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Multivariate estimation of genetic parameters involving more than a handful of traits can be afflicted by problems arising through substantial sampling variation. We present a review of underlying causes and proposals to improve estimates, focusing on linear mixed model‐based estimation via restricted maximum likelihood (REML). Both full multivariate analyses and pooling of results from overlapping subsets of traits are considered. It is suggested to impose a penalty on the likelihood designed to reduce sampling variances at the expense of a little additional bias. Simulation results are discussed which demonstrate that this can yield REML estimates that are on average closer to the population values than their unpenalized counterparts. Suitable penalties can be obtained based on assumed prior distributions of selected parameters. Necessary choices of penalty functions and of the stringency of penalization are examined. We argue that scale‐free penalty functions lend themselves to a simple scheme imposing a mild, default penalty which can yield “better” estimates without being likely to incur detrimental effects.  相似文献   

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<正>前言本标准的群补技术内容为强制性本标准按照GB/T 1.1-2009给出的规则起草本标准与GB 10648-1999相比,主要技术内容差异如下:★修订完善了标准的使用范围(见第一章)。★增加了饲料、饲料原料、饲料添加剂等术语的定义(见3.2~3.15);修改了药物饲料添加剂的定义(见3.18);删除了"保质期"的术语和定义;用"净含量"代替"净重"(见3.17),并规定了净含量的标示要求(见5.7)。★增加了标签中不得标示具有预防或者治疗动物疾病  相似文献   

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《中国奶牛》2011,(3):47-47
2010年全年畜牧业的恢复和发展,拉动了饲料的需求,全国饲料产量同比显著提高。全年饲料总产量(表1)、配合饲料产量(表2)及混合饲料产量(表3)分别达到17444.30万t、8486.00万t和4574.30万t,同比分别增长27.00%、17.50%和19.50%。  相似文献   

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Early rapid detection of Mycobacterium avium subspecies paratuberculosis (MAP) bacilli in milk samples is the major challenge since traditional culture method is time consuming and laboratory dependent. We report a simple, sensitive and specific nano-technology based ‘Nano-immuno test’ capable of detecting viable MAP bacilli in the milk samples within 10 h. Viable MAP bacilli were captured by MAP specific antibody-conjugated magnetic nano-particles using resazurin dye as chromogen. Test was optimized using true culture positive (10-bovine and 12-goats) and true culture negative (16-bovine and 25-goats) raw milk samples. Domestic livestock species in India are endemically infected with MAP. After successful optimization, sensitivity and specificity of the ‘nano-immuno test’ in goats with respect to milk culture was 91.7% and 96.0%, respectively. Whereas, it was 90.0% (sensitivity) and 92.6% (specificity) with respect to IS900 PCR. In bovine milk samples, sensitivity and specificity of ‘nano-immuno test’ with respect to milk culture was 90.0% and 93.7%, respectively. However, with respect to IS900 PCR, the sensitivity and specificity was 88.9% and 94.1%, respectively. Test was validated with field raw milk samples (goats-258 and bovine-138) collected from domestic livestock species to detect live/viable MAP bacilli. Of 138 bovine raw milk samples screened by six diagnostic tests, 81 (58.7%) milk samples were positive for MAP infection in one or more than one diagnostic tests. Of 81 (58.7%) positive bovine raw milk samples, only 24 (17.4%) samples were detected positive for the presence of viable MAP bacilli. Of 258 goats raw milk samples screened by six diagnostic tests, 141 (54.6%) were positive for MAP infection in one or more than one test. Of 141 (54.6%) positive raw milk samples from goats, only 48 (34.0%) were detected positive for live MAP bacilli. Simplicity and efficiency of this novel ‘nano-immuno test’ makes it suitable for wide-scale screening of milk samples in the field. Standardization, validation and re-usability of functionalized nano-particles and the test was successfully achieved in field samples. Test was highly specific, simple to perform and easy to read by naked eyes and does not require laboratory support in the performance of test. Test has potential to be used as screening test to estimate bio-load of MAP in milk samples at National level.  相似文献   

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It has been postulated that the one‐humped (Arabian) dromedary and the two‐humped (Bactrian) camel originated from a single ancestor. Consequently, the dromedary was considered a breed of the two‐humped camel, based on an anatomical study by Lombardini L, 1879: Ann. Del. Universita Toscane, 259 , 147, who described a reduced second hump like structure in foetal and adult dromedaries. To resolve this lingering issue, we analysed dromedary foetuses and calves. In contrast to the situation in two‐humped camels, we never observed any rudimentary second hump in the dromedary foetuses or calves.  相似文献   

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