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This paper describes the development of a systems based model to characterise farmers’ decision-making process in information-intensive practices, and its evaluation in the context of Precision Agriculture (PA). A participative methodology was developed in which farm managers decomposed their process of decision-making into brief decision statements along with associated information requirements. The methodology was first developed on a university research farm in Denmark and further revised during testing on a number of research and commercial farms in Indiana, USA. Twenty-one decision-analysis factors were identified to characterise a farm manager’s decision-making process. Then, a general data flow diagram (DFD) was constructed that describes the information flows “from data to decision”. Illustrative examples of the model in the form of DFDs are presented for a strategic, a tactical and an operational decision. The model was validated for a range of decisions related to operations by three university farm managers and by five commercial farmers practicing PA for cereal, corn and soybean production in Denmark and in Indiana, USA. 相似文献
13.
试论农业机械化在建设社会主义新农村中的重要作用 总被引:1,自引:0,他引:1
建设社会主义新农村,是党中央从贯彻落实科学发展观、构建社会主义和谐社会的全局出发作出的重大战略部署,农业机械化发展必须适应农业现代化和建设社会主义新农村的需要,为我国实现农业现代化、解决“三农”问题,建设社会主义新农村作出农业机械化应有的贡献。 相似文献
14.
随着农业生物工程技术在农业生产中的应用,从90年代到下一个世纪农业将会发生一次新的“绿色革命”。本文简述了随着农业生物工程技术的发展和应用,将可能对农业机械的研究与开发以及农业机械化的发展产生的影响。 相似文献
15.
The growing set of fully-sequenced angiosperm genomes highlight the role of polyploidy in angiosperm evolution suggest that even the high level of importance we had already attributed to this mechanism was inadequate.…… 《分子植物育种》2007,5(2):151
The growing set of fully-sequenced angiosperm genomes highlight the role of polyploidy in angiosperm evolution, and suggest that even the high level of importance we had already attributed to this mechanism was inadequate. 相似文献
16.
农业用水是链接自然环境和社会经济发展的重要环节,研究农业水资源脆弱性的时空变化对揭示水资源的可持续开发利用、保障水资源安全、应对洪旱灾害具有重要意义。为研究中亚地区农业水资源脆弱性变化特征,本文以中亚五国为研究区,基于气象、土地覆盖、地形和社会经济数据,依据脆弱性概念框架,从暴露度、敏感度和适应度3个方面选取18个指标,建立了农业水资源脆弱性评价指标体系,采用等权重法和主成分分析法确定指标权重,对1992-2017年中亚农业水资源脆弱性进行了评价及特征分析。结果表明:1)中亚农业水资源脆弱性空间分布表现为"南高北低"的特征,5国中土库曼斯坦农业水资源脆弱性最强,其次为乌兹别克斯坦、塔吉克斯坦和吉尔吉斯斯坦,而哈萨克斯坦农业水资源脆弱性最弱;研究时段内农业水资源脆弱性空间分布格局变化较小。2)中亚农业水资源脆弱性随时间变化表现为"前期升高,中期降低,后期稳定"的态势,整个研究期内研究区农业水资源脆弱性变化类型以相对稳定为主。不同地区农业水资源脆弱性随时间的变化存在差异,吉尔吉斯斯坦西部和土库曼斯坦的农业水资源脆弱性升高,乌兹别克斯坦、塔吉克斯坦以及咸海地区水资源脆弱性降低,其他地区相对稳定。3)不同地区农业水资源脆弱性对各指标的敏感性不同,北部农业水资源脆弱性动态变化对农田灌溉定额和灌溉指数以负敏感为主,对其他指标以正敏感为主,而南部对各指标的敏感性正负均有;相关性分析表明,森林覆盖率、农业用水比例、农田灌溉定额、水分胁迫指数、灌溉指数和农业水分生产率是导致中亚农业水资源脆弱性空间差异的重要因素。4)为降低农业水资源脆弱性,中亚地区需发展集约型农业,调整作物种植结构,推广耐旱品种农作物,进行节水灌溉。研究结果可为中亚农业水资源规划管理、农业生产布局调整以及农业可持续发展提供参考依据。 相似文献
17.
