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Articles 2011 - 2040 of 2726
Full-Text Articles in Agronomy and Crop Sciences
Can R&D Investment Offset The Negative Impact Of Climate Change On Agricultural Productivity?, Nazrul Islam, Ruhul A. Salim
Can R&D Investment Offset The Negative Impact Of Climate Change On Agricultural Productivity?, Nazrul Islam, Ruhul A. Salim
Climate Science Published Reports
Productivity growth in agriculture helps maintain the nation's economic prosperity. However, long-run productivity growth in agriculture faces several challenges such as the potential worsening of climate due to global warming and the loss of productive land due to land use competition, salinity, wind erosion and soil acidity. Strategic policy making and appropriate funding for sustained productivity growth in agriculture is therefore crucial.
Research and development (R&D) to drive innovation is an acknowledged main source of productivity growth. The development and application of technologies generated through R&D boosts agriculture's productivity. Agricultural R&D activities in Australia and in most other developed economies …
Corn And Soybean Profitability 2010, Gregory S. Halich
Corn And Soybean Profitability 2010, Gregory S. Halich
Agricultural Economics Presentations
No abstract provided.
Grain Market Outlook, Cory G. Walters
Grain Market Outlook, Cory G. Walters
Agricultural Economics Presentations
No abstract provided.
Wheat (Triticum Aestivum) Nam Proteins Regulate The Translocation Of Iron, Zinc, And Nitrogen Compounds From Vegetative Tissues To Grain, Brian M. Waters, Cristobal Uauy, Jorge Dubcovsky, Michael A. Grusak
Wheat (Triticum Aestivum) Nam Proteins Regulate The Translocation Of Iron, Zinc, And Nitrogen Compounds From Vegetative Tissues To Grain, Brian M. Waters, Cristobal Uauy, Jorge Dubcovsky, Michael A. Grusak
Department of Agronomy and Horticulture: Faculty Publications
The NAM-B1 gene is a NAC transcription factor that affects grain nutrient concentrations in wheat (Triticum aestivum). An RNAi line with reduced expression of NAM genes has lower grain protein, iron (Fe), and zinc (Zn) concentrations. To determine whether decreased remobilization, lower plant uptake, or decreased partitioning to grain are responsible for this phenotype, mineral dynamics were quantified in wheat tissues throughout grain development. Control and RNAi wheat were grown in potting mix and hydroponics. Mineral (Ca, Cu, Fe, K, Mg, Mn, P, S, and Zn) and nitrogen (N) contents of organs were determined at regular intervals to …
Best Management Practices For Corn Production In South Dakota: Websites With Related Information, David E. Clay, Kurtis D. Reitsma
Best Management Practices For Corn Production In South Dakota: Websites With Related Information, David E. Clay, Kurtis D. Reitsma
SDSU Extension Circulars
No abstract provided.
Best Management Practices For Corn Production In South Dakota: Recordkeeping, James A. Wilson, Kurtis D. Reitsma, David E. Clay
Best Management Practices For Corn Production In South Dakota: Recordkeeping, James A. Wilson, Kurtis D. Reitsma, David E. Clay
SDSU Extension Circulars
Recordkeeping is an important component of all crop production systems. The time that is spent maintaining careful records can help to improve the production, profit, and overall efficiency of the production enterprise. Records provide information needed to identify successes and failures.
