Nature Climate Change, ISSN 1758-678X, 2016, Volume 6, Issue 12, pp. 1130 - 1136
The potential impact of global temperature change on global crop yield has recently been assessed with different methods. Here we show that grid-based and...
Alterra - Climate change and adaptive land and water management | PE&RC | Alterra - Klimaatverandering en adaptief land- en watermanagement | Klimaatverandering | WIMEK | Leerstoelgroep Plantaardige productiesystemen | Plantaardige Productiesystemen | Leerstoelgroep Aardsysteemkunde | Climate Change and Adaptive Land and Water Management | Climate Change | Earth System Science | Plant Production Systems | Klimaatverandering en adaptief land- en watermanagement | VARIABILITY | ENVIRONMENTAL SCIENCES | METAANALYSIS | CO2 | GROWTH | CLIMATE-CHANGE | ENVIRONMENTAL STUDIES | METEOROLOGY & ATMOSPHERIC SCIENCES | TRENDS | WINTER-WHEAT | CROP YIELDS | Life Sciences | Agricultural sciences | Vegetal Biology | Environmental Sciences | Global Changes
Alterra - Climate change and adaptive land and water management | PE&RC | Alterra - Klimaatverandering en adaptief land- en watermanagement | Klimaatverandering | WIMEK | Leerstoelgroep Plantaardige productiesystemen | Plantaardige Productiesystemen | Leerstoelgroep Aardsysteemkunde | Climate Change and Adaptive Land and Water Management | Climate Change | Earth System Science | Plant Production Systems | Klimaatverandering en adaptief land- en watermanagement | VARIABILITY | ENVIRONMENTAL SCIENCES | METAANALYSIS | CO2 | GROWTH | CLIMATE-CHANGE | ENVIRONMENTAL STUDIES | METEOROLOGY & ATMOSPHERIC SCIENCES | TRENDS | WINTER-WHEAT | CROP YIELDS | Life Sciences | Agricultural sciences | Vegetal Biology | Environmental Sciences | Global Changes
Journal Article
Journal of Experimental Botany, ISSN 0022-0957, 04/2019, Volume 70, Issue 9, pp. 2535 - 2548
Early vigour was simulated to increase wheat yield due to increased biomass and grain number at wetter sites, but there was no benefit at dryer sites. Abstract...
APSIM next generation | Environment | Genotype | Establishment | Management | Triticum aestivum | Research Papers | environment | management | establishment | genotype
APSIM next generation | Environment | Genotype | Establishment | Management | Triticum aestivum | Research Papers | environment | management | establishment | genotype
Journal Article
PLoS ONE, ISSN 1932-6203, 04/2016, Volume 11, Issue 4, p. e0153695
Wheat production is threatened by water shortages and groundwater over-draft in the North China Plain (NCP). In recent years, winter wheat has been...
LEAF SENESCENCE | DATE | NITROGEN DYNAMICS | MULTIDISCIPLINARY SCIENCES | GROWTH | Adaptation, Physiological | Edible Grain - growth & development | Seeds - growth & development | Triticum - physiology | China | Seasons | Agricultural Irrigation - methods | Water - physiology | Crop yields | Supply and demand | Growth | Environmental aspects | Water, Underground | Research | Wheat | Irrigation | Seeds | Grain | Water use | Cotton | Seeding | Precipitation | Winter | Groundwater | Efficiency | Moisture content | Agronomy | Agricultural production | Evapotranspiration | Soil water | Crop yield | Water shortages | Cultivars | Seeding rate | Jointing | Harvesting | Crops | Water use efficiency | Nitrogen
LEAF SENESCENCE | DATE | NITROGEN DYNAMICS | MULTIDISCIPLINARY SCIENCES | GROWTH | Adaptation, Physiological | Edible Grain - growth & development | Seeds - growth & development | Triticum - physiology | China | Seasons | Agricultural Irrigation - methods | Water - physiology | Crop yields | Supply and demand | Growth | Environmental aspects | Water, Underground | Research | Wheat | Irrigation | Seeds | Grain | Water use | Cotton | Seeding | Precipitation | Winter | Groundwater | Efficiency | Moisture content | Agronomy | Agricultural production | Evapotranspiration | Soil water | Crop yield | Water shortages | Cultivars | Seeding rate | Jointing | Harvesting | Crops | Water use efficiency | Nitrogen
Journal Article
Journal of Experimental Botany, ISSN 0022-0957, 04/2019, Volume 70, Issue 9, pp. 2389 - 2401
A three-stage model development process facilitates the integration of modelling, phenotyping, and functional gene/QTL detection and effectively advances...
APSIM | Gene-based modelling | Early vigour | Genotype-phenotype prediction | Trait evaluation | Crop modelling
APSIM | Gene-based modelling | Early vigour | Genotype-phenotype prediction | Trait evaluation | Crop modelling
Journal Article
Journal Article
Agriculture, Ecosystems and Environment, ISSN 0167-8809, 12/2019, Volume 286, p. 106644
Nitrogen (N) deficiency is responsible for a large proportion of the exploitable yield gap that exists in Australian wheat production. In order to maximise N...
