Pesticides reduce symbiotic efficiency of nitrogen-fixing rhizobia and host plants
- 12 June 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (24) , 10282-10287
- https://doi.org/10.1073/pnas.0611710104
Abstract
Unprecedented agricultural intensification and increased crop yield will be necessary to feed the burgeoning world population, whose global food demand is projected to double in the next 50 years. Although grain production has doubled in the past four decades, largely because of the widespread use of synthetic nitrogenous fertilizers, pesticides, and irrigation promoted by the "Green Revolution," this rate of increased agricultural output is unsustainable because of declining crop yields and environmental impacts of modern agricultural practices. The last 20 years have seen diminishing returns in crop yield in response to increased application of fertilizers, which cannot be completely explained by current ecological models. A common strategy to reduce dependence on nitrogenous fertilizers is the production of leguminous crops, which fix atmospheric nitrogen via symbiosis with nitrogen-fixing rhizobia bacteria, in rotation with nonleguminous crops. Here we show previously undescribed in vivo evidence that a subset of organochlorine pesticides, agrichemicals, and environmental contaminants induces a symbiotic phenotype of inhibited or delayed recruitment of rhizobia bacteria to host plant roots, fewer root nodules produced, lower rates of nitrogenase activity, and a reduction in overall plant yield at time of harvest. The environmental consequences of synthetic chemicals compromising symbiotic nitrogen fixation are increased dependence on synthetic nitrogenous fertilizer, reduced soil fertility, and unsustainable long-term crop yields.Keywords
This publication has 43 references indexed in Scilit:
- Diverse Flavonoids Stimulate NodD1 Binding tonodGene Promoters inSinorhizobium melilotiJournal of Bacteriology, 2006
- Phytoestrogen signaling and symbiotic gene activation are disrupted by endocrine-disrupting chemicals.Environmental Health Perspectives, 2004
- Evaluation of natural and enhanced PCP biodegradation at a former pesticide manufacturing plantWater Research, 2004
- MOLECULAR SIGNALS AND RECEPTORS: CONTROLLING RHIZOSPHERE INTERACTIONS BETWEEN PLANTS AND OTHER ORGANISMSEcology, 2003
- Agricultural pesticide use in California: pesticide prioritization, use densities, and population distributions for a childhood cancer study.Environmental Health Perspectives, 2001
- Forecasting Agriculturally Driven Global Environmental ChangeScience, 2001
- Integration of Environmental, Agronomic, and Economic Aspects of Fertilizer ManagementScience, 1998
- Sampling the Atmospheres of Small VesselsSoil Science Society of America Journal, 1990
- Flavonoid activation of nodulation genes in Rhizobium reversed by other compounds present in plantsNature, 1986
- A Plant Flavone, Luteolin, Induces Expression of Rhizobium meliloti Nodulation GenesScience, 1986