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81.
Natural and within-farmland biodiversity enhances crop productivity   总被引:1,自引:0,他引:1  
Ongoing expansion of large-scale agriculture critically threatens natural habitats and the pollination services they offer. Creating patches with high plant diversity within farmland is commonly suggested as a measure to benefit pollinators. However, farmers rarely adopt such practice, instead removing naturally occurring plants (weeds). By combining pollinator exclusion experiments with analysis of honeybee behaviour and flower-visitation webs, we found that the presence of weeds allowed pollinators to persist within sunflower fields, maximizing the benefits of the remaining patches of natural habitat to productivity of this large-scale crop. Weed diversity increased flower visitor diversity, hence ameliorating the measured negative effects of isolation from natural habitat. Although honeybees were the most abundant visitors, diversity of flower visitors enhanced honeybee movement, being the main factor influencing productivity. Conservation of natural patches combined with promoting flowering plants within crops can maximize productivity and, therefore, reduce the need for cropland expansion, contributing towards sustainable agriculture.  相似文献   
82.
With a projected population of 10 billion by 2050, an immediate priority for agriculture is to achieve increased crop yields in a sustainable and cost-effective way. The concept of using a transgenic approach was realized in the mid-1990s with the commercial introduction of genetically modified (GM) crops. By 2010, the global value of the seed alone was US $11.2 billion, with commercial biotech maize, soya bean grain and cotton valued at approximately US $150 billion. In recent years, it has become evident that insect-resistant crops expressing δ-endotoxin genes from Bacillus thuringiensis have made a significant beneficial impact on global agriculture, not least in terms of pest reduction and improved quality. However, because of the potential for pest populations to evolve resistance, and owing to lack of effective control of homopteran pests, alternative strategies are being developed. Some of these are based on Bacillus spp. or other insect pathogens, while others are based on the use of plant- and animal-derived genes. However, if such approaches are to play a useful role in crop protection, it is desirable that they do not have a negative impact on beneficial organisms at higher trophic levels thus affecting the functioning of the agro-ecosystem. This widely held concern over the ecological impacts of GM crops has led to the extensive examination of the potential effects of a range of transgene proteins on non-target and beneficial insects. The findings to date with respect to both commercial and experimental GM crops expressing anti-insect genes are discussed here, with particular emphasis on insect predators and parasitoids.  相似文献   
83.
This paper introduces the concepts and aims of sustainable agriculture in China. Sustainable agricultural development comprises sustainability of agricultural production, sustainability of the rural economy, ecological and environmental sustainability within agricultural systems and sustainability of rural society. China's prime aim is to ensure current and future food security. Based on projections of China's population, its economy, societal factors and agricultural resources and inputs between 2000 and 2050, total grain supply and demand has been predicted and the state of food security analysed. Total and per capita demand for grain will increase continuously. Total demand will reach 648 Mt in 2020 and 700 Mt in 2050, while total grain yield of cultivated land will reach 470 Mt in 2010, 585 Mt in 2030 and 656 Mt in 2050. The per capita grain production will be around 360kg in the period 2000-2030 and reach 470kg in 2050. When productivities of cultivated land and other agricultural resources are all taken into consideration, China's food self-sufficiency ratio will increase from 94.4% in 2000 to 101.3% in 2030, suggesting that China will meet its future demand for food and need for food security. Despite this positive assessment, the country's sustainable agricultural development has encountered many obstacles. These include: agricultural water-use shortage; cultivated land loss; inappropriate usage of fertilizers and pesticides, and environmental degradation.  相似文献   
84.
