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101.
102.
不同生长模型估计籽鹅早期体重发育规律及遗传参数 总被引:8,自引:0,他引:8
运用Logistic,Gompertz,VonBertalanfy和Cubic4种非线性生长模型对籽鹅1~1周龄的平均体重进行拟合,并分析生长发育规律及遗传参数。结果表明:虽然4个模型都能描述籽鹅的生长过程,拟合度均超过额0.99;但Logistic模型更符合实际饲养情况,能更好地预测体重,为最佳模型,其相应的体重极限参数A为2267.63g,调节参数B为16.27,瞬时相对生长率C为0.47,生长的拐点时间为6.48周龄,拐点体重为1136.81g。 相似文献
103.
Ferreira SR Araújo JV Braga FR Araujo JM Carvalho RO Silva AR Frassy LN Freitas LG 《Tropical animal health and production》2011,43(3):639-642
The ovicidal effect of the nematophagous fungus Pochonia chlamydosporia on eggs of Ascaris suum was tested under laboratory conditions. A. suum eggs were plated on 2% water–agar with seven fungal isolates (Isol. 5, Isol. 31, Isol. 1, VC1, Isol. 12, Isol. 22 and VC4)
and control without fungus. After 5, 7, 10, 14, 15 and 21 days of incubation, approximately 100 eggs were removed from the
plates and classified according to the following parameters: type 1, biochemical and physiological effect without morphological
damage to the eggshell, type 2, lytic effect with morphological alteration of the eggshell and embryo and type 3, lytic effect
with morphological alteration of eggshell and embryo showing hyphal penetration and internal egg colonization. The isolates
effectively destroyed A. suum eggs and all types of effects were observed during the experiment. There was no variation in ovicidal capacity (type 3 effect)
among the isolates (p > 0.05) throughout the experiment. After 21 days, isolate 5 showed the highest percentages of type 3 effect (58.33%). The
results indicated that P. chlamydosporia (Isol. 5, Isol. 31, Isol. 1, VC1, Isol. 12, Isol. 22 and VC4) can destroy A. suum eggs and is, therefore, a potential biological control agent of nematodes. 相似文献
104.
本文用组织切片方法观察研究了不同饲养条件下,8只8~9月龄的阿尔巴斯绒山羊瓣胃的解剖和组织学变化。研究结果表明:瓣胃的容积均以放牧羊的最大,其次为干草羊,最小的为青草羊。瓣胃的大、中、小瓣叶均以放牧羊的最高,其次为青草羊,最低的是干草羊。上皮的浅层是角化的复层扁平细胞,中间层的细胞有圆形、椭圆形;基底层的细胞是矮柱状,排列整齐。瓣胃大瓣叶黏膜上皮角化层的厚度:最厚的是干草羊、其次为放牧羊、最薄的是青草羊;大瓣叶中央肌层最厚的是青草羊、其次为干草羊、最薄的是放牧羊。 相似文献
105.
四种新烟碱类杀虫剂对蜜蜂的急性毒性及初级风险评估 总被引:1,自引:1,他引:1
采用饲喂管法和点滴法,分别测定了吡虫啉、噻虫嗪、噻虫胺、啶虫脒4种原药及其制剂对意大利蜜蜂成年工蜂的急性毒性,并采用危害商值(HQ)法进行了初级风险评价。结果表明:饲喂管法测得97.3%吡虫啉原药、25%吡虫啉可湿性粉剂、96%噻虫嗪原药、30%噻虫嗪悬浮剂、97%噻虫胺原药、5%噻虫胺可湿性粉剂、96%啶虫脒原药及40%啶虫脒可溶性粉剂的经口毒性48 hLD50值分别为有效成分8.04×10-3、9.46×10-3、7.04×10-3、4.64×10-3、11.8×10-3、5.25×10-3、5.22和6.31μg/蜂;点滴法测得各药剂的接触毒性48 h-LD50值分别为有效成分2.46×10-2、1.33×10-2、3.63×10-2、9.27×10-3、1.52×10-2、2.21×10-2、5.82和5.07μg/蜂。按《化学农药环境安全评价试验准则》的毒性等级划分标准,啶虫脒原药及其可溶性粉剂对蜜蜂的急性毒性均为中等毒,其他6种药剂对蜜蜂的急性毒性均为高毒;根据危害商值(HQ),啶虫脒对蜜蜂为低风险,吡虫啉、噻虫嗪和噻虫胺对蜜蜂均存在高风险。 相似文献
106.
