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Soil Quality Assessment and the Plant Materials Program

Growing plants. N. P. C. S. Environmental Quality. Rain. Air Quality. Water Quality. Soil. Runoff. Infiltration. Soil Quality. Redistributing water. The relationship between soil quality indicators and selected soil functions. R 2 = 0.93. Aggregate Stability, Milan, TN.

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Soil Quality Assessment and the Plant Materials Program

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  1. Growing plants N P C S Environmental Quality Rain Air Quality Water Quality Soil Runoff Infiltration Soil Quality Redistributing water The relationship between soil quality indicators and selected soil functions R2= 0.93 Aggregate Stability, Milan, TN SQ Test Kit demonstration Soil Quality Assessment and the Plant Materials Program Susan S. Andrews, Arlene J. Tugel, Ann Lewandowski, and Mike Hubbs, NRCS Soil Quality Institute Soil Quality is defined as the soil’s capacity to function. Critical soil functions include the ability to support plant growth and productivity, nutrient cycling, and water partitioning. Soil quality can affect plant establishment and vigor, community composition, and colonization of invasive species. The use of soil quality assessments may facilitate the technology development and transfer by plant materials program across the U.S. Soil is the foundation for health ecosystems P Am. J. Alt. Agric., vol. 7, 1992 The Soil Quality Test Kit Soil Quality and Restoration Contents of the SQ Test Kit Many PMC publications recommend testing soil properties before planting. The Soil Quality Test Kit is an in-field assessment tool that could be used by PMC staff or land-managers (following PMC recommendations) to rapidly assess soil properties and function. Degraded systems lose not only plant species but also critical soil functions. For successful plant establishment, proper soil conditions must be present. Assessing soil quality indicators, whether using the SQ Test Kit or lab analyses, could aid in the prescription of soil remediation steps. Improved soil function (i.e. water or nutrient storage) can be critical to plant restoration success. • The Kit has been used all over the country to: • Assess & compare management practice effects on soil function • Monitor trends over time • Evaluate problem spots • For example, the test kit was used in Milan, TN, to compare soil function in different tillage and cropping systems. In this study, no-till and diversified cropping improved soil stability function and reduced erosion. This can also lead to improved yields. State & Transition Models are used to record our knowledge about ecosystem change. According to the model, once a threshold between plant communities (or states) is crossed, it is very difficult to change back. These changes occur not only above-ground but also below-ground among root-soil interactions and other dynamic soil properties. State and Transition Models: part of ecological site descriptions In addition, using the Kit (or lab analyses) to assess soil function prior to conservation plantings has the potential to improve seedling emergence & establishment, when indicator results are used to prescribe soil treatments. • Soil quality indicators were measured at Big Bend National Park, in different states of the same ecological site, using the test kit and lab analyses. Assessment of soil function will: • benefit assessment and monitoring activities, • enhance site descriptions of soil-vegetation dynamics, • add value to soil surveys, and • increase our knowledge of soil change. • This knowledge could facilitate remediation at Big Bend and elsewhere. When using the Kit, not all tests need to be performed each time. The selection of Kit indicators to assess depends on the soil function of interest. Soil Quality Test Kit training sessions are available through the Soil Quality Institute and NEDC.

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