Best Management Practices For Corn Production In South Dakota: Corn Grain Harvest, Daniel S. Humberg, Richard E. Nicolai, Kurtis D. Reitsma
Best Management Practices For Corn Production In South Dakota: Corn Grain Harvest, Daniel S. Humberg, Richard E. Nicolai, Kurtis D. Reitsma
SDSU Extension Circulars
Corn (grain) harvest can begin when grain moisture drops below 30%. However, most producers will allow corn to dry in the field until grain moisture is between 18 to 25%. Harvesting corn when grain moisture levels are high can result in excessive drying costs, kernel damage, and harvest loss from improper threshing. Allowing corn to stay in the field too long can result in excess harvest loss from stalk lodging, ear drop, or kernel shattering. An optimal harvest depends not only on the condition of the crop but also on the proper maintenance and adjustment of harvest and grain handling …
Best Management Practices For Corn Production In South Dakota: Corn Insect Pests, Michael A. Catangui, Billy W. Fuller, B. Wade French
Best Management Practices For Corn Production In South Dakota: Corn Insect Pests, Michael A. Catangui, Billy W. Fuller, B. Wade French
SDSU Extension Circulars
Historically, the major corn insect pests have been corn rootworms (northern and western), European corn borer, and black cutworm. Bt-corn hybrids are effective against most of these pests. However, Bt-corn hybrids are not effective against corn leaf aphid, corn root aphid, sap beetles, corn rootworm adults, grasshoppers, white grubs, wireworms, seed corn beetle, and seed corn maggots. These insect pests can reduce corn yields. This chapter discusses the management and biology of important corn insect pests commonly observed in South Dakota.
Best Management Practices For Corn Production In South Dakota: Soil Fertility, David E. Clay, Kurtis D. Reitsma
Best Management Practices For Corn Production In South Dakota: Soil Fertility, David E. Clay, Kurtis D. Reitsma
SDSU Extension Circulars
Corn requires sufficient amounts of at least 14 nutrients for optimal production (fig. 7.1). Soil fertility strategies should consider soil residual plant nutrients, cost of fertilizer relative to the value of corn, and management techniques that increase efficiency.
Best Management Practices For Corn Production In South Dakota : Corn Calendar And Troubleshooting Guide, Troy Bauder, Dwayne L. Beck, Sue L. Blodgett, C. Gregg Carlson, Michael A. Catangui, David E. Clay, Sharon A. Clay, Darrell L. Deneke, Martin A. Draper, B. Wade French, Billy W. Fuller, Robert G. Hall, Curt A. Hoffbeck, Daniel S. Humburg, Marie A. Langham, Douglas D. Malo, Mike J. Moechnig, Richard E. Nicolai, Kurtis D. Reitsma, Bradley E. Ruden, Thomas E. Schumacher, Dennis P. Todey, Todd P. Trooien, Hal D. Werner, James A. Wilson, Howard J. Woodard, Leon J. Wrage
Best Management Practices For Corn Production In South Dakota : Corn Calendar And Troubleshooting Guide, Troy Bauder, Dwayne L. Beck, Sue L. Blodgett, C. Gregg Carlson, Michael A. Catangui, David E. Clay, Sharon A. Clay, Darrell L. Deneke, Martin A. Draper, B. Wade French, Billy W. Fuller, Robert G. Hall, Curt A. Hoffbeck, Daniel S. Humburg, Marie A. Langham, Douglas D. Malo, Mike J. Moechnig, Richard E. Nicolai, Kurtis D. Reitsma, Bradley E. Ruden, Thomas E. Schumacher, Dennis P. Todey, Todd P. Trooien, Hal D. Werner, James A. Wilson, Howard J. Woodard, Leon J. Wrage
SDSU Extension Circulars
No abstract provided.
Best Management Practices For Corn Production In South Dakota : Corn Drying And Storage, Troy Bauder, Dwayne L. Beck, Sue L. Blodgett, C. Gregg Gregg
Best Management Practices For Corn Production In South Dakota : Corn Drying And Storage, Troy Bauder, Dwayne L. Beck, Sue L. Blodgett, C. Gregg Gregg
SDSU Extension Circulars
The goal for a corn drying and storage system is to maintain grain quality without impeding harvesting or shipping. This chapter describes the factors that influence grain quality, proper handling techniques, drying procedures, storage management, and safety precautions.
Best Management Practices For Corn Production In South Dakota: Weeds And Herbicide Injury In Corn, Sharon Clay, Mike J. Moechnig
Best Management Practices For Corn Production In South Dakota: Weeds And Herbicide Injury In Corn, Sharon Clay, Mike J. Moechnig
SDSU Extension Circulars
This chapter addresses weed problems and herbicide injuries that commonly occur in South Dakota corn production. Photographs and information are provided to assist producers in managing weed pressure and to help identify herbicide injury symptoms resulting from improper application, unintentional exposure, or adverse environmental conditions.
