Enabling Biological Nitrogen Fixation for Cereal Crops in Fertilized Fields
Amy Wen, Keira L. Havens, Sarah E. Bloch, Neal Shah, Douglas A. Higgins, Austin G. Davis‐Richardson, Judee Sharon, Farzaneh Rezaei 等 31 位
Pivot Bio (United States) Morrison Tech Foerster (United States) Codexis (United States)
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摘要与影响
137-1036 ("Kv137-1036") retains the capacity of the parent strain to colonize corn roots while increasing nitrogen fixation activity 122-fold in nitrogen-rich environments. This technical milestone was then commercialized in less than half of the time of a traditional biological product, with robust biosafety evaluations and product formulations contributing to consumer confidence and ease of use. Tested in multi-year, multi-site field trial experiments throughout the U.S. Corn Belt, fields grown with Kv137-1036 exhibited both higher yields (0.35 ± 0.092 t/ha ± SE or 5.2 ± 1.4 bushels/acre ± SE) and reduced within-field yield variance by 25% in 2018 and 8% in 2019 compared to fields fertilized with synthetic nitrogen fertilizers alone. These results demonstrate the capacity of a broad-acre BNF product to fix nitrogen for corn in field conditions with reliable agronomic benefits.
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生物医学Legume Nitrogen Fixing Symbiosis
Wastewater Treatment and Nitrogen Removal · Plant nutrient uptake and metabolism
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