Biblio
Found 1868 results
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“Seasonal soil water variation and root patterns between two semi-arid shrubs co-existing with Pearl millet in Senegal, West Africa”, Journal of arid environments, vol. 67, pp. 436–455, 2006.
“Seasonal soil water variation and root patterns between two semi-arid shrubs co-existing with Pearl millet in Senegal, West Africa”, Journal of arid environments, vol. 67, pp. 436–455, 2006.
“Seasonal soil water variation and root patterns between two semi-arid shrubs co-existing with Pearl millet in Senegal, West Africa”, Journal of arid environments, vol. 67, pp. 436–455, 2006.
“Seed and seedling traits affecting critical life stage transitions and recruitment outcomes in dryland grasses”, Journal of Applied Ecology, vol. 5213024165487229155987499256193523154502223296023716715481011761251008222704930398219283216189822195164410036649879187, no. 1, pp. 199 - 209, 2015.
, “Seed development and germination”, in Plant Tissue Culture: Development and Biotechnology, Boca Raton: CRC Press, 2010, pp. 125-138.
, “Seed Development of Perennial Pepperweed Plants Growing in Flood Meadows”, Oregon Agricultural Experiment Station, 2006.
, “Seed Development of Perennial Pepperweed Plants Growing in Flood Meadows”, Oregon Agricultural Experiment Station, 2006.
, “Seed germination”, in Plant Developmental Biology - Biotechnological Perspectives, Heidelberg: Springer, 2010, pp. 383-404.
, “Seed islands may promote establishment and expansion of native species in reclaimed mine sites (Montana)”, Ecological Restoration, 2005.
, “Seed Production and Seedling Fitness Are Uncoupled from Maternal Plant Productivity in Three Aridland Bunchgrasses”, Rangeland Ecology & Management, vol. 69, no. 3, pp. 161 - 168, 2016.
, “Seed Production and Seedling Fitness Are Uncoupled from Maternal Plant Productivity in Three Aridland Bunchgrasses”, Rangeland Ecology & Management, vol. 69, no. 3, pp. 161 - 168, 2016.
, “Seeding Locally Sourced Native Compared to Introduced Bunchgrasses Post-Wildfire in Frigid Wyoming Big Sagebrush Communities”, Restoration Ecology, vol. 29, no. 5, p. e13397, 2021.
, “Seedling Defoliation and Drought Stress: Variation in Intensity and Frequency Affect Performance and Survival”, Rangeland Ecology & Management, vol. 71, no. 1, pp. 25 - 34, 2018.
, “Seedling Defoliation May Enhance Survival of Dominant Wheatgrasses but not Poa secunda Seeded for Restoration in the Sagebrush Steppe of the Northern Great Basin”, AoB PLANTS, vol. 13, no. 4, pp. 1-11, 2021.
, “Selection and reliability of internal reference genes for quantitative PCR verification of transcriptomics during the differentiation process of porcine adult mesenchymal stem cells.”, Stem Cell Res Ther, vol. 1, no. 1, p. 7, 2010.
, “Selection of a Water-Extractable Phosphorus Test for Manures and Biosolids as an Indicator of Runoff Loss Potential”, Journal of Environment Quality, vol. 36, no. 5, p. 1357, 2007.
, “Selectivity and specificity of a chromogenic medium for detecting Vibrio parahaemolyticust.”, J Food Prot, vol. 68, no. 7, pp. 1454-6, 2005.
, “Selectivity of fomesafen based systems for preemergence weed control in cucurbit crops”, Crop Protection, vol. 40, pp. 91-97, 2012.
, “Sensitivity of sweet corn (Zea mays L.) and potatoes (Solanum tuberosum L.) to cloransulam-methyl soil residues”, Crop Protection, vol. 21, no. 9, pp. 763 - 772, 2002.
, “Sensitivity of sweet corn (Zea mays L.) and potatoes (Solanum tuberosum L.) to cloransulam-methyl soil residues”, Crop Protection, vol. 21, no. 9, pp. 763 - 772, 2002.
, “Sensorcope: A Urban Environmental Monitoring Network”, in AGU Fall Meeting Abstracts, 2006.
, “Sequencing of 15 622 gene-bearing BACs clarifies the gene-dense regions of the barley genome”, The Plant Journal, vol. 84, no. 1, pp. 216 - 227, 2015.
, “Sequencing of 15 622 gene-bearing BACs clarifies the gene-dense regions of the barley genome”, The Plant Journal, vol. 84, no. 1, pp. 216 - 227, 2015.
, “Sequencing of 15 622 gene-bearing BACs clarifies the gene-dense regions of the barley genome”, The Plant Journal, vol. 84, no. 1, pp. 216 - 227, 2015.
, “A serological assay for the detection of the nonstructural protein (NSs) of Iris yellow spot virus and its use in virus detection in plant and thrips vectors”, IX International Symposium on Thysanoptera and Topoviruses. International Symposium on Thysanoptera and Topoviruses, pp. 134-135, 2009.
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