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Managing soil fertility and health for quinoa production and weed control in organic systems

机译:在有机系统中管理藜麦生产和杂草控制的土壤肥力与健康

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Quinoa (Chenpodium quinoa Wild.) could provide a high value crop for organic cropping systems in the Intermountain Western US. This study evaluated quinoa in three cover cropping systems [strip crop (SC), undersown clover (UC), or winter cover crop and tillage (T)] with and without compost (+ C or -C) in a split-plot with blocks design. Quinoa produced no seed in 2013 and limited seed in 2014, likely due to excessive temperatures during flowering. Compost increased seed yield in 2014, and in both years, increased total biomass and improved soil health measures. Seed and biomass yield was greater in T than UC on a land-equivalent basis but SC was greatest on a per harvest area basis. Cropping system effects on soil health measures were minimal. However, microbial biomass increased in all systems over time, yet was diminished in the tillage system. Quinoa may be an alternative crop for organic systems provided sufficient nitrogen and phosphorous fertility is available, and yields can be stabilized by identifying heat tolerant varieties before widespread adoption of this crop is feasible.
机译:奎奴亚藜(Chenpodium Quinoa Wild。)可以为美国国际山脉西方有机种植系统提供高价值作物。本研究评估了三个覆盖裁剪系统中的藜麦[条形作物(sc),下面的三叶草(Uc),或冬季覆盖作物和耕作(t)],其中没有堆叠(+ c或-c),在块状块中设计。奎奴亚藜2013年生产的种子在2013年没有种子,2014年的种子有限,可能由于开花期间的温度过高。堆肥在2014年增加了种子产量,并且在两年内,增加了总生物量和改善的土壤健康措施。种子和生物质产率在T比UC较大,但在土地上的基础上,但是SC在每个收获区的基础上最大。对土壤健康措施的种植系统影响最小。然而,在所有系统中随着时间的推移在所有系统中增加了微生物生物量,但在耕作系统中也在减少。藜麦可以是有机系统的替代作物,提供了足够的氮和磷肥力,并且可以通过在广泛采用这种作物之前鉴定耐热品种来稳定产量是可行的。

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