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Plant Sciences

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Utah State University

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2015

Drought

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Dzuds, Droughts, And Livestock Mortality In Mongolia, Mukund Palat Rao, Nicole K. Davi, Rosanne D. D'Arrigo, Jerry Skees, Baatarbileg Nachin, Caroline Leland, Bradfield Lyon, Shih-Yu (Simon) Wang, Oyunsanaa Byambasuren Jul 2015

Dzuds, Droughts, And Livestock Mortality In Mongolia, Mukund Palat Rao, Nicole K. Davi, Rosanne D. D'Arrigo, Jerry Skees, Baatarbileg Nachin, Caroline Leland, Bradfield Lyon, Shih-Yu (Simon) Wang, Oyunsanaa Byambasuren

Plants, Soils, and Climate Faculty Publications

Recent incidences of mass livestock mortality, known as dzud, have called into question the sustainability of pastoral nomadic herding, the cornerstone of Mongolian culture. A total of 20 million head of livestock perished in the mortality events of 2000–2002, and 2009–2010. To mitigate the effects of such events on the lives of herders, international agencies such as the World Bank are taking increasing interest in developing tailored market-based solutions like index-insurance. Their ultimate success depends on understanding the historical context and underlying causes of mortality. In this paper we examine mortality in 21 Mongolian aimags (provinces) between 1955 and 2013 …


Response Of Stomatal Density And Bound Gas Exchange In Leaves Of Maize To Soil Water Deficit, Wensai Zhao, Yonglin Sun, Roger Kjelgren, Xiping Liu Jan 2015

Response Of Stomatal Density And Bound Gas Exchange In Leaves Of Maize To Soil Water Deficit, Wensai Zhao, Yonglin Sun, Roger Kjelgren, Xiping Liu

Plants, Soils, and Climate Faculty Publications

Stomatal behavior in response to drought has been the focus of intensive research, but less attention has been paid to stomatal density. In this study, 5-week-old maize seedlings were exposed to different soil water contents. Stomatal density and size as well as leaf gas exchange were investigated after 2-, 4- and 6-weeks of treatment, which corresponded to the jointing, trumpeting, and filling stages of maize development. Results showed that new stomata were generated continually during leaf growth. Reduced soil water content significantly stimulated stomatal generation, resulting in a significant increase in stomatal density but a decrease in stomatal size and …