2020•Zenodo (CERN European Organization for Nuclear Research)Open access

Silage sorghum, an alternative to silage maize

Maike Krauss, Laurens van Run

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Abstract

Problem Forage production of silage maize becomes increasingly challenging due to soil quality degradation, increasing pressure of diseases and pests, legal limitations in N and P-fertilization rate, higher chances of drought and excessive water due to climate change. Solution Silage sorghum deeper roots allow for a better drought tolerance and soil carbon increase. Silage sorghum tolerates less fertiliser and is less susceptible to pests and diseases than maize. Benefits Growing forage crops with varying drought stress tolerance in parallel increases resilience to weather extremes.

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Problem Forage production of silage maize becomes increasingly challenging due to soil quality degradation, increasing pressure of diseases and pests, legal limitations in N and P-fertilization rate, higher chances of drought and excessive water due to climate change. Solution Silage sorghum deeper roots allow for a better drought tolerance and soil carbon increase. Silage sorghum tolerates less fertiliser and is less susceptible to pests and diseases than maize. Benefits Growing forage crops with varying drought stress tolerance in parallel increases resilience to weather extremes.

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Available abstract

Problem Forage production of silage maize becomes increasingly challenging due to soil quality degradation, increasing pressure of diseases and pests, legal limitations in N and P-fertilization rate, higher chances of drought and excessive water due to climate change. Solution Silage sorghum deeper roots allow for a better drought tolerance and soil carbon increase. Silage sorghum tolerates less fertiliser and is less susceptible to pests and diseases than maize. Benefits Growing forage crops with varying drought stress tolerance in parallel increases resilience to weather extremes.

Key concepts: Silage, Sorghum, Agronomy, Zea mays, Mathematics, Biology

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