首页> 外文会议>World Congress of Soil Science >Impacts of long-term no-tillage and conventional tillage management of spring wheat-lentil cropping systems in dryland Eastern Montana, USA, on fungi associated to soil aggregation
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Impacts of long-term no-tillage and conventional tillage management of spring wheat-lentil cropping systems in dryland Eastern Montana, USA, on fungi associated to soil aggregation

机译:长期无耕作和传统耕作管理对春小麦扁豆种植系统在旱地蒙大拿州,美国,对土壤聚集相关的真菌的影响

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Lentil (Lens culinaris Medikus CV. Indianhead) used to replace fallow in spring-wheat (Triticum aestivum) rotation in the semi-arid Eastern Montana USA, may improve soil quality. We evaluate the 14 years influence of continuous wheat under no-tillage(WNT), fallow-wheat under conventional tillage (FCT) and no-tillage (FNT), lentil-wheat under tillage (LCT) and no-tillage (LNT) on soil formation and stability, and on the amount of immunoreactive easily-extractable glomalin (IREEG) and soil aggregatingbasidiomycete fungi in the 4.75-2.00, 2.00-1.00, 1.00-0.50, 0.50-0.25, and 0.25-0.00 mm aggregate-size classes, at 0-5 cm soil depth. The 4.75-2.00 mm aggregate proportion was higher in LNT than FNT and higher in LT than FT treatments and mean weight diameter (MWD) was higher when lentil was used to replace fallow under NT. No-till systems had higher glomalin and basidiomycete amount than CT in all aggregate-size classes and glomalin was higher in LNT than FNT in aggregate-size classes less than 0.50 mm. We conclude that residue input in NT systems triggers fungal populations which are involved in soil binding in aggregates, and that replacing fallow by lentil in spring wheat rotation in dryland seems to favor aggregate formation/stability under NT probably by increasing N fertility during the course of 14 years.
机译:扁豆(镜片Culinaris medikus cv。印度人)用于代替春小麦(Triticum aestivum)旋转在半干旱东部美国美国的跑步,可能会改善土壤质量。我们评估连续小麦在常规耕作(FCT)下的连续小麦(WNT),休耕小麦(FCT),叶片(LCT)下扁平小麦(LCT)和No-Tillage(LNT)下的14年的影响土壤形成和稳定性,以及免疫反应性易溶性肺炎(IREEG)和土壤聚集障碍鼠霉素真菌在4.75-2.00,2.00-1.00,1.00-0.50,0.50-0.25和0.25-0.00 mm综合尺寸类中,在0-5厘米的土壤深度。 4.75-2.00 mm的聚集比例在LNT中比FNT更高,并且在使用扁豆的含量替代NT下叶片时比FN治疗更高,平均重量直径(MWD)更高。无直到系统具有较高的肾小球,并且基于CT的基础霉素在所有聚集尺寸类别中的CT,并且在聚集体尺寸等级中的LNT中的肾小球素高于0.50mm。我们得出结论,NT系统中的残留物输入触发了参与聚集体的土壤结合的真菌群体,并且在Dryland中换下扁豆的扁豆在春小麦旋转中替代叶片似乎有利于在NT过程中增加了NT的聚集体形成/稳定性14年。

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