鄂尔多斯市土地利用生态安全格局构建   总被引:21,自引:5,他引:16  
蒙吉军  朱利凯  杨倩  毛熙彦 《生态学报》2012,32(21):6755-6766
合理构建区域土地利用生态安全格局来实施管理对策和改善区域生态安全水平,已经成为区域生态环境保护的新需求。以位于中国北方农牧交错区的鄂尔多斯市为研究区,基于自然地理数据、社会经济统计数据、土地利用/覆被数据等,借助多目标优化模型和GIS空间分析技术,构建了鄂尔多斯市土地利用生态安全格局,结果表明:(1)不适宜性耕地所占比重较大,林地和草地分布比较合理,适宜的未利用地面积所占比重较大,后备土地资源丰富;(2)多目标优化结果显示,耕地、林地、水域和建设用地面积呈现增加的趋势;草地面积基本保持不变;未利用地面积大幅度下降;(3)土地利用生态安全格局显示,耕地面积增加,主要分布在水分条件较好的河流、湖泊和水库等的周边地区以及城镇和乡村居民点周围;林地面积大幅度增加,主要分布在达拉特旗北部和准格尔旗东部;草地略有增加,广泛分布于库布齐沙漠和毛乌素沙地以外的地区;建设用地增加面积主要来自于重点发展城镇的扩展和规划的重点矿产资源开采区;未利用地大幅度减少,主要集中在杭锦旗境内的库布齐沙漠以及乌审旗和鄂托克旗境内的毛乌素沙地。研究结果对鄂尔多斯市土地资源管理和生态安全建设具有重要指导意义。  相似文献   
85.
海南稻田土壤硒与重金属的含量、分布及其安全性   总被引:8,自引:0,他引:8  
采集了海南省18个市(县)代表性的稻田土壤耕作层(0—20cm)样品280个,研究了硒(Se)和5种有毒重金属元素(Hg、Cd、Cr、Pb和As)的含量、分布及其相关关系,并对Se和重金属的安全性进行评价,可为合理区划清洁且富Se稻田提供理论依据。结果表明:海南稻田土壤中Hg、Cd、Cr、Pb和As平均含量均低于国家土壤环境质量一级标准值和全国土壤背景值,以绿色食品产地环境技术条件限量标准为标准,用单项污染指数法和内梅罗综合污染指数法评价海南稻田土壤重金属的污染状况,结果都是清洁的。但以海南省土壤背景值做参比值,Hakanson潜在生态危害指数达到211.54,属于强生态危害,从潜在生态危害系数来看,Hg(102.61)和Cd(98.89)达到强生态危害,分别比海南省土壤背景值增加1.56和2.3倍,今后应注意控制Hg和Cd污染源。稻田土壤Se含量从痕量到1.532mg/kg之间,平均值为0.211mg/kg,占47.5%的稻田土壤Se含量处于中等及以上水平(>0.175mg/kg)。Se含量高的稻田土壤主要集中在东北部的海口及其周边的澄迈、定安、文昌和琼海,还有东南部的万宁和保亭。由于重金属平均含量还比较低,可暂时忽略重金属污染,故可在上述Se含量高的稻田土壤上种植富Se水稻。稻田土壤Se含量与Hg、Cd和As含量呈极显著或显著正相关,因此今后应加强研究稻田土壤Se与Hg、Cd和As的有效性及其相互作用,以便生产出绿色的富Se优质大米。  相似文献   
86.
Achieving yield gains in wheat   总被引:5,自引:0,他引:5  
Wheat provides 20% of calories and protein consumed by humans. Recent genetic gains are <1% per annum (p.a.), insufficient to meet future demand. The Wheat Yield Consortium brings expertise in photosynthesis, crop adaptation and genetics to a common breeding platform. Theory suggest radiation use efficiency (RUE) of wheat could be increased ~50%; strategies include modifying specificity, catalytic rate and regulation of Rubisco, up-regulating Calvin cycle enzymes, introducing chloroplast CO(2) concentrating mechanisms, optimizing light and N distribution of canopies while minimizing photoinhibition, and increasing spike photosynthesis. Maximum yield expression will also require dynamic optimization of source: sink so that dry matter partitioning to reproductive structures is not at the cost of the roots, stems and leaves needed to maintain physiological and structural integrity. Crop development should favour spike fertility to maximize harvest index so phenology must be tailored to different photoperiods, and sensitivity to unpredictable weather must be modulated to reduce conservative responses that reduce harvest index. Strategic crossing of complementary physiological traits will be augmented with wide crossing, while genome-wide selection and high throughput phenotyping and genotyping will increase efficiency of progeny screening. To ensure investment in breeding achieves agronomic impact, sustainable crop management must also be promoted through crop improvement networks.  相似文献   
87.
