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创新的层级遗传学应对蛋鸡生产中的全球挑战。

Innovative layer genetics to handle global challenges in egg production.

作者信息

Preisinger Rudolf

机构信息

a EW Layer Genetics , EW GROUP GmbH , Visbek , Germany.

出版信息

Br Poult Sci. 2018 Feb;59(1):1-6. doi: 10.1080/00071668.2018.1401828. Epub 2017 Dec 14.

DOI:10.1080/00071668.2018.1401828
PMID:29129115
Abstract
  1. In commercial layer breeding, extensive gene pools are tested and selected for market requirements which must be anticipated at least 5 years ahead. Field results confirm a continuous positive genetic trend in egg output and better feed efficiency which can be converted into land savings. 2. Animal welfare and cage-free housing dominate future needs of the market. Nesting behaviour and minimal tendency to develop feather-pecking or cannibalism without beak treatment are key trait complexes. Stronger shells for longer production cycles without moulting have to be combined with better bones. 3. No single big gene effect can be expected to control the multifactorial problem of feather-pecking. Adjusting the shape of the beak, with a heritability of .10-.25, can contribute to reducing the risk of severe cannibalism. 4. For better skeletal integrity, the assessment of bone quality in pedigree birds housed in enriched cages is done by keel bone palpation or ultrasound measurement of the humerus. Both traits show similar heritabilities in the range of .15-.30 and can be included in a balanced selection approach for performance, quality and welfare traits. 5. The combination of performance testing and genome-wide DNA marker analysis is a promising tool to generate more progress for a balanced performance and behaviour profile.
摘要
  1. 在商业蛋鸡育种中,会根据市场需求对广泛的基因库进行测试和选择,而这种市场需求必须至少提前5年预测。实地结果证实,蛋鸡产蛋量和饲料效率持续呈正向遗传趋势,这可以转化为土地节约。2. 动物福利和非笼养住房主导着未来的市场需求。筑巢行为以及在不进行断喙处理的情况下发生啄羽或同类相食的倾向最小,是关键的性状组合。在不换羽的情况下,要有更坚固的蛋壳以适应更长的生产周期,同时还要有更好的骨骼。3. 预计没有单一的大基因效应能控制啄羽这一多因素问题。调整喙的形状,其遗传力为0.10 - 0.25,有助于降低严重同类相食的风险。4. 为了获得更好的骨骼完整性,对于饲养在富集笼中的系谱鸡,通过龙骨触诊或肱骨超声测量来评估骨骼质量。这两个性状的遗传力在0.15 - 0.30范围内相似,可纳入性能、质量和福利性状的平衡选择方法中。5. 性能测试和全基因组DNA标记分析相结合,是一种很有前景的工具,可在平衡性能和行为特征方面取得更大进展。

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