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A team led by FSE fellow David Lobell has found a valuable, untapped resource in historical data from crop yield trials conducted across sub-Saharan Africa. Combined with weather records, they show that yield losses would occur across 65 percent of maize-growing areas from a temperature rise of a single degree Celsius, even with sufficient water. Data from yield tests in other regions of the world could help predict changes in crop yields from climate change.

A hidden trove of historical crop yield data from Africa shows that corn - long believed to tolerate hot temperatures - is a likely victim of global warming.

Stanford agricultural scientist David Lobell and researchers at the International Maize and Wheat Improvement Center (CIMMYT) report in the inaugural issue of Nature Climate Change next week that a clear negative effect of warming on maize - or corn - production was evident in experimental crop trial data conducted in Africa by the organization and its partners from 1999 to 2007.

Led by Lobell, the researchers combined data from 20,000 trials in sub-Saharan Africa with weather data recorded at stations scattered across the region. They found that a temperature rise of a single degree Celsius would cause yield losses for 65 percent of the present maize-growing region in Africa - provided the crops received the optimal amount of rainfall. Under drought conditions, the entire maize-growing region would suffer yield losses, with more than 75 percent of areas predicted to decline by at least 20 percent for 1 degree Celsius of warming.

"The pronounced effect of heat on maize was surprising because we assumed maize to be among the more heat-tolerant crops," said Marianne Banziger, co-author of the study and deputy director general for research at CIMMYT."

"Essentially, the longer a maize crop is exposed to temperatures above 30 C, or 86 F, the more the yield declines," she said. "The effect is even larger if drought and heat come together, which is expected to happen more frequently with climate change in Africa, Asia or Central America, and will pose an added challenge to meeting the increasing demand for staple crops on our planet."

Similar sources of information elsewhere in the developing world could improve crop forecasting for other vast regions where data has been lacking, according to Lobell, who is lead author of the paper describing the study.

"Projections of climate change impacts on food production have been hampered by not knowing exactly how crops fair when it gets hot," Lobell said. "This study helps to clear that issue up, at least for one important crop."

While the crop trials have been run for many years throughout Africa, to identify promising varieties for release to farmers, nobody had previously examined the weather at the trial sites and studied the effect of weather on the yields, said Lobell, who is an assistant professor of environmental earth system science and fellow at Stanford's Program on Food Security and the Environment.

"These trials were organized for completely different purposes than studying the effect of climate change on the crops," he said. "They had a much shorter term goal, which was to get the overall best-performing strains into the hands of farmers growing maize under a broad range of conditions."

The data recorded at the yield testing sites did not include weather information. Instead, the researchers used data gathered from weather stations all over sub-Saharan Africa. Although the stations were operated by different organizations, all data collection was organized by the World Meteorological Organization, so the methods used were consistent.

Lobell then took the available weather data and interpolated between recording stations to infer what the weather would have been like at the test sites. By merging the weather and crop data, the researchers could examine climate impacts.

"It was like sending two friends on a blind date - we weren't sure how it would go, but they really hit it off," Lobell said.

Previously, most research on climate change impacts on agriculture has had to rely on crop data from studies in the temperate regions of North America and Europe, which has been a problem.

"When you take a model that has been developed with data from one kind of environment, such as a temperate climate, and apply it to the rest of the world, there are lots of things that can go wrong" Lobell said, noting that much of the developing world lies in tropical or subtropical climates.

But he said many of the larger countries in the developing world, such as India, China and Brazil, which encompass a wide range of climates, are running yield testing programs that could be a source of comparable data. Private agribusiness companies are also increasingly doing crop testing in the tropics.

"We're hoping that with this clear demonstration of the value of this kind of data for assessing climate impacts on crops that others will either share or take a closer look themselves at their data for various crops," Lobell said.

"I think we may just be scratching the surface of what can be achieved by combining existing knowledge and data from the climate and agriculture communities. Hopefully this will help catalyze some more effort in this area."

Lobell is a Center Fellow at the Program on Food Security and the Environment, a joint program of Stanford's Woods Institute for the Environment and Freeman Spogli Institute for International Studies.

