Search Results - "Sleper, David"
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1
Molecular Characterization of Resistance to Soybean Rust (Phakopsora pachyrhizi Syd. & Syd.) in Soybean Cultivar DT 2000 (PI 635999)
Published in PloS one (01-12-2016)“…Resistance to soybean rust (SBR), caused by Phakopsora pachyrhizi Syd. & Syd., has been identified in many soybean germplasm accessions and is conferred by…”
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2
Novel quantitative trait loci for broad-based resistance to soybean cyst nematode (Heterodera glycines Ichinohe) in soybean PI 567516C
Published in Theoretical and applied genetics (01-11-2010)“…Soybean cyst nematode (SCN, Heterodera glycines Ichinohe) is the most destructive pest of soybean worldwide. Host plant resistance is an effective approach to…”
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3
Genetic Mapping and Confirmation of Quantitative Trait Loci for Seed Protein and Oil Contents and Seed Weight in Soybean
Published in Crop science (01-05-2013)“…ABSTRACT Demand for soybean [Glycine max (L.) Merr.] meal has increased worldwide and soybean importers often offer premiums for soybean containing higher…”
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4
Intricate environment-modulated genetic networks control isoflavone accumulation in soybean seeds
Published in BMC plant biology (11-06-2010)“…Background: Soybean (Glycine max [L] Merr.) seed isoflavones have long been considered a desirable trait to target in selection programs for their contribution…”
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5
Identification of Homogentisate Dioxygenase as a Target for Vitamin E Biofortification in Oilseeds
Published in Plant physiology (Bethesda) (01-11-2016)“…Soybean (Glycine max) is a major plant source of protein and oil and produces important secondary metabolites beneficial for human health. As a tool for gene…”
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6
Differential Expression of Isoflavone Biosynthetic Genes in Soybean During Water Deficits
Published in Plant and cell physiology (01-06-2010)“…Numerous environmental factors influence isoflavone accumulation and have long hampered their genetic dissection. Temperature and water regimes are two of the…”
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QTL, additive and epistatic effects for SCN resistance in PI 437654
Published in Theoretical and applied genetics (01-04-2009)“…PI 437654 is a unique accession because of its resistance to nearly all HG types (races) of soybean cyst nematode (Heterodera glycines Ichinohe; SCN)…”
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8
Nested association mapping for identification of functional markers
Published in Genetics (Austin) (01-09-2010)“…Identification of functional markers (FMs) provides information about the genetic architecture underlying complex traits. An approach that combines the…”
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9
Yield and nutritional responses to waterlogging of soybean cultivars
Published in Irrigation science (01-01-2010)“…Furrow irrigating soybean prior to a large, unexpected rainfall event can reduce nitrogen fixation and crop yield. The objective of this study was to evaluate…”
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10
Silencing of GmFAD3 gene by siRNA leads to low α-linolenic acids (18:3) of fad3-mutant phenotype in soybean [Glycine max (Merr.)]
Published in Transgenic research (01-10-2008)“…RNA interference (RNAi) has been recently employed as an effective experimental tool for both basic and applied biological studies in various organisms…”
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11
Major locus and other novel additive and epistatic loci involved in modulation of isoflavone concentration in soybean seeds
Published in Theoretical and applied genetics (01-12-2011)“…Seeds of soybean [ Glycine max (L.) Merr.] accumulate more isoflavones than any tissue of any plant species. In other plant parts, isoflavones are usually…”
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12
Genetic control of soybean seed isoflavone content: importance of statistical model and epistasis in complex traits
Published in Theoretical and applied genetics (01-10-2009)“…A major objective for geneticists is to decipher genetic architecture of traits associated with agronomic importance. However, a majority of such traits are…”
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13
Mutations in soybean microsomal omega-3 fatty acid desaturase genes reduce linolenic acid concentration in soybean seeds
Published in Crop science (01-09-2005)“…One major locus (Fan) and several minor loci have been shown to contribute to the linolenic acid level in soybean [Glycine max (L.) Merr.] seeds. The Fan gene…”
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14
Molecular Genetic Resources for Development of 1% Linolenic Acid Soybeans
Published in Crop science (01-09-2006)“…Advanced plant breeding will incorporate the most efficient methods available to introgress new traits and develop improved crops. Molecular markers that are…”
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15
Selection of a core set of RILs from Forrest x Williams 82 to develop a framework map in soybean
Published in Theoretical and applied genetics (01-04-2011)“…Soybean BAC-based physical maps provide a useful platform for gene and QTL map-based cloning, EST mapping, marker development, genome sequencing, and…”
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16
Environmental Effects on Oleic Acid in Soybean Seed Oil of Plant Introductions with Elevated Oleic Concentration
Published in Crop science (01-09-2009)“…Soybean [Glycine max (L.) Merr.] oil with oleic acid (18:1) content >500 g kg-1 is desirable for a broader role in food and industrial uses. Seed oil in…”
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17
Selection of a core set of RILs from Forrest × Williams 82 to develop a framework map in soybean
Published in Theoretical and applied genetics (01-04-2011)“…Soybean BAC-based physical maps provide a useful platform for gene and QTL map-based cloning, EST mapping, marker development, genome sequencing, and…”
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18
Mutational analysis of the major soybean UreF paralogue involved in urease activation
Published in Journal of experimental botany (01-06-2011)“…The soybean genome duplicated ~14 and 45 million years ago and has many paralogous genes, including those in urease activation (emplacement of Ni and CO₂ in…”
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Genetic Improvement of U.S. Soybean in Maturity Groups II, III, and IV
Published in Crop science (01-07-2014)“…Soybean improvement via plant breeding has been critical for the success of the crop. The objective of this study was to quantify genetic change in yield and…”
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20
Mapping Resistance to Multiple Races of Heterodera glycines in Soybean PI 89772
Published in Crop science (01-09-2001)“…Breeding soybean [Glycine max (L.) Merr.] cultivars for resistance to soybean cyst nematode (SCN) [Heterodera glycines Ichinohe] is the most efficient means to…”
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