Best Management Practices For Corn Production In South Dakota: Useful Calculations: Corn Yields And Storage Requirements, Kurtis D. Reitsma, David Clay, Sharon Clay, C. Gregg Calson
Best Management Practices For Corn Production In South Dakota: Useful Calculations: Corn Yields And Storage Requirements, Kurtis D. Reitsma, David Clay, Sharon Clay, C. Gregg Calson
SDSU Extension Circulars
No abstract provided.
Best Management Practices For Corn Production In South Dakota, Troy Bauder, Dwayne L. Beck, Sue L. Blodgett, C. Gregg Carlson, Michael A. Catangui, David E. Clay, Sharon A. Clay, Darrell L. Deneke, Martin A. Draper, B. Wade French, Billy W. Fuller, Robert G. Hall, Curt A. Hoffbeck, Daniel S. Humburg, Marie A. Langham, Douglas D. Malo, Mike J. Moechnig, Richard E. Nicolai, Kurtis D. Reitsma, Bradley E. Ruden, Thomas E. Schumacher, Dennis P. Todey, Todd P. Trooien, Hal D. Werner, James A. Wilson, Howard J. Woodard, Leon J. Wrage
Best Management Practices For Corn Production In South Dakota, Troy Bauder, Dwayne L. Beck, Sue L. Blodgett, C. Gregg Carlson, Michael A. Catangui, David E. Clay, Sharon A. Clay, Darrell L. Deneke, Martin A. Draper, B. Wade French, Billy W. Fuller, Robert G. Hall, Curt A. Hoffbeck, Daniel S. Humburg, Marie A. Langham, Douglas D. Malo, Mike J. Moechnig, Richard E. Nicolai, Kurtis D. Reitsma, Bradley E. Ruden, Thomas E. Schumacher, Dennis P. Todey, Todd P. Trooien, Hal D. Werner, James A. Wilson, Howard J. Woodard, Leon J. Wrage
SDSU Extension Circulars
Table of Contents:
Introduction [Page] 1
1. Corn Growth and Development [Page] 3
2. Corn Hybrid Selection [Page] 9
3. Corn Planting Guide [Page] 13
4. Seasonal Hazards—Frost, Hail, Drought, and Flooding [Page] 17
5. Tillage, Crop Rotations, and Cover Crops [Page] 21
6. Irrigation and Salt Management [Page] 31
7. Soil Fertility [Page] 39
8. Corn Insect Pests [Page] 49
9. Corn Diseases in South Dakota [Page] 59
10. Weeds and Herbicide Injury in Corn [Page] 71
11. Corn Grain Harvest [Page] 93
12. Corn Drying and Storage [Page] 99
13. Recordkeeping [Page] 107
14. Useful Calculations: Corn Yields …
Best Management Practices For Corn Production In South Dakota : Corn Diseases In South Dakota, Troy Bauder, Dwayne L. Beck, Sue L. Blodgett, C. Gregg Carlson, Michael A. Catangui, David E. Clay, Sharon A. Clay, Darrell L. Deneke, Martin A. Draper, B. Wade French, Billy W. Fuller, Robert G. Hall, Curt A. Hoffbeck, Daniel S. Humburg, Marie A. Langham, Douglas D. Malo, Mike J. Moechnig, Richard E. Nicolai, Kurtis D. Reitsma, Bradley E. Ruden, Thomas E. Schumacher, Dennis P. Todey, Todd P. Trooien, Hal D. Werner, James A. Wilson, Howard J. Woodard, Leon J. Wrage
Best Management Practices For Corn Production In South Dakota : Corn Diseases In South Dakota, Troy Bauder, Dwayne L. Beck, Sue L. Blodgett, C. Gregg Carlson, Michael A. Catangui, David E. Clay, Sharon A. Clay, Darrell L. Deneke, Martin A. Draper, B. Wade French, Billy W. Fuller, Robert G. Hall, Curt A. Hoffbeck, Daniel S. Humburg, Marie A. Langham, Douglas D. Malo, Mike J. Moechnig, Richard E. Nicolai, Kurtis D. Reitsma, Bradley E. Ruden, Thomas E. Schumacher, Dennis P. Todey, Todd P. Trooien, Hal D. Werner, James A. Wilson, Howard J. Woodard, Leon J. Wrage
SDSU Extension Circulars
Corn diseases can be separated into 1) seed and seedling diseases, 2) root-infecting nematodes, 3) leaf diseases, 4) rusts, 5) stalk rots, and 6) ear and grain molds. Yield losses can result from diseases directly reducing yields or from harvestability, spoilage, or marketing and/or use issues associated with mycotoxin contamination. See Table 9.1 for corn disease management information. Attention to optimal seed quality, hybrid selection, seed treatments, weed and insect control, crop rotation, soil fertility, irrigation, and prompt harvest can reduce disease impacts. This chapter discusses aspects of recognizing and managing South Dakota corn diseases.