The composition of arbuscular mycorrhizal fungi (AMF) communities found in agricultural systems has been found to be very different to that of forest. The implications of this, if any, for the restoration of indigenous forest on ex-agricultural land is poorly understood. This study investigated the effect that AMF communities isolated from ex-agricultural and forest soils have on the growth of an indigenous New Zealand tree species (Podocarpus cunninghamii). The forest AMF community was isolated from a remnant stand of P. cunninghamii forest and the ex-agricultural AMF from a retired grazing grassland. In addition, the study examined how the two AMF communities affected the competitiveness of P. cunninghamii when grown in competition with an invasive grass species (Agrostis capillaris), which is frequently dominant on ex-agricultural land in New Zealand. P. cunninghamii growth was significantly decreased by inoculation with ex-agricultural AMF compared to forest AMF. Furthermore, the forest AMF community was able to significantly increase P. cunninghamii root production when in competition with A. capillaris. The findings suggest that when attempting to restore indigenous forest on ex-agricultural land, inoculation of tree seedlings with appropriate forest AMF may improve their growth and survival. 相似文献
18.
Climatic changes and elevated atmospheric CO2 concentrations will affect crop growth and production in the near future. Rising CO2 concentration is a novel environmental aspect that should be considered when projections for future agricultural productivity are made. In addition to a reducing effect on stomatal conductance and crop transpiration, elevated CO2 concentration can stimulate crop production. The magnitude of this stimulatory effect (‘CO2 fertilization’) is subject of discussion. In this study, different calculation procedures of the generic crop model AquaCrop based on a foregoing theoretical framework and a meta-analysis of field responses, respectively, were evaluated against experimental data of free air CO2 enrichment (FACE) environments. A flexible response of the water productivity parameter of the model to CO2 concentration was introduced as the best option to consider crop sink strength and responsiveness to CO2. By varying the response factor, differences in crop sink capacity and trends in breeding and management, which alter crop responsiveness, can be addressed. Projections of maize (Zea mays L.) and potato (Solanum tuberosum L.) production reflecting the differences in responsiveness were simulated for future time horizons when elevated CO2 concentrations and climatic changes are expected. Variation in future yield potential associated with sink strength could be as high as 27% of the total production. Thus, taking into account crop sink strength and variation in responsiveness is equally relevant to considering climatic changes and elevated CO2 concentration when assessing future crop production. Indicative values representing the crop responsiveness to elevated CO2 concentration were proposed for all crops currently available in the database of AquaCrop as a first step in reducing part of the uncertainty involved in modeling future agricultural production. 相似文献
19.
Short-term population dynamics of ammonia oxidizing bacteria in an agricultural soil 总被引:2,自引:0,他引:2
Ammonia oxidizing bacteria (AOB) control the rate limiting step of nitrification, the conversion of ammonia (NH4+) to nitrite (NO2−). The AOB therefore have an important role to play in regulating soil nitrogen cycling. Tillage aerates the soil, stimulating rapid changes in soil N cycling and microbial communities. Here we report results of a study of the short term responses of AOB and net nitrification to simulated tillage and NH4+ addition to soil. The intensively farmed vegetable soils of the Salinas Valley, California, provide the context for this study. These soils are cultivated frequently, receive large N fertilizer inputs and there are regional concerns about groundwater N concentrations. An understanding of N dynamics in these systems is therefore important. AOB population sizes were quantified using a real-time PCR approach. In a 15 day experiment AOB populations, increased rapidly following tillage and NH4+ addition and persisted after the depletion of soil NH4+. AOB population sizes increased to a similar degree, over a 1.5-day period, irrespective of the amount of NH4+ supplied. These data suggest selection of an AOB community in this intensively farmed and C-limited soil, that rapidly uses NH4+ that becomes available. These data also suggest that mineralization may play an especially important role in regulating AOB populations where NH4+ pool sizes are very low. Methodological considerations in the study of soil AOB communities are also discussed. 相似文献
20.
近年来,我国农业电子政务发展迅速,成效显著。为加快推进农业部门工作方式由管理型向服务型转变,实现履行管理职能与服务职责并重,今后以“农业网站+手机(电话)+乡镇农业信息服务站”为主要方式,增强农业部门、涉农人员、涉农企(事)业法人单位信息交流的能力,提高农业电子政务服务水平。为促进农业增效、农民增收,加快现代农业发展,助推新农村建设,提供及时、准确、便捷的农业部门工作服务,已成为今后发展的趋势。 相似文献