Jemberu Dessie Solomon Melaku Firew Tegegne Kurt J. Peters 《Tropical animal health and production》2010,42(5):841-848
The experiment consisting of 7 days of digestibility and 90 days of feeding trial was conducted at Wogda (Ethiopia) to determine
the effect of supplementation of graded levels of concentrate mix (CM) on feed intake, digestibility, and body weight (BW)
change in hay-based feeding of Simada sheep. Twenty-yearling Simada sheep with a mean initial BW of 17.9 ± 0.81 kg (mean ±
SD) were used in randomized complete block design arranged into five blocks of four animals. The four dietary treatments that
consisted of hay alone (T1), hay +150 g dry matter (DM; T2, low), hay +250 g DM (T3, medium), and hay +350 g DM (T4, high)
CM were randomly assigned to each sheep within a block. The CM consisted of wheat bran (WB), noug seed (Guizotia abyssinica) meal and safflower (Carthamus tinctorius) seed meal at the ratio of (2:1:1), respectively. Supplementation with T2 and T3 increased (P < 0.001) total DM and organic matter intake than the control treatment. Overall, supplementation improved (P < 0.001) crude protein intake, digestibility, feed conversion efficiency, BW gain, and profitability compared to the control,
whereas sheep on the high than the low and medium level of supplementation performed better in these parameters among the
supplemented treatments. From the results of this study, T4 is recommended as the best level of supplementation since it resulted
in better nutrient utilization, animal performance, and profitability. 相似文献
107.
小麦全蚀病是检疫性的土传病害,对小麦生产危害极大,对其发生的监测是治理的根本。遥感技术可实时、宏观地监测病害发生发展,尤其是将光谱信息与高分辨率数字图像进行融合,可直观、精准地对病害识别和分类。本文基于计算机视觉技术,通过光谱数据与高分辨率数字图像结合的方法,对小麦全蚀病等级进行快速分类。首先,通过ASD非成像光谱仪获取小麦全蚀病的光谱信息,提取全蚀病特征光谱,建立光谱比。其次,利用无人机获取的实时田间数码图像,对其颜色特征进行重量化。最后,利用基于支持向量机的决策树分类对图像视场中的不同全蚀病等级进行分类。结果表明,4个全蚀病等级的分类精度均大于86%(Kappa0.81),平均运算时间小于30s。通过与实地调查的小麦全蚀病的白穗率等级做比对,验证分类结果的准确性,结果表明该方法基本可以实现对小麦全蚀病等级的实时监测。 相似文献
108.
毒死蜱与氟虫腈复配对环境生物的影响研究 总被引:1,自引:0,他引:1
本文测定了毒死蜱与氟虫腈及其复配对靶标生物小菜蛾和二化螟的室内活性,对非靶标生物意大利蜜蜂、家蚕、斑马鱼的毒性。试验结果为毒死蜱对小菜蛾,二化螟,蜜蜂,斑马鱼,家蚕的LC50分别为586.2,45.97,2.482,0.723,1.749mg/L;氟虫腈对上述生物的LC50分别为0.121 4,1.038,0.025 1,0.180,2.325mg/L;复配后对上述生物的LC50分别为0.5256,5.626,1.983,0.535,1.528mg/L。复配后对小菜蛾、二化螟的共毒系数为230.6、153.3,对蜜蜂、斑马鱼、家蚕的共毒系数为11.6、103.8、117.3。 相似文献
109.
我国从2000年至今,在上海、湖南、河南、湖北、江西、浙江、黑龙江等地陆续报道存在PCV2的血清学阳性,总阳性率在40%-80%。可见该病毒在国内普遍感染。本文就福州地区2003年至2005年八个县(市、区)规模化猪场PCV2的血清学、病原学、临床症状进行调查,现报告如下。1血清学调查1.1样品来源:2003年到2005年本地区八个县(市、区)41个猪场1171份血清。1.2检测方法:酶联免疫吸附试验。1.3诊断试剂:猪圆环病毒病酶联免疫诊断试剂盒,购自华中农业大学动物学院动物病毒室,批号分别为20031015、20040517、200507。1.4操作方法:见试剂盒内的说明。1.… 相似文献
110.
Tomoko Suzuki Shougo Nishimura Kazuhiro Yagi Ryousuke Nakamura Yoshihiro Takikawa Yoshinori Matsuda Koji Kakutani Teruo Nonomura 《Phytoparasitica》2018,46(1):31-43
The lengths of conidiophores in fungal colonies of the melon powdery mildew pathogen Podosphaera xanthii Pollacci KMP-6 N cultured under greenhouse (natural) conditions differed markedly from those cultured in a growth chamber. We hypothesized that light wavelength was responsible for the differences in conidiophore length. In this study, we examined the effects of light-emitting diode (LED) irradiation (purple, blue, green, orange, and red light) and white light on colony development and conidiophore formation in KMP-6 N using a stereomicroscope and a high-fidelity digital microscope. Colonies on leaves were flat under greenhouse conditions and under red LED light irradiation but were stacked under growth chamber conditions and under purple, blue, green, and orange LED light irradiation. In addition, KMP-6 N formed catenated conidia comprising six conidia per conidiophore under greenhouse conditions and red light but more than seven conidia per conidiophore under growth chamber conditions and purple, blue, green, and orange light. Furthermore, almost none of the conidia on top of the conidiophores grown under blue light were fully constricted. Therefore, these fungi could not scatter their conidia and spread infection. This is the first report of the effects of LED lights on conidiophore formation in the melon powdery mildew fungus P. xanthii. The results provide insight into the mechanisms underlying the responses of conidiophores to light of specific wavelengths and conidial scatter from conidiophores of melon powdery mildew fungi. 相似文献