Severity Of Root Rot In Mature Subterranean Clover And Associated Fungal Pathogens In The Wheatbelt Of Western Australia, Tim Scanlon, Tiernan A. O’Rourke, Martin J. Barbetti, Megan H. Ryan, Len J. Wade, Alan C. Mckay, Ian T. Riley, Hua Li, Krishnapillai Sivasithamparam
Severity Of Root Rot In Mature Subterranean Clover And Associated Fungal Pathogens In The Wheatbelt Of Western Australia, Tim Scanlon, Tiernan A. O’Rourke, Martin J. Barbetti, Megan H. Ryan, Len J. Wade, Alan C. Mckay, Ian T. Riley, Hua Li, Krishnapillai Sivasithamparam
Journal articles
Pasture decline is considered to be a serious challenge to agricultural productivity of subterranean clover across southern Australia. Root disease is a significant contributing factor to pasture decline. However, root disease assessments are generally carried out in the early part of the growing season and in areas predominantly sown to permanent pastures. For this reason, in spring 2004, a survey was undertaken to determine the severity of root disease in mature subterranean clover plants in pastures located in the wheatbelt of Western Australia. DNA-based soil assays were used to estimate population density in the soil of a variety of soil-borne …
Intsormil 2009 Annual Report, John M. Yohe, Kimberly Christiansen, Joan Frederick
Intsormil 2009 Annual Report, John M. Yohe, Kimberly Christiansen, Joan Frederick
INTSORMIL Impacts and Bulletins
The 2009 INTSORMIL Annual Report presents the progress and notable achievements by the Sorghum, Millet and Other Grains CRSP during the period of September 30, 2008 through September 29, 2009. These results are an outcome of partnerships between scientists at six U.S. Land Grant Universities (Kansas State University, University of Nebraska, The Ohio State University, Purdue University, Texas A&M University and West Texas A&M University), scientists of the Agricultural Research Service of the U. S. Department of Agriculture at Tifton, Georgia and the National Agricultural Research Systems (NARS) and National Universities in sixteen countries in Central America, West Africa, East …
Survey Of Western Australian Agricultural Lime Sources, Chris Gazey, Dave Gartner
Survey Of Western Australian Agricultural Lime Sources, Chris Gazey, Dave Gartner
Bulletins 4000 -
As a service to WA wheatbelt farmers, to assist with cost effective management of soil acidity, a survey of agricultural lime availability and quality was conducted by the Department of Agriculture and Food, Western Australia.
