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Influences of agricultural practice and summer grazing on soil compaction in wheat paddocks.

机译:农业实践和夏季放牧对小麦围场土壤压实的影响。

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Agriculture in the Southern Great Plains (SGP) relies on production systems that combine yearling cattle and grazing of winter wheat. Incorporating summer legumes into the fallow period of wheat would allow longer grazing seasons and potential improvements in livestock gain, but may adversely affect soil conditions. This study examined the impacts of additional grazing during summer on soil compaction within paddocks of grazed wheat. Four 1.6 ha paddocks were used to study two systems of producing forage by conservation tillage during 1999 and 2000. Both systems combined winter and spring grazing of wheat with either grazing of an annual legume during summer (SL) or chemical fallow during summer (SCF). Enclosures (n=2) were established in each paddock to serve as ungrazed controls. Soil compaction was measured by resistance to a cone penetrometer to 300 mm soil depth on three dates (May and December 1999, June 2000), and measures of bulk density and soil moisture were collected. Regression analyses showed a significant relationship between resistance and bulk density across agricultural practices, and separate relationships for grazing treatments. The SL agricultural practice produced greater compaction of soil than SCF below 75 mm depth, with gradual increases over the last two sampling dates. In contrast, grazing generated increases in compaction at all depths on all dates, with the largest increases noted between 50 and 100 mm. Results suggest that combining grazing of wheat with grazing legumes during the summer, under conservation tillage, may not represent sustainable management in the short term.
机译:南部大平原(SGP)的农业依靠将一岁牛和冬小麦放牧相结合的生产系统。将夏季豆科植物纳​​入小麦的休耕期将允许更长的放牧季节并可能改善牲畜增产,但可能对土壤条件产生不利影响。这项研究检查了夏季放牧对放牧小麦围场内土壤压实的影响。四个1.6公顷的牧场用于研究1999和2000年间通过保护性耕作生产牧草的两种系统。这两种系统都将小麦的冬季和春季放牧与夏季(SL)的一年生豆类放牧或夏季(SCF)的化学休养结合起来。在每个围场中都建立了围栏(n = 2)以用作未控制的对照。在三个日期(1999年5月和1999年12月,2000年6月)通过对300毫米土壤深度的锥形针入度仪的抵抗力来测量土壤压实度,并收集了堆密度和土壤湿度的测量值。回归分析显示,在整个农业实践中,抗性和容重之间存在显着的关系,而放牧处理则具有独立的关系。在75 mm深度以下,SL农业实践比SCF产生的土壤压实度更大,在最近两个采样日期逐渐增加。相反,放牧在所有日期的所有深度产生的压实度增加,最大的增加是在50到100毫米之间。结果表明,在保护性耕作下,夏季放牧小麦和豆科植物在短期内可能不代表可持续管理。

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