The work was funded by the Rockefeller Foundation

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New approaches are needed to accelerate understanding of climate impacts on crop yields, particularly in tropical regions. Past studies have relied mainly on crop-simulation models, or statistical analyses based on reported harvest data, each with considerable uncertainties and limited applicability to tropical systems. However, a wealth of historical crop-trial data exists in the tropics that has been previously untapped for climate research. Using a data set of more than 20,000 historical maize trials in Africa, combined with daily weather data, we show a nonlinear relationship between warming and yields. Each degree day spent above 30 °C reduced the final yield by 1% under optimal rain-fed conditions, and by 1.7% under drought conditions. These results are consistent with studies of temperate maize germplasm in other regions, and indicate the key role of moisture in maize's ability to cope with heat. Roughly 65% of present maize-growing areas in Africa would experience yield losses for 1 °C of warming under optimal rain-fed management, with 100% of areas harmed by warming under drought conditions. The results indicate that data generated by international networks of crop experimenters represent a potential boon to research aimed at quantifying climate impacts and prioritizing adaptation responses, especially in regions such as Africa that are typically thought to be data-poor.

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Nature Climate Change
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Biomass-derived energy offers the potential to increase energy security while mitigating anthropogenic climate change, but a successful path toward increased production requires a thorough accounting of costs and benefits. Until recently, the efficacy of biomass-derived energy has focused primarily on biogeochemical consequences. Here we show that the biogeophysical effects that result from hypothetical conversion of annual to perennial bioenergy crops across the central United States impart a significant local to regional cooling with considerable implications for the reservoir of stored soil water. This cooling effect is related mainly to local increases in transpiration, but also to higher albedo. The reduction in radiative forcing from albedo alone is equivalent to a carbon emissions reduction of 78 t C ha-1 , which is six times larger than the annual biogeochemical effects that arise from offsetting fossil fuel use. Thus, in the near-term, the biogeophysical effects are an important aspect of climate impacts of biofuels, even at the global scale. Locally, the simulated cooling is sufficiently large to partially offset projected warming due to increasing greenhouse gases over the next few decades. These results demonstrate that a thorough evaluation of costs and benefits of bioenergy-related land-use change must include potential impacts on the surface energy and water balance to comprehensively address important concerns for local, regional, and global climate change.

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Proceedings of the National Academy of Sciences
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Matei Georgescu
David Lobell
Christopher B. Field
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Scott Rozelle
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OMAHA (DTN) -- China is the world's No. 1 producer and consumer of pork and poultry, producing more than five times the pork raised in the U.S. and 80 percent as much poultry. With its economic growth and increasing middle class, it is inevitable that meat consumption will rise.

The question is: Will China be able to continue to boost production sufficiently to meet that demand? The answer has implications for U.S. grain and meat producers.

"Rapidly rising incomes will have wrenching effects on the demand for food," said Scott Rozelle, agricultural economist at Stanford University. "As increasingly well-off consumers get fewer of their calories from rice and wheat, they will demand more from high-value products such as meat, fish, dairy and fruit. Urbanization has similar impacts, dampening the demand for rice and wheat and raising the demand for meat, fish, dairy and fruit. Trying to meet these rising -- and shifting -- demands will pose a large challenge."

Most importantly, given the great constraints China faces in arable land and water, the government has chosen to focus its agriculture in two ways: staple food crops such as rice and oilseeds and value-added products, said Francis Tuan, with USDA's Foreign Agriculture Service. It is aiming for a high percentage of self-sufficiency in staples to ensure its population doesn't go hungry. On the other hand, it wants to garner as much economic growth from agricultural production as possible.

"China is exporting more labor-intensive fruits and vegetables and higher-value commodities, while it is importing more land-intensive agricultural commodities, such as soybeans, cotton, sugar and dairy," Rozelle added. "These shifts are obviously more in line with China's comparative advantage."

One example of that trend is China's purchases of raw soybeans to be crushed in China for oil. Another is some farmers leaving crop production to focus on livestock.