Agricultural production is under increasing pressure by global anthropogenic changes, including rising population, diversion of cereals to biofuels, increased protein demands and climatic extremes. Because of the immediate and dynamic nature of these changes, adaptation measures are urgently needed to ensure both the stability and continued increase of the global food supply. Although potential adaption options often consider regional or sectoral variations of existing risk management (e.g. earlier planting dates, choice of crop), there may be a global-centric strategy for increasing productivity. In spite of the recognition that atmospheric carbon dioxide (CO(2)) is an essential plant resource that has increased globally by approximately 25 per cent since 1959, efforts to increase the biological conversion of atmospheric CO(2) to stimulate seed yield through crop selection is not generally recognized as an effective adaptation measure. In this review, we challenge that viewpoint through an assessment of existing studies on CO(2) and intraspecific variability to illustrate the potential biological basis for differential plant response among crop lines and demonstrate that while technical hurdles remain, active selection and breeding for CO(2) responsiveness among cereal varieties may provide one of the simplest and direct strategies for increasing global yields and maintaining food security with anthropogenic change.  相似文献   
88.
Drylands occupy large portions of the Earth, and are a key terrestrial biome from the socio-ecological point of view. In spite of their extent and importance, the impacts of global environmental change on them remain poorly understood. In this introduction, we review some of the main expected impacts of global change in drylands, quantify research efforts on the topic, and highlight how the articles included in this theme issue contribute to fill current gaps in our knowledge. Our literature analyses identify key under-studied areas that need more research (e.g. countries such as Mauritania, Mali, Burkina Faso, Chad and Somalia, and deserts such as the Thar, Kavir and Taklamakan), and indicate that most global change research carried out to date in drylands has been done on a unidisciplinary basis. The contributions included here use a wide array of organisms (from micro-organisms to humans), spatial scales (from local to global) and topics (from plant demography to poverty alleviation) to examine key issues to the socio-ecological impacts of global change in drylands. These papers highlight the complexities and difficulties associated with the prediction of such impacts. They also identify the increased use of long-term experiments and multidisciplinary approaches as priority areas for future dryland research. Major advances in our ability to predict and understand global change impacts on drylands can be achieved by explicitly considering how the responses of individuals, populations and communities will in turn affect ecosystem services. Future research should explore linkages between these responses and their effects on water and climate, as well as the provisioning of services for human development and well-being.  相似文献   
89.
冯宏祖  姚永生  王兰 《生态学杂志》2012,31(10):2555-2560
以棉蚜及其天敌十一星瓢虫、叶色草蛉为对象,通过Y型嗅觉仪测定了3种昆虫对不同味源物的行为反应。结果表明,健康棉株叶片对棉蚜的吸引作用与虫害棉叶和茉莉酸甲酯(MeJA)处理棉叶未存在显著性差异;十一星瓢虫和叶色草蛉对虫害棉叶的选择性是健康棉叶的2.7和2.2倍(P<0.001),对MeJA处理棉叶的选择性明显高于健康叶片(P<0.001),其中0.02μmol.mL-1处理的棉叶对天敌的吸引力最强,单一的MeJA对十一星瓢虫和叶色草蛉也具有吸引作用。  相似文献   
90.
经济快速增长区城市用地空间扩展对生态安全的影响   总被引:5,自引:0,他引:5  
张健  高中贵  濮励杰  彭补拙 《生态学报》2008,28(6):2799-2799~2810
目前我国正处于经济快速发展、城市化进程加快阶段,承受着生态环境恶化的巨大压力,大多数城市已为环境污染、空间拥挤、绿化率低、秩序混乱等严重的城市问题所困扰.昆山市作为我国经济发展最为活跃的地区之一,其城市化过程与生态环境安全之间的矛盾更为突出.在总结国内外生态安全和城市生态研究的基础上,分析城市用地扩展对城市生态安全产生的影响.昆山市城市用地空间扩张经历了缓慢发展期(1949~1977年)、老城区改造期(1977~1985年)、新区开发期(1985~1999年)和快速扩展期(1999年至今)4个阶段,针对城市土地利用变化特征及其城市土地利用存在的问题,对昆山市城市用地空间扩展进程和模式及扩展的主要特征方面进行剖析.从城市废水、废气和固废排放量几个方面分析了昆山城市用地空间扩展过程中生态环境变化情况,指出高速工业化、城市化过程,快速增长的经济可能威胁到昆山城市的生态安全.同时建立城市生态安全评价模式,构建城市生态安全评价的指标体系,探讨城市生态安全评价的方法,评价了昆山市1985~2004年的城市生态安全,最后对昆山市未来城市生态安全进行预警.为维护昆山市的生态安全,实现可持续发展提供科学依据.  相似文献   
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