培养基中加入15—20%蔗糖或2.4—D,三十烷醇等生长调节物质,明显可提高黄皮花粉的萌发力。本试验对黄皮的物候期及植物学特性同时进行了研究。 相似文献
44.
Legumes contain a range of non‐nutritional phytochemicals that may have health‐promoting effects in humans. In this study, we determined the concentrations of four phytoestrogens (coumestrol, apigenin, luteolin and quercetin) in field‐grown alfalfa (Medicago sativa L.). Differences between plants of different stages of maturity, between plant parts, and different canopy segments were assessed. The concentration of individual phytoestrogen in whole herbage varied between 15 and 225 μg g?1 dry matter (DM) and was strongly affected by stage of maturity. Coumestrol and apigenin concentrations were highest at early vegetative stages, luteolin and quercetin at early vegetative and late flowering stages. All phytoestrogens were found in lowest concentrations at the early flowering stage (average 68 μg g?1 DM); stage at which alfalfa is usually harvested when used as a forage source for animals. At vegetative stages, apigenin was the predominant phytoestrogen in herbage followed by coumestrol, the reverse being observed upon initiation of flowering; luteolin and quercetin were found at all stages in similarly lower concentrations. Concentrations of luteolin, quercetin and apigenin were 225, 410 and 690 % greater, respectively, in flowers than in leaves or stems; coumestrol concentration was similar between plant parts. In flowers and stems the predominant phytoestrogens were apigenin and quercetin, followed by coumestrol and luteolin. Similar concentrations (average 26 μg g?1 DM) of each of the four phytoestrogens were found in leaves. Concentrations through the herbage canopy varied and were greatest at >60 cm from the soil surface for apigenin and coumestrol, but greatest at >60 and 0–20 cm for quercetin and at 0–20 cm for luteolin. The results suggest that if alfalfa is to be used as a source of phytoestrogens and is harvested for the production of herbal supplements or nutraceuticals, management will need to be adapted. 相似文献
45.
腐蚀管道剩余寿命的性能衰减模型研究 总被引:4,自引:0,他引:4
管道在长期的运行过程中,由于介质和土壤的腐蚀性,管材的微塑性变形、结构转变和渗氢等。不仅会使管道出现各种腐蚀损伤,而且还存在着老化效应和氢化作用,导致管材的脆变并改变材料的塑性,使机械性质参数发生衰退,从管材性能衰减和腐蚀损伤角度研究了管道的剩余寿命,提出了根据结构承载能力的极限值确定塑性变形时工作寿命的方法,为了确定剩余使用寿命,对剪切损伤率和屈服性能比等概念进行定义,在掌握管材金属剪切损害率和屈服性能比的时间特性基础上,建立了剩余寿命计算模型。并给出了算例。 相似文献
46.
提出了环泵泡沫比例混合器和泡沫压力比例混合器在相应灭火系统中的应用、安装和操作中应注意的问题,对两种泡沫比例混合器组成的系统进行了对比,认为环泵比例混合泡沫灭火系统采用正压进水,可以克服负压进水方式存在的缺陷,比较适合油库火灾的扑救;压力比例混合泡沫灭火系统灵活性、匹配性较差,适用于泡沫混合液流量相对不变的火灾扑救。 相似文献
47.
主要探讨了三种嘌呤型细胞分裂素:呋喃氨基嘌呤(KT)、苄氨基嘌呤(BAP)和异戊烯基腺嘌 呤(2ip),对怀山药的两个品种:淮山药和凤山药离体培养的影响。结果表明:两品种在MS KT2mg/L (单位下同)或2ip培养基上生长情况均较好,当附加NAA0.2时,一般可促进生根;但在培养基上,两 品种差异明显,淮山药表现腋芽生长受抑制,而凤山药则易形成丛生芽,而当此培养基附加NAA0.2 时,NAA与BAP可协同作用促进淮山药的腋芽生长,增加芽苗数,但对凤山药的生长则基本无影响。 通过不同培养基对凤山药快繁效果的比较,筛选出MS KT1 NAA0.2 0.1%活性碳为凤山药快繁较适 宜的培养基。 相似文献
48.
49.
饲用木聚糖酶的研究进展 总被引:1,自引:0,他引:1
木聚糖酶是一类可将木聚糖降解成低聚糖和木糖的复合酶系。对木聚糖酶的研究早在上世纪60年代就已开始,已经从不同来源的微生物中分离到大量的不同类型不同功能的木聚糖酶。研究得较为清楚的有里氏木霉、黑曲霉和浅青紫链霉菌等等。最近10几年,随着生物技术的不断发展和进步.特别是基因工程技术和蛋白质工程技术的广泛应用,对木聚糖酶的了解更加深入,已经分离出多种木聚糖酶基因,并已进行工业生产。木聚糖酶在饲料工业、制浆造纸工业、食品工业和能源工业中都显示出广阔的应用前景,已经引起了广泛关注。 相似文献
50.
Viral and bacterial agents associated with experimental transmission of infectious proventriculitis of broiler chickens. 总被引:1,自引:0,他引:1
G R Huff Q Zheng L A Newberry W E Huff J M Balog N C Rath K S Kim E M Martin S C Goeke J K Skeeles 《Avian diseases》2001,45(4):828-843
Proventriculitis of broilers can be reproduced by oral inoculation of day-old chicks with a proventricular homogenate from affected 3-wk-old broilers. The objective of the following studies was to isolate from this homogenate viral and bacterial isolates that could produce proventriculitis. A monoclonal antibody to infectious bursal disease virus (IBDV) was used to precipitate virus from the homogenate. A primary chicken digestive tract cell culture system was also used to isolate virus from a 0.2-microm filtrate of the homogenate, and a bacterium was also isolated from the homogenate. In trial 1, day-old birds were orally inoculated with either proventriculus homogenate or monoclonal antibody immunoprecipitated IBDV (MAB-IBDV). At 4, 7, 14, and 21 days postinfection (PI), 12 birds from each treatment group were subjected to necropsy. In trial 2, day-old birds were orally inoculated with either infectious proventriculus homogenate, suspect virus isolated in cell culture and propagated in embryo livers and spleens, or a bacterial isolate. Twelve birds from each treatment were subjected to necropsy at days 7, 14, 21, and 28 PI. In trial 3, treatments were maintained in negative pressure isolation chambers, and an additional treatment included virus plus bacterial isolate. Twenty-four birds from each treatment were subjected to necropsy at day 21 PI. In trial 1, infectious homogenate decreased body weight and relative gizzard weights at 4, 7, 14, and 21 days PI. Proventriculus relative weight was increased at days 7, 14, and 21 PI, and proventriculus lesion scores were increased at days 14 and 21 PI. Bursa/spleen weight ratios were decreased at day 14, and feed conversion was increased at days 4 and 21. The MAB-IBDV treatment decreased proventriculus and gizzard relative weights at day 4 PI, increased proventriculus lesion scores and bursa/spleen weight ratios at day 14, and decreased heterophil/lymphocyte ratios at day 21. In trial 2, all infected birds had significantly higher mean relative proventriculus weights at 21 days PI and had higher 4-wk mean proventriculus scores as compared with both control groups. In trial 3, birds treated with homogenate and birds treated with both suspect virus and the bacterial isolate had significantly higher proventriculus lesion scores; higher relative weights of proventriculus, gizzard, liver, and heart; lower body weights; and lower relative bursa weights compared with the saline control group. These studies suggest that infectious proventriculitis has a complex etiology involving both viral and bacterial infection. 相似文献