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Food and agricultural policy experts Prabhu Pingali and Philip Pardey will each speak on trends in productivity and investments in technology, survey of constraints to productivity, incentives and investment, and opportunities to raise productivity.

The Green Revolution - past successes, unfinished business, and the way forward

Pingali will review strategic components of the Green Revolution and its achievement and limits in terms of agricultural productivity improvement and broader impact at social, environmental and economic levels, including its impact on food and nutrition security. Lessons learned and the strategic insights these provide will be reviewed as the world is preparing a "redux" version of the Green Revolution with more integrative environmental and social impact combined with agricultural and economic development. Pingali will also point to core research & policy gaps that can enhance further spread and sustainable adoption of productivity enhancing technologies.

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Prabhu Pingali is the Deputy Director of Agricultural Development at the Bill and Melinda Gates Foundation. Formerly, he served as Director of the Agricultural and Development Economics Division of the Food and Agriculture Organization (FAO) of the United Nations. Pingali was elected to the U.S. National Academy of Sciences as a Foreign Associate in May 2007, and he was elected Fellow of the American Agricultural Economics Association in 2006. Pingali was the President of the International Association of Agricultural Economists (IAAE) from 2003-06. Pingali has over twenty five years of experience in assessing the extent and impact of technical change in agriculture in developing countries, including Asia, Africa and Latin America.

 African Agricultural R&D and Productiivity Growth in a Global Setting

Given the continuing importance of agriculture in most African economies, an in-depth understanding of the past and likely future productivity performance of African agriculture is key to assessing the overall economic growth and development prospects of the region. African agriculture operates in increasingly interconnected global commodity markets, so the relative productivity performance of African vis-à-vis rest-of-world agriculture is also relevant. This talk will present new evidence on African agricultural productivity performance and place that evidence in relation to the evolving pattern of agricultural productivity growth worldwide. Technological change is a principal driver of productivity growth, and new, updated evidence on the trends in R&D investments that give rise to these technological changes will also be presented and discussed. The productivity effects of R&D play out over comparatively long periods of time demanding a long-run look at these developments.    
 

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Philip Pardey is Professor of Science and Technology Policy in the Department of Applied Economics, and Director of the University of Minnesota's International Science and Technology Practice and Policy (InSTePP) center. His research deals with the finance and conduct of R&D globally, methods for assessing the economic impacts of research, and the economic and policy (especially intellectual property) aspects of genetic resources and the biosciences. He is a Fellow of the American Agricultural Economics Association and a Distinguished Fellow of the Australian Agricultural and Resource Economics Society.

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Prabhu Pingali Deputy director, Agricultural Development Speaker Bill & Melinda Gates Foundation
Philip Pardey Professor of Science and Technology, Applied Economics Speaker University of Minnesota
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What does price instability have to do with food security? Price spikes hurt poor consumers, price collapses hurt farmers, and price risks reduce investment. Timmer's work suggests that food price instability also has a deeper and more insidious impact: it slows down economic growth and the structural transformation that is the pathway out of rural poverty. Food price instability really hurts the poor in both the short run and the long run.

"Food security is not a viable social objective unless it is also a profitable undertaking for input suppliers, farmers, and marketers of output. Consumers must then be able to afford to purchase this food, secure in the knowledge that it is safe and nutritious. Achieving food security within these constraints of a complex economic system is a challenge because both poor consumers and small farmers must be effective participants."                                     -- Peter Timmer

Thom Jayne, Professor of International Development at Michigan State University, will join the conversation as a discussant following the main presentation. 

Biography

C. Peter Timmer is a leading authority on agriculture and rural development who has published widely on these topics. He has served as a professor at Stanford, Cornell, three faculties at Harvard, and the University of California, San Diego, where he was also the dean of the Graduate School of International Relations and Pacific Studies. A core advisor on the World Bank's World Development Report 2008: Agriculture for Development, Timmer also works with several Asian governments on domestic policy responses to instability in the global rice market. He is an advisor to the Bill and Melinda Gates Foundation on agricultural development issues.