The quality of agricultural lime surveyed varied widely between pits. High quality lime is available from limes and, limestone and dolomite sources. Twice as much of the lowest neutralising value lime surveyed would need to be applied compared to the highest to achieve the same increase in soil pH. Limes also varied in the distribution of particle sizes. Selecting limes with a high proportion of …
Atlas Of Sorghum (Sorghum Bicolor (L.) Moench): Production In Eastern And Southern Africa, Charles S. Wortmann, Martha Mamo, Christopher Mburu, Elias Letayo, Girma Abebe, Kaizzi C. Kayuki, Medson Chisi, Munyaradzi Mativavarira, Soares Xerinda, Theophile Ndacyayisenga
Atlas Of Sorghum (Sorghum Bicolor (L.) Moench): Production In Eastern And Southern Africa, Charles S. Wortmann, Martha Mamo, Christopher Mburu, Elias Letayo, Girma Abebe, Kaizzi C. Kayuki, Medson Chisi, Munyaradzi Mativavarira, Soares Xerinda, Theophile Ndacyayisenga
INTSORMIL Scientific Publications
Grain sorghum (Sorghum bicolor (L.) Moench) is a major crop in many parts of Africa and is noted for its versatility and diversity. It is adapted over a wide range of precipitation and temperature levels and is produced at sea level to above 2000 m altitude. In eastern and southern Africa, it is primarily a crop of resource-poor, small-scale farmers and is typically produced under adverse conditions such as low input use and marginal lands. There are numerous biotic and abiotic constraints to production. The grain and stover are used in many different ways with localized preferences. Much information …
Food, Fibre And Flowers, Fuelling The Economy With Innovation And Science, Department Of Agriculture And Food, Western Australia
Food, Fibre And Flowers, Fuelling The Economy With Innovation And Science, Department Of Agriculture And Food, Western Australia
Horticulture published reports
The Department of Agriculture and Food is a world leader in the rapidly growing field of agri-food and fibre research and development, providing significant benefits for Westen Australian producers, the food industry sector and consumers.
The development of value-added products through innovation and science, which deliver real opportunities for the State's agri-food export capacity, is also important.
Seven examples of the Department's science and innovation.
Plan To Support Horticulture Industry Development 2009-2012, Department Of Agriculture And Food, Western Australia
Plan To Support Horticulture Industry Development 2009-2012, Department Of Agriculture And Food, Western Australia
Horticulture published reports
The Plan to Support Horticulture Industry Development ('the Plan') recognises that healthy and profitable Western Australian agricultural industries are integral to the economic wellbeing of regional and rural communities. The Plan promotes a progressive and productive horticultural industry through efficient use of natural resources, high standards of biosecurity, modern marketing, value-adding and research to enhance continuous improvement throughout the supply chain from producer to consumer.
Plan To Support Horticulture Industry Development 2009 - 2012 - For Discussion, Department Of Agriculture And Food, Western Australia
Plan To Support Horticulture Industry Development 2009 - 2012 - For Discussion, Department Of Agriculture And Food, Western Australia
Horticulture published reports
The State Government's increased investment in agriculture and food recognises the integral contribution this sector makes to the economy of Western Australia.
It is a key industry which will support Western Australia's growth beyond periods of boom and through the economic rebuilding phase ahead. Ensuring the State remains highly competitive in both domestic and international markets is vital to the future of our economy
Public funds must be 'money well spent'. This means ensuring the right direction, efficiency and effectiveness of the Department of Agriculture and Food's programs. The department must focus its efforts on economic development - this is …
Contents, Discovery Editors
Contents, Discovery Editors
Discovery, The Student Journal of Dale Bumpers College of Agricultural, Food and Life Sciences
No abstract provided.
Discovery: The Student Journal Of Dale Bumpers College Of Agricultural, Food And Life Sciences - Volume 10 2009, Several Authors
Discovery: The Student Journal Of Dale Bumpers College Of Agricultural, Food And Life Sciences - Volume 10 2009, Several Authors
Discovery, The Student Journal of Dale Bumpers College of Agricultural, Food and Life Sciences
No abstract provided.
Instructions For Authors, Discovery Editors
Instructions For Authors, Discovery Editors
Discovery, The Student Journal of Dale Bumpers College of Agricultural, Food and Life Sciences
No abstract provided.
Letter From The Dean, Lalit Verma
Letter From The Dean, Lalit Verma
Discovery, The Student Journal of Dale Bumpers College of Agricultural, Food and Life Sciences
No abstract provided.
