Listing 1 - 10 of 13 | << page >> |
Sort by
|
Choose an application
PHY Physiology & Biochemistry --- cold tolerance --- physiology
Choose an application
thesis --- Cruciferae --- Arabidopsis thaliana --- abiotic factors --- acclimation --- cold tolerance --- thermodynamics
Choose an application
HOR Horticulture --- duplicates available --- cold tolerance --- horticulture --- plant physiology --- seasonal variation --- trees & shrubs
Choose an application
Cotoneaster --- Cotoneaster --- Introduced varieties --- Introduced varieties --- Invasive species --- Invasive species --- Permanent pastures --- Permanent pastures --- Natural pastures --- Natural pastures --- Calcareous soils --- Calcareous soils --- Germination --- Germination --- Stratification --- Stratification --- Cold tolerance --- Cold tolerance --- Pollinators --- Pollinators --- Biodiversity --- Biodiversity --- Belgium --- Belgium
Choose an application
Insecta --- Insecta --- Entomology --- Entomology --- Temperature. --- Temperature --- Cold --- Cold --- Heat shock --- Heat shock --- thermoregulation. --- thermoregulation --- Metabolism --- Metabolism --- Morphogenesis --- Morphogenesis --- ecology --- ecology --- Adaptation --- Adaptation --- Temperature resistance --- Temperature resistance --- industry --- industry --- sericulture --- sericulture --- apiculture. --- apiculture --- Cold tolerance --- Cold tolerance --- Thermoperiodisme --- Thermoperiodisme
Choose an application
GBZ General Biology, Zoology & Biophilosophy --- temperature effects --- extreme habitats --- environmental biology --- acclimation --- heaths --- cold resistance --- cold tolerance
Choose an application
Plant physiology --- Climatic change --- Tolerance. --- Tolerance --- Soil salinity --- Oxidation --- Flooding --- Heat tolerance --- Cold tolerance --- Salt tolerance --- Plant physiology. --- Plants --- Effect of stress on.
Choose an application
BODY TEMPERATURE --- THERMOREGULATION --- CONVECTION --- HEAT TRANSFER --- BLOOD CIRCULATION --- SWEAT COOLING --- EVAPORATIVE COOLING --- ENVIRONMENTS --- MORPHOLOGY --- RESPIRATION --- HUMANS --- ANIMALS --- COLD TOLERANCE --- ACCLIMATIZATION --- METABOLISM --- COMFORT --- TEMPERATURE --- PERFORMANCE EVALUATION --- ENERGY CONSERVATION --- RESIDENTIAL BUILDINGS --- THERMAL INSULATION --- URBAN TRANSPORTATION --- BUSES VEHICLES --- CLIMATE --- MATHEMATICAL MODELS --- BODY TEMPERATURE --- THERMOREGULATION --- CONVECTION --- HEAT TRANSFER --- BLOOD CIRCULATION --- SWEAT COOLING --- EVAPORATIVE COOLING --- ENVIRONMENTS --- MORPHOLOGY --- RESPIRATION --- HUMANS --- ANIMALS --- COLD TOLERANCE --- ACCLIMATIZATION --- METABOLISM --- COMFORT --- TEMPERATURE --- PERFORMANCE EVALUATION --- ENERGY CONSERVATION --- RESIDENTIAL BUILDINGS --- THERMAL INSULATION --- URBAN TRANSPORTATION --- BUSES VEHICLES --- CLIMATE --- MATHEMATICAL MODELS
Choose an application
Harmonia axyridis --- Écologie animale --- animal ecology --- Régime alimentaire --- diet --- Tolérance au froid --- Cold tolerance --- Parasitoïde --- Parasitoids --- Agent de lutte biologique --- Biological control agents --- Belgium --- 632.937.12 --- 595.763.79 --- Insecta --- Coccinellidae --- Theses --- Sciences and engineering --- biological sciences --- biology --- ecology --- entomology --- agriculture --- general --- 595.763.79 Coccinellidae --- 632.937.12 Insecta --- ecology. --- entomology. --- general. --- Biological sciences --- Agriculture --- General. --- Biology --- Ecology. --- Entomology.
Choose an application
This volume presents recent research achievements concerning the molecular genetic basis of agronomic traits in rice. Rice (Oryza sativa L.) is the most important food crop in the world, being a staple food for more than half of the world’s population. Recent improvements in living standards have increased the worldwide demand for high-yielding and high-quality rice cultivars. To develop novel cultivars with superior agronomic performance, we need to understand the molecular basis of agronomically important traits related to grain yield, grain quality, disease resistance, and abiotic stress tolerance. Decoding the whole rice genome sequence revealed that ,while there are more than 37,000 genes in the ~400 Mbp rice genome, there are only about 3000 genes whose molecular functions are characterized in detail. We collected in this volume the continued research efforts of scholars that elucidate genetic networks and the molecular mechanisms controlling agronomically important traits in rice.
Research & information: general --- Biology, life sciences --- Technology, engineering, agriculture --- grain number per panicle --- grain yield --- phase transition --- rachis branch --- rice panicle --- spikelet specialisation --- rice --- flowering time --- ambient temperature fluctuation --- chromosome segment substitution line (CSSL) --- quantitative trait locus (QTL) --- drought tolerance --- cold tolerance --- Oryza sativa --- OsCRP1 --- chloroplast ribonucleoproteins --- NAD(P)H dehydrogenase (NDH) complex --- nitrogen use efficiency --- transcriptional regulation --- nitrate reductase --- nitrate transporter --- glutamate synthase --- potassium chlorate --- QTL --- food shortage --- yield --- grain size --- OsBRKq1 --- genome editing --- homozygous --- proteomics --- C4 rice --- proto-Kranz --- photosynthetic efficiency --- crop improvement --- spike-stalk injection --- transcription factor --- OsWRKY55 --- drought response --- plant growth --- OsAP2-39 --- inflorescence architecture --- BLH homedomain protein --- branching pattern --- verticillate primary branch --- transcriptome analysis --- hormone pathways --- japonica DT3 --- submergence tolerance --- marker-assisted backcross --- foreground selection --- background selection --- three-dimensional imaging --- shoot apical meristem --- root tip --- n/a
Listing 1 - 10 of 13 | << page >> |
Sort by
|