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Thomas D. Cabot Professor of Development Studies, Emeritus, Harvard University
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C. Peter Timmer was a visiting professor at Stanford's Center on Food Security and the Environment in 2007. He is a leading authority on agriculture and rural development who has published widely on these topics. He has served as a professor at Stanford, Cornell, three faculties at Harvard, and the University of California, San Diego, where he was also the dean of the Graduate School of International Relations and Pacific Studies. A core advisor on the World Bank's World Development Report 2008: Agriculture for Development, Timmer also works with several Asian governments on domestic policy responses to instability in the global rice market. In 1992, he received the Bintang Jasa Utama (Highest Merit Star) from the Republic of Indonesia for his contributions to food security. He is an advisor to the Bill and Melinda Gates Foundation on agricultural development issues.

Timmer's work focuses on three broad topics: the nature of "pro-poor growth" and its application in Indonesia and other countries in Asia; the supermarket revolution in developing countries and its impact on the poor (both producers and consumers); and the structural transformation in historical perspective as a framework for understanding the political economy of agricultural policy. 

Peter Timmer Thomas D. Cabot Professor of Development Studies, Emeritus, at Harvard University Speaker
Thom Jayne Professor of International Development Commentator Michigan State University
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Climate volatility could change in the future, with important implications for agricultural productivity. For Tanzania, where food production and prices are sensitive to climate, changes in climate volatility could have severe implications for poverty. This study uses climate model projections, statistical crop models, and general equilibrium economic simulations to determine how the vulnerability of Tanzania's population to impoverishment by climate variability could change between the late 20th Century and the early 21st Century. Under current climate volatility, there is potential for a range of possible poverty outcomes, although in the most extreme of circumstances, poverty could increase by as many as 650,000 people due to an extreme interannual decline in grain yield. However, scenarios of future climate from multiple climate models indicate no consensus on future changes in temperature or rainfall volatility, so that either an increase or decrease is plausible. Scenarios with the largest increases in climate volatility are projected to render Tanzanians increasingly vulnerable to poverty through impacts on staple grains production in agriculture, with as many as 90,000 additional people entering poverty on average. Under the scenario where precipitation volatility decreases, poverty vulnerability decreases, highlighting the possibility of climate changes that oppose the ensemble mean, leading to poverty impacts of opposite sign. The results suggest that evaluating potential changes in volatility and not just the mean climate state may be important for analyzing the poverty implications of climate change.

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Global Environmental Change
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Thomas Hertel
David Lobell
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Thom Jayne, Professor of International Development from Michigan State University will answer the following questions: What are the trends in land access? How can smallholder farmers get higher value out of scarce land and how does that relate to food and non-food markets? Smallholder vs. large enterprises in Africa. Derek Byerlee, independent scholar and director of the 2009 World Development Report will provide additional commentary.

Thomas Jayne's professional career has been devoted to promoting effective policy responses to poverty and hunger in Africa. Jayne is Professor, International Development, in the Department of Agricultural, Food, and Resource Economics and a member of the Core Faculty of the African Studies Center at Michigan State University. He is involved in research, outreach, and capacity building programs in collaboration with African universities and government agencies, mainly focusing on food marketing and trade policies and their effects on sustainable and equitable development. Jayne's secondary research focus has been on measuring the current and long-term effects of HIV/AIDS on African agriculture. Jayne sits on the editorial boards of two development journals, received a top paper award in 2004 by the International Association of Agricultural Economists, co-authored a paper (with graduate student Jacob Ricker-Gilbert) awarded the T.W. Schultz Award at the 2009 International Association of Agricultural Economists Triennial Meetings, and received the 2009 Best Article Award in Agricultural Economics (with co-authors Xhying Xu, William Burke, and Jones Govereh). Jayne's work has also been recognized at the 1996 World Food Summit in Rome and the Secretariat of Global Agricultural Science Policy for the Twenty-First Century.

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Thom Jayne Professor of International Development Speaker Michigan State University
Derek Byerlee Independent Scholar and Director, World Development Report, 2009 Commentator
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