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Fall cover cropping can increase arbuscular mycorrhizae in soils supporting intensive agricultural production.

机译:秋季种植可增加土壤中的丛枝菌根,从而支持集约化农业生产。

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Intensive agricultural practices, such as tillage, monocropping, seasonal fallow periods, and inorganic nutrient application have been shown to reduce arbuscular mycorrrhizal fungi (AMF) populations and thus may reduce benefits frequently provided to crops by AMF, such as nutrient acquisition, disease resistance and drought tolerance. We have evaluated the ability of different cover crops to elevate the native mycorrhizal inoculum potential of soils under soil-climatic conditions typical of the upper Midwest U.S. production agricultural region. We measured the number of soil AMF propagules at three sites in the late fall following cover crops that were seeded into summer-harvested small grains within a no-till rotation. At all three sites, soil AMF propagule numbers were generally low (<=1 propagule g-1). Fall cover crops significantly increased the mycorrhizal inoculum potential of the soils. Forage oats (Avena sativa (L.) Hausskn.), by itself or in mixtures, was most effective at both sites where it was planted. At the third site, a cover crop mixture doubled the inoculum potential of these soils. The effect of cover crop treatments on AMF propagules was corroborated at one site over two seasons by measuring AMF biomass with the neutral lipid fatty acid mycorrhizal biomarker, C16:1cis11. Identification of AMF-promoting cover crops for inclusion in diversified, no till cropping rotations in the upper Midwest U.S. will provide opportunity for reduced inorganic nutrient application with economic and environmental benefit.
机译:耕作,单作,季节性休耕和无机养分等集约化耕作方法已显示出可减少丛枝菌根真菌(AMF)种群,因此可能减少AMF经常给农作物带来的惠益,例如养分获取,抗病性和耐旱性。我们评估了在美国中西部上等农业生产区典型的土壤气候条件下,不同覆盖作物提高土壤固有菌根接种潜力的能力。我们在秋耕后的三个地点测量了土壤AMF繁殖体的数量,这些作物是在不耕作轮作中播种到夏季收获的小谷物中的有盖作物之后。在所有三个地点,土壤AMF繁殖体数量普遍较低(<= 1繁殖体g -1 )。秋季覆盖作物明显增加了土壤的菌根接种潜力。单独或混合使用的饲用燕麦(Avena sativa(L.)Hausskn。)在两个种植地点均最为有效。在第三个位置,覆盖作物混合物使这些土壤的接种潜力增加了一倍。通过使用中性脂质脂肪酸菌根生物标记物C16:1cis11测量AMF生物量,在两个季节的一个地点证实了包膜作物处理对AMF繁殖的影响。在美国中西部上层地区确定能促进AMF生长的覆盖作物,包括在多样化的免耕轮作中,将为减少无机养分的施用提供机会,从而带来经济和环境效益。

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