Biblio

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N. A. Carbajal-Morón, Manzano, M. G., and Mata-González, R., Soil hydrology and vegetation as impacted by goat grazing in Vertisols and Regosols in semi-arid shrublands of northern Mexico, The Rangeland Journal, vol. 39, no. 4, p. 363, 2017.
H. F. Mayland, Florence, A. R., Rosenau, R. C., Lazar, V. A., and Turner, H. A., Soil Ingestion by Cattle on Semiarid Range as Reflected by Titanium Analysis of Feces, Journal of Range Management, vol. 28, no. 6, p. 448, 1975.
S. Yarwood, Brewer, E., Yarwood, R., Lajtha, K., and Myrold, D. D., Soil Microbe Active Community Composition and Capability of Responding to Litter Addition after 12 Years of No Inputs, Applied and Environmental Microbiology, vol. 79, no. 4, pp. 1385 - 1392, 2013.
S. A. Yarwood, Bottomley, P. J., and Myrold, D. D., Soil Microbial Communities Associated with Douglas-fir and Red Alder Stands at High- and Low-Productivity Forest Sites in Oregon, USA, Microbial Ecology, vol. 60, no. 3Database issue, pp. 606 - 617, 2010.
C. L. Phillips, Nickerson, N., Risk, D., Kayler, Z. E., Andersen, C., Mix, A., and BOND, B. A. R. B. A. R. A. J., Soil moisture effects on the carbon isotope composition of soil respiration, Rapid Communications in Mass Spectrometry, vol. 24, no. 9, pp. 1271 - 1280, 2010.
D. A. Robinson, Campbell, C. S., Hopmans, J. W., Hornbuckle, B. K., Jones, S. B., Knight, R., Ogden, F., Selker, J., and Wendroth, O., Soil moisture measurement for ecological and hydrological watershed-scale observatories: A review, Vadose Zone Journal, vol. 7, pp. 358–389, 2008.
H. J. Schmalz, Taylor, R. V., Johnson, T. N., Kennedy, P. L., DeBano, S. J., Newingham, B. A., and McDaniel, P. A., Soil Morphologic Properties and Cattle Stocking Rate Affect Dynamic Soil Properties, Rangeland Ecology & Management, vol. 66, no. 4, pp. 445 - 453, 2013.
J. M. Lopes-Mazzetto, Buurman, P., Schellekens, J., Martinez, P. H. R. M., and Vidal-Torrado, P., Soil morphology related to hydrology and degradation in tropical coastal podzols (SE Brazil)., Catena, vol. 162, pp. 1-13, 2018.
F. A. Sneva, Soil Nitrogen Levels in a Semiarid Climate following Long-Term Nitrogen Fertilization, Journal of Range Management, vol. 30, no. 5, p. 328, 1977.
F. Yuan, R. Schreiner, P., and Qian, M. C., Soil Nitrogen, Phosphorus, and Potassium Alter β-Damascenone and Other Volatiles in Pinot noir Berries, American Journal of Enology and Viticulture, vol. 69, no. 2, pp. 157 - 166, 2018.
R. A. Lybrand, Heckman, K., and Rasmussen, C., Soil organic carbon partitioning and Δ14C variation in desert and conifer ecosystems of southern Arizona, Biogeochemistry, vol. 134, pp. 261-277, 2017.
R. Awale, Emeson, M. A., and Machado, S., Soil organic carbon pools as early indicators for soil organic matter stock changes under different tillage practices in inland Pacific Northwest, Frontiers in Ecology and Evolution, vol. 5, 2017.
C. Mertz, Kleber, M., and Jahn, R., Soil organic matter stabilization pathways in clay sub-fractions from a time series of fertilizer deprivation, Organic Geochemistry, vol. 36, no. 9, pp. 1311 - 1322, 2005.
R. Ghimire, Machado, S., and Bista, P., Soil pH, soil organic matter, and Crop Yield in Wheat-Fallow Systems, Agronomy Journal, vol. 109, pp. 1-12, 2017.
A. Heinrich, Falen, J., and Stone, A., Soil phosphorus and potassium trends on a long term organic farm: Persephone Farm case study, eOrganic , 2016.
J. S. Noller, Soil Portraits, Soil Horizons, vol. 51, no. 2, p. 35, 2010.
G. M. Chaer, Myrold, D. D., and Bottomley, P. J., A soil quality index based on the equilibrium between soil organic matter and biochemical properties of undisturbed coniferous forest soils of the Pacific Northwest, Soil Biology and Biochemistry, vol. 41, no. 4, pp. 822 - 830, 2009.
J. L. Parke, Mallory-Smith, C. A., Dragila, M. I., Hill, B., Wada, N., Weidman, C., Coop, L. B., and Buckland, K., Soil solarization – a potential tool for organic growers to manage weeds and improve soil health, Organic Farmer, vol. 1, no. 4, pp. 12-18, 2018.
J. Parke and Funahashi, F., Soil solarization in container nurseries and field production, Digger, 2016.
M. D. Madsen, Coronel, E. G., and Hopkins, B. G., Soil Surfactant Products for Improving Hydrologic Function in Post-Fire Water-Repellent Soil, Soil Science Society of America Journal, vol. 77, no. 5, p. 1825, 2013.
H. D., Sullivan, D. M., Owen, J. S., and Hart, J. M., Soil test interpretation guide, Oregon State University, Extension Service, 2011.
W. L. Peterman and Bachelet, D., Soil vulnerability to future climate in the southwestern USA, with implications for vegetation change and water cycle, in AGU Fall Meeting Abstracts, 2011.
F. Kizito, Sene, M., Dragila, M. I., Lufafa, A., Diedhiou, I., Dossa, E., Cuenca, R. H., Selker, J., and Dick, R. P., Soil water balance of annual crop–native shrub systems in Senegal's Peanut Basin: The missing link, agricultural water management, vol. 90, pp. 137–148, 2007.
C. C. Shock, Soil water potential measurement by granular matrix sensors. , in The Encyclopedia of Water Science, 2003.
M. D. Madsen, Zvirzdin, D. L., Petersen, S. L., Hopkins, B. G., Roundy, B. A., and Chandler, D. G., Soil Water Repellency within a Burned Piñon–Juniper Woodland: Spatial Distribution, Severity, and Ecohydrologic Implications, Soil Science Society of America Journal, vol. 75, no. 4, p. 1543, 2011.