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Diversifying US Midwest Farming For Stability And Resilience

Researchers find that diversifying crops and integrating livestock improves farm efficiencies and ecosystem services in the US Midwest. Mathieu Delandmeter, Bruno Basso, and colleagues used a validated crop simulation model to assess 18 management scenarios across 46 million hectares over three decades at high spatial resolution. The authors compared corn monoculture to diverse rotations with cover crops and integrated pasture-cattle systems, looking at each system's productivity, profitability, yield stability, climate resistance, soil carbon, nitrogen leaching, and greenhouse gas emissions. Increasing crop diversity from corn monoculture to corn-soybean-wheat rotation with cover crops increased productivity stability by up to 65%. Reducing nitrogen fertilizer by 25% decreased greenhouse gas emissions by 28%, converting systems from net carbon sources to net zero or sinks, while increasing economic returns by 3% due to lower input costs. Pasture-cattle integration systems showed 159% greater productivity stability and 5% higher resistance to extreme droughts compared to corn monoculture. Cover crops enhanced soil organic carbon sequestration by 55% on average.

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Methionine Requirements for Lactating Sows - Cierra Kozole

Video: Methionine Requirements for Lactating Sows - Cierra Kozole


In this episode of The Swine Nutrition Blackbelt Podcast, Cierra Kozole, PhD candidate in Swine Nutrition at the University of Guelph, explains how methionine supports lactating sows beyond milk protein synthesis. She discusses updated requirement estimates, source comparisons, methylation demand, and why modern sow genetics may require more precise amino acid strategies. Listen now on all major platforms!

"Methionine supports protein synthesis while also serving critical functions through methylation pathways that influence multiple biological processes."

Meet the guest: Cierra Kozole / cierra-kozole-772b64253 is a PhD candidate in Swine Nutrition at the University of Guelph in Canada. Her doctoral research focuses on refining estimates of methionine requirements for primiparous lactating sows, including evaluating methionine sources, nutrient partitioning, methylation reactions, and the links among amino acid supply, milk production, and sow protein retention. Learn more from Cierra Kozole on The Swine Nutrition Blackbelt Podcast, available on all major platforms.