The Anti-Commons Threat to Farmers' Rights: The Case of Crop Germplasm

Author(s):  
Stephen B. Brush
Keyword(s):  
HortScience ◽  
1996 ◽  
Vol 31 (4) ◽  
pp. 650f-650
Author(s):  
Mark P. Widrlechner

In 1991, the USDA–ARS North Central Regional Plant Introduction Station made available for distribution 129 accessions of germplasm representing 31 genera of herbaceous ornamentals. This number increased to 329 accessions of 42 genera by 1995. During 1991–95, more than 500 seed packets were distributed to fulfill requests for these plants received from a diverse array of public and private researchers. An analysis of this demand together with expert advice from Crop Germplasm Committees and technical considerations, such as ease of culture and seed production, can help set priorities to plan germplasm regeneration to meet future demand. A recent analysis of demand at U.S. National Plant Germplasm System active sites indicated that demand ranging between 0.23 and 0.97 distributions per available accession per year was typical. Of the 42 ornamental genera analyzed in this study, 9 were demanded more frequently than was typical, 10 were demanded less frequently, with the remainder in the typical range. In order of increasing frequency, the nine genera with the highest distribution rates were Verbena, Gypsophila, Echinacea, Lapeirousia, Delphinium, Cerastium, Baptisia, Lilium, and Tanacetum. Six of these genera are represented only by a single available accession. Notably, Echinacea and Tanacetum are of research interest both as ornamentals and as medicinal/industrial crops. This poster gives a brief overview of the economic value of these genera, display the results of the demand analysis, discuss the results relative to recommendations from Crop Germplasm Committees and requestors, and consider how demand can shape management plans for the acquisition and regeneration of ornamental germplasm.


Author(s):  
Daniel P. Roberts ◽  
Nicholas M. Short ◽  
James Sill ◽  
Dilip K. Lakshman ◽  
Xiaojia Hu ◽  
...  

AbstractThe agricultural community is confronted with dual challenges; increasing production of nutritionally dense food and decreasing the impacts of these crop production systems on the land, water, and climate. Control of plant pathogens will figure prominently in meeting these challenges as plant diseases cause significant yield and economic losses to crops responsible for feeding a large portion of the world population. New approaches and technologies to enhance sustainability of crop production systems and, importantly, plant disease control need to be developed and adopted. By leveraging advanced geoinformatic techniques, advances in computing and sensing infrastructure (e.g., cloud-based, big data-driven applications) will aid in the monitoring and management of pesticides and biologicals, such as cover crops and beneficial microbes, to reduce the impact of plant disease control and cropping systems on the environment. This includes geospatial tools being developed to aid the farmer in managing cropping system and disease management strategies that are more sustainable but increasingly complex. Geoinformatics and cloud-based, big data-driven applications are also being enlisted to speed up crop germplasm improvement; crop germplasm that has enhanced tolerance to pathogens and abiotic stress and is in tune with different cropping systems and environmental conditions is needed. Finally, advanced geoinformatic techniques and advances in computing infrastructure allow a more collaborative framework amongst scientists, policymakers, and the agricultural community to speed the development, transfer, and adoption of these sustainable technologies.


Author(s):  
W. G. Ayad

SynopsisThe International Board for Plant Genetic Resources (IBPGR) has paid particular emphasis to SW Asia in its endeavour to collect, conserve and promote utilisation of the world's plant germplasm. This is in view of the region's rich genetic diversity in many crop plants and their weedy/wild relatives, coupled with its alarming rate of genetic erosion. Action during the past decade has focused on collecting mainly cereal and grain legume crops and their closest wild relatives within the framework of a regional programme encompassing six countries. Gene banks were also set up in these member countries to handle a full range of operations including seed storage, characterisation/preliminary evaluation and documentation. In future, emphasis will be placed on ecogeographical surveys prior to mounting collecting missions and on more characterisation/preliminary evaluation work.


Science ◽  
1983 ◽  
Vol 221 (4609) ◽  
pp. 414-418
Author(s):  
D. L. Plucknett ◽  
N. J. H. Smith ◽  
J. T. Williams ◽  
N. Murthi Anishetty

Science ◽  
1983 ◽  
Vol 220 (4593) ◽  
pp. 163-169 ◽  
Author(s):  
D. L. Plucknett ◽  
N. J. H. Smith ◽  
J. T. Williams ◽  
N. M. Anishetty

Sign in / Sign up

Export Citation Format

Share Document