Farm profit | Soil organic C | N fertilisers | Wheat yields
Farm profit | Soil organic C | N fertilisers | Wheat yields
Journal Article
Field Crops Research, ISSN 0378-4290, 11/2017, Volume 213, pp. 51 - 64
The use of controlled release fertilisers (CRF) is being promoted in the Australian sugarcane industry to improve nitrogen (N) use efficiency and reduce N...
APSIM | Simulation | Nitrogen uptake pattern | Enhanced efficiency fertilisers | Nitrogen release pattern | AGRONOMY | YIELD | GROWTH | ACCUMULATION | MAIZE | UREA | WATER | Supply and demand | Analysis | Radiation | Models | Climatic changes | Sugarcane | Fertilizers
APSIM | Simulation | Nitrogen uptake pattern | Enhanced efficiency fertilisers | Nitrogen release pattern | AGRONOMY | YIELD | GROWTH | ACCUMULATION | MAIZE | UREA | WATER | Supply and demand | Analysis | Radiation | Models | Climatic changes | Sugarcane | Fertilizers
Journal Article
Global Change Biology, ISSN 1354-1013, 2019, Volume 25, Issue 1, pp. 155 - 173
Wheat grain protein concentration is an important determinant of wheat quality for human nutrition that is often overlooked in efforts to improve crop...
grain protein | climate change impact | wheat | climate change adaptation | food security | QUALITY | YIELD | SIMULATION | ENVIRONMENTAL SCIENCES | PRODUCTIVITY | ENRICHMENT | CROP MODELS | ECOLOGY | SENESCENCE | BIODIVERSITY CONSERVATION | ELEVATED ATMOSPHERIC CO2 | CARBON-DIOXIDE | Crop yields | Global temperature changes | Analysis | Wheat industry | Environmental aspects | Food supply | Wheat | Rain and rainfall | Adaptations | Nutrition | Computer simulation | Crop production | Grain | Carbon dioxide | Rainfall | Climatic changes | Regions | Environmental impact | Proteins | Climate change | Quality | Agricultural production | Yield | Crop yield | Genotypes | Life Sciences | Agricultural sciences | Vegetal Biology
grain protein | climate change impact | wheat | climate change adaptation | food security | QUALITY | YIELD | SIMULATION | ENVIRONMENTAL SCIENCES | PRODUCTIVITY | ENRICHMENT | CROP MODELS | ECOLOGY | SENESCENCE | BIODIVERSITY CONSERVATION | ELEVATED ATMOSPHERIC CO2 | CARBON-DIOXIDE | Crop yields | Global temperature changes | Analysis | Wheat industry | Environmental aspects | Food supply | Wheat | Rain and rainfall | Adaptations | Nutrition | Computer simulation | Crop production | Grain | Carbon dioxide | Rainfall | Climatic changes | Regions | Environmental impact | Proteins | Climate change | Quality | Agricultural production | Yield | Crop yield | Genotypes | Life Sciences | Agricultural sciences | Vegetal Biology
Journal Article
Global Change Biology, ISSN 1354-1013, 2019, Volume 25, Issue 4, pp. 1428 - 1444
Efforts to limit global warming to below 2°C in relation to the pre-industrial level are under way, in accordance with the 2015 Paris Agreement. However, most...
Water Systems and Global Change | Plant Production Systems | Water and Food | Water en Voedsel | WIMEK | Leerstoelgroep Plantaardige productiesystemen | Plantaardige Productiesystemen | extreme low yields | 1.5°C warming | model ensemble | wheat production | food security | climate change | Crop yields | Cropping systems | Analysis | Wheat industry | Global warming | Rain and rainfall | Food supply | Production data | Cereal crops | Agricultural development | Climate | Irrigation systems | Agricultural research | Grain | Variability | Carbon dioxide | Intercomparison | Agricultural production | Crop yield | Cultivars | Food | Agricultural management | Paris Agreement | Crops | Rainfall | Climate models | Regions | Climate change | Food security | Annual variations | Yield | Wheat
Water Systems and Global Change | Plant Production Systems | Water and Food | Water en Voedsel | WIMEK | Leerstoelgroep Plantaardige productiesystemen | Plantaardige Productiesystemen | extreme low yields | 1.5°C warming | model ensemble | wheat production | food security | climate change | Crop yields | Cropping systems | Analysis | Wheat industry | Global warming | Rain and rainfall | Food supply | Production data | Cereal crops | Agricultural development | Climate | Irrigation systems | Agricultural research | Grain | Variability | Carbon dioxide | Intercomparison | Agricultural production | Crop yield | Cultivars | Food | Agricultural management | Paris Agreement | Crops | Rainfall | Climate models | Regions | Climate change | Food security | Annual variations | Yield | Wheat
Journal Article
Agricultural and Forest Meteorology, ISSN 0168-1923, 09/2018, Volume 259, pp. 162 - 172
Overuse of groundwater for irrigation under the current high yielding wheat-maize double cropping system has led to quick depletion of groundwater resources in...
