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首页> 外文期刊>The Journal of Agricultural Science >Use of Sims sub(Dairy) Modelling Framework System to Compare the Scope On the Sustainability of a Dairy Farm of Animal and Plant Genetic-Based Improvements with Management-Based Changes
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Use of Sims sub(Dairy) Modelling Framework System to Compare the Scope On the Sustainability of a Dairy Farm of Animal and Plant Genetic-Based Improvements with Management-Based Changes

机译:SIMS子(乳制品)建模框架系统的使用比较了基于管理的改变的动物和植物遗传遗传学乳业的可持续性范围

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Currently, society awareness, legislations and competing markets demand dairy farming systems which are sustainable. In the near future, farm management and animal genetics will be key elements in developing such sustainability. Although the effect of farm management on some attributes of sustainability has already been studied, the impacts and scope for realizing goals of agricultural multifunctionality through genetic changes are still to be tested. Sustainable and Integrated Management Systems for Dairy Production (SIMS sub(DAIRY)) is a new farm level modelling framework which integrates these concepts to practical actions and brings all of this complexity into an operational and scientific modus operandi The current paper provides a brief description of the structure of SIMS sub(DAIRY) and an example of how it can be used to compare the scope for improving the overall sustainability of a dairy farm by: (i) future system changes aimed at improving genetic characteristics of plants and animals with (ii) current system structural changes aimed at improving nutrient management efficiency. In order to do this comparison, management factors and new genetic traits from plants or/and animals, acting singly or in combination, are evaluated against a baseline dairy farm scenario. Sustainability is measured in terms of targets associated with: (i) the Nitrates Directive, (ii) phosphorus (P) threshold for eutrophication, (iii) the Kyoto Protocol, (iv) the Gothenburg Protocol, (v) an adequate net farm income for standard of living and acceptable standards of (vi) quality of milk, (vii) animal welfare, (viii) level of biodiversity, (ix) landscape aesthetics and (x) soil quality Results suggest that genetic-based changes offer greater scope than management-based ones to improve sustainability up to an acceptable level. Costs associated with management changes are often too high within current socio-economics circumstances. Optimizing nitrogen (N) mineral fertilizer rate and timing was the only management-based measure that, while improving most of the environmental and biodiversity indices, resulted in improved economic results. Some genetic-based changes offered substantial scope for reducing environmental losses while having economic benefits. However, only those decreasing the crude protein (CP) of the plant and increasing the diet N cow partition into milk seemed to result in non-significant pollution swapping and be achievable in the nearby future.
机译:目前,社会意识,立法和竞争市场需要可持续的乳制品农业系统。在不久的将来,农场管理和动物遗传学将成为发展这种可持续性的关键因素。虽然已经研究了农业管理对某些可持续性属性的影响,但仍然测试通过遗传变化实现农业多功能目标的影响和范围。乳制品生产的可持续和综合管理系统(SIMS Sub(乳制品))是一个新的农场建模框架,将这些概念整合到实际行动,并将所有这些复杂性带入运营和科学的运作,目前的论文提供了简要说明SIMS子(乳制品)的结构和如何用于比较改善乳制品农场的整体可持续性的范围:(i)未来的体系变化,旨在改善植物和动物的遗传特征(II )目前的系统结构变化旨在提高营养管理效率。为了做到这一比较,对来自植物或/和动物单独或组合起作用的植物或/和动物的新遗传性状进行评估。可持续性在与:(i)硝酸盐指令,(ii)磷(ii)磷酸盐(ii)京都议定书(iv)哥德堡议定书,(v)适当的净农业收入对于(vi)质量的基于管理的管理,以提高可接受的水平。与管理变革相关的成本通常在当前的社会经济环境中往往太高。优化氮气(N)矿物肥料率和时序是唯一的管理措施,同时改善了大部分环境和生物多样性指数,导致经济成果提高。一些基于遗传的变化提供了在经济效益的同时降低环境损失的实质范围。然而,只有那些降低植物的粗蛋白(CP)并将饮食N母牛分区增加到牛奶中的似乎只会导致非显着的污染交换,并在附近的未来可实现。

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