Evaluating The Effects Of Organic And Conventional Inputs On Soil Chemical And Biological Properties In A Four-Year Vegetable Rotation And The Investigation Of Soil Microbial Properties On Plant Gene Expression, Audrey Law
University of Kentucky Doctoral Dissertations
The objective of this research was to determine the effects of conventional inputs on soil chemical and biological properties compared to organic systems in a four year vegetable rotation. Tillage and cover crops were the same in all treatments to avoid confounding factors often present in similar research. Additional experiments investigated plant gene expression in organic and conventional management systems and in soils with decreased microbial diversity. Experimental plots were prepared in the spring of 2004; four replications of three management treatments, organic, low-input and conventional, were arranged in a randomized complete block design. The rotation consisted of edamame soybean, …
Farmers And Nature Conservation: What Is Known About Attitudes, Context Factors And Actions Affecting Conservation?, Johan Ahnström, Jenny Höckert, Hanna L. Bergea, Charles A. Francis, Peter Skelton, Lars Hallgren
Farmers And Nature Conservation: What Is Known About Attitudes, Context Factors And Actions Affecting Conservation?, Johan Ahnström, Jenny Höckert, Hanna L. Bergea, Charles A. Francis, Peter Skelton, Lars Hallgren
Department of Agronomy and Horticulture: Faculty Publications
Farmers’ attitudes towards viability of specific conservation practices or actions strongly impact their decisions on adoption and change. This review of ‘attitude’ information reveals a wide range of perceptions about what conservation means and what the impacts of adoption will mean in economic and environmental terms. Farmers operate in a tight financial situation, and in parts of the world they are highly dependent on government subsidies, and cannot afford to risk losing that support. Use of conservation practices is most effective when these are understood in the context of the individual farm, and decisions are rooted in land and resource …
Bulked Segregant Analysis Using The Goldengate Assay To Locate The Rpp3 Locus That Confers Resistance To Soybean Rust In Soybean, D. L. Hyten, James R. Smith, Reid D. Frederick, Mark L. Tucker, Qijian Song, P. B. Cregan
Bulked Segregant Analysis Using The Goldengate Assay To Locate The Rpp3 Locus That Confers Resistance To Soybean Rust In Soybean, D. L. Hyten, James R. Smith, Reid D. Frederick, Mark L. Tucker, Qijian Song, P. B. Cregan
Department of Agronomy and Horticulture: Faculty Publications
Few resistance loci to soybean rust (SBR), caused by Phakopsora pachyrhizi Syd., have been genetically mapped and linked to molecular markers that can be used for marker assisted selection. New technologies are available for single nucleotide polymorphism (SNP) genotyping that can be used to rapidly map traits controlled by single loci such as resistance to SBR. Our objective was to demonstrate that the highthroughput SNP genotyping method known as the GoldenGate assay can be used to perform bulked segregant analysis (BSA) to fi nd candidate regions to facilitate effi cient mapping of a dominant resistant locus to SBR designated Rpp3 …
Mapping And Confirmation Of A New Allele At Rpp1 From Soybean Pi 594538a Conferring Rb Lesion–Type Resistance To Soybean Rust, Nanda Chakraborty, Joe Curley, Reid D. Frederick, D. L. Hyten, Randall L. Nelson, Glen L. Hartman, Brian W. Diers
Mapping And Confirmation Of A New Allele At Rpp1 From Soybean Pi 594538a Conferring Rb Lesion–Type Resistance To Soybean Rust, Nanda Chakraborty, Joe Curley, Reid D. Frederick, D. L. Hyten, Randall L. Nelson, Glen L. Hartman, Brian W. Diers
Department of Agronomy and Horticulture: Faculty Publications
Soybean rust, caused by Phakopsora pachyrhizi (H. Sydow & Sydow), is a destructive soybean [Glycine max (L.) Merr.] disease and identification of new resistance genes is essential for effective rust management. Our research objectives were to map and confirm the location of resistance gene(s) in PI 594538A using a population of 98 F3:4 lines from across between PI 594538A (reddish-brown [RB] lesions) and the susceptible cultivar Loda (tan [TAN] lesions). The lines were inoculated with the P. pachyrhizi isolate ZM01-1 from Zimbabwe. The RB resistance in PI 594538A mapped on linkage group G as a single dominant gene. …