APSIM | Maize | Yield | Ground water recharge | Winter wheat | WATER-RESOURCES MANAGEMENT | AGRONOMY | SUMMER MAIZE ROTATION | MODEL | WINTER-WHEAT | IMPACT | NITROGEN | SOIL | FORESTRY | METEOROLOGY & ATMOSPHERIC SCIENCES | CLIMATE | Agricultural biotechnology | Corn | Aquatic resources | Groundwater overdraft | Cropping systems | Water-supply, Agricultural | Precipitation variability | Water in agriculture | Analysis | Pricing | Water, Underground | Rain and rainfall | Wheat
APSIM | Maize | Yield | Ground water recharge | Winter wheat | WATER-RESOURCES MANAGEMENT | AGRONOMY | SUMMER MAIZE ROTATION | MODEL | WINTER-WHEAT | IMPACT | NITROGEN | SOIL | FORESTRY | METEOROLOGY & ATMOSPHERIC SCIENCES | CLIMATE | Agricultural biotechnology | Corn | Aquatic resources | Groundwater overdraft | Cropping systems | Water-supply, Agricultural | Precipitation variability | Water in agriculture | Analysis | Pricing | Water, Underground | Rain and rainfall | Wheat
Journal Article
Field Crops Research, ISSN 0378-4290, 12/2017, Volume 214, pp. 283 - 290
In China, maize hybrid intercropping has been practiced by farmers for its higher grain yield, but the underlying mechanism remains unclear. Here, we present...
Thousand kernel weight | Land equivalent ratio | Kernel number | Biomass | RICE EXPERIMENTAL PLOTS | AGRONOMY | PERFORMANCE | STABILITY | WINTER-WHEAT | MIXTURES | CULTIVARS | PRODUCTIVITY | DISEASE | WATER-USE EFFICIENCY | GRAIN-YIELD | Corn | Crop yields | Cropping systems | Agricultural biotechnology
Thousand kernel weight | Land equivalent ratio | Kernel number | Biomass | RICE EXPERIMENTAL PLOTS | AGRONOMY | PERFORMANCE | STABILITY | WINTER-WHEAT | MIXTURES | CULTIVARS | PRODUCTIVITY | DISEASE | WATER-USE EFFICIENCY | GRAIN-YIELD | Corn | Crop yields | Cropping systems | Agricultural biotechnology
Journal Article
Field Crops Research, ISSN 0378-4290, 05/2018, Volume 221, pp. 219 - 227
Achieving the combination of high water use efficiency (WUE) and high yield is very important for the sustainable development of wheat production in the North...
Biomass | Water use efficiency | Grain yield | Grain number per m2 | Winter wheat | Grain number per m | CONDUCTANCE | AGRONOMY | DEFICIT IRRIGATION | MECHANISMS | RESPONSES | FRUITING EFFICIENCY | DURUM-WHEAT | BREAD WHEAT | GROWTH | EVAPOTRANSPIRATION | STRESS
Biomass | Water use efficiency | Grain yield | Grain number per m2 | Winter wheat | Grain number per m | CONDUCTANCE | AGRONOMY | DEFICIT IRRIGATION | MECHANISMS | RESPONSES | FRUITING EFFICIENCY | DURUM-WHEAT | BREAD WHEAT | GROWTH | EVAPOTRANSPIRATION | STRESS
Journal Article
Field Crops Research, ISSN 0378-4290, 08/2014, Volume 164, Issue 1, pp. 65 - 73
The concept of critical nitrogen (N) concentration (Ncc) has been used for both diagnostic purposes and modelling of wheat-N relations. Ncc has been derived...
APSIM | Developmental stage | Shoot biomass | Maximum N concentration | N dilution curve | AGRONOMY | SYSTEMS SIMULATION | WINTER-WHEAT | DECLINE | DILUTION CURVE | GROWTH | NORTH CHINA PLAIN | WATER | Wheat | Analysis | Models
APSIM | Developmental stage | Shoot biomass | Maximum N concentration | N dilution curve | AGRONOMY | SYSTEMS SIMULATION | WINTER-WHEAT | DECLINE | DILUTION CURVE | GROWTH | NORTH CHINA PLAIN | WATER | Wheat | Analysis | Models
Journal Article
小学教学参考:语文版, ISSN 1007-9068, 2011, Issue 8, pp. 28 - 28
Journal Article
摄影之友, ISSN 1004-0153, 2015, Issue 12, pp. 164 - 165
<正>卡尔·蔡司于9月份正式对外发布了全新的Milvus系列镜头,该系列镜头针对目前市场上的高像素传感器进行了适配设计,其提供了零畸变成像品质。作为与Otus并列的产品线,那么Milvus系列镜头会有什么样的特点,其成像品质到底如何?本期,我们将一同来感受卡尔·蔡司这一新的镜头系列产品的魅力。
Milvus系列;经典光学;成像品质;专业摄影师;锐度;最大光圈;光圈叶片;视频拍摄;尼康;系列产品
Milvus系列;经典光学;成像品质;专业摄影师;锐度;最大光圈;光圈叶片;视频拍摄;尼康;系列产品
Journal Article