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Canopy coverage phenotyping and field spatial variability adjustment as an efficient selection tool in soybean breeding.
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- Crop Science, 2023, v. 63, n. 6, p. 3277, doi. 10.1002/csc2.21084
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- Article
Erratum to: Identification of resistance loci toward Phytophthora sojae in South Korean soybean plant introductions 407974B and 424487B.
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- 2022
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- Publication type:
- Correction Notice
Identification of resistance loci toward Phytophthora sojae in South Korean soybean plant introductions 407974B and 424487B.
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- Crop Science, 2022, v. 62, n. 1, p. 275, doi. 10.1002/csc2.20596
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- Article
Phenotypic Characterization of a Major Quantitative Disease Resistance Locus for Partial Resistance to Phytophthora sojae.
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- Crop Science, 2019, v. 59, n. 3, p. 968, doi. 10.2135/cropsci2018.08.0514
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- Article
Quantitative Disease Resistance Loci towards Phytophthora sojae and Three Species of Pythium in Six Soybean Nested Association Mapping Populations.
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- Crop Science, 2019, v. 59, n. 2, p. 605, doi. 10.2135/cropsci2018.09.0573
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- Publication type:
- Article
High-Density Mapping of Resistance QTL Toward Phytophthora sojae, Pythium irregulare, and Fusarium graminearum in the Same Soybean Population.
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- Crop Science, 2016, v. 56, n. 5, p. 2476, doi. 10.2135/cropsci2015.12.0749
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- Article
Genetic Improvement of U.S. Soybean in Maturity Groups II, III, and IV.
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- Crop Science, 2014, v. 54, n. 4, p. 1419, doi. 10.2135/cropsci2013.10.0665
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- Article
Identification of Quantitative Trait Loci Conditioning Partial Resistance to Phytophthora sojae in Soybean PI 407861A.
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- Crop Science, 2013, v. 53, n. 3, p. 1022, doi. 10.2135/cropsci2012.10.0578
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- Publication type:
- Article
Soybean Germplasm Resistant to Pythium irregulare and Molecular Mapping of Resistance Quantitative Trait Loci derived from the Soybean Accession PI 424354.
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- Crop Science, 2013, v. 53, n. 3, p. 1008, doi. 10.2135/cropsci2012.08.0461
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- Article
Identification of Soybean Genotypes Resistant to Fusarium graminearum and Genetic Mapping of Resistance Quantitative Trait Loci in the Cultivar Conrad.
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- Crop Science, 2012, v. 52, n. 5, p. 2224, doi. 10.2135/cropsci2011.11.0624
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- Article
Genetic Architecture of Soybean Yield and Agronomic Traits.
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- G3: Genes | Genomes | Genetics, 2018, v. 8, n. 10, p. 3367, doi. 10.1534/g3.118.200332
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- Article
Genome-Wide Analysis of Grain Yield Stability and Environmental Interactions in a Multiparental Soybean Population.
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- G3: Genes | Genomes | Genetics, 2018, v. 8, n. 2, p. 519, doi. 10.1534/g3.117.300300
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- Publication type:
- Article
Genome-Wide Architecture of Disease Resistance Genes in Lettuce.
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- G3: Genes | Genomes | Genetics, 2015, v. 5, n. 12, p. 2655, doi. 10.1534/g3.115.020818
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- Article
A Leader Intron of a Soybean Elongation Factor 1A (eEF1A) Gene Interacts with Proximal Promoter Elements to Regulate Gene Expression in Synthetic Promoters.
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- PLoS ONE, 2016, v. 11, n. 11, p. 1, doi. 10.1371/journal.pone.0166074
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- Article
Structural Variants in the Soybean Genome Localize to Clusters of Biotic Stress-Response Genes<sup>1[W][OA]</sup>.
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- Plant Physiology, 2012, v. 159, n. 4, p. 1295, doi. 10.1104/pp.112.194605
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- Article
Identification and mapping of quantitative trait loci (QTL) conferring resistance to Fusarium graminearum from soybean PI 567301B.
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- Theoretical & Applied Genetics, 2015, v. 128, n. 5, p. 827, doi. 10.1007/s00122-015-2473-5
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- Article
Joint linkage QTL analyses for partial resistance to Phytophthora sojae in soybean using six nested inbred populations with heterogeneous conditions.
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- Theoretical & Applied Genetics, 2014, v. 127, n. 2, p. 429, doi. 10.1007/s00122-013-2229-z
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- Article
An intra-specific linkage map of lettuce ( Lactuca sativa) and genetic analysis of postharvest discolouration traits.
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- Theoretical & Applied Genetics, 2013, v. 126, n. 11, p. 2737, doi. 10.1007/s00122-013-2168-8
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- Article
Novel quantitative trait loci for partial resistance to Phytophthora sojae in soybean PI 398841.
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- Theoretical & Applied Genetics, 2013, v. 126, n. 4, p. 1121, doi. 10.1007/s00122-013-2040-x
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- Article
Hybridization between crops and wild relatives: the contribution of cultivated lettuce to the vigour of crop-wild hybrids under drought, salinity and nutrient deficiency conditions.
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- Theoretical & Applied Genetics, 2012, v. 125, n. 6, p. 1097, doi. 10.1007/s00122-012-1897-4
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- Article
The inheritance of resistance to Verticillium wilt caused by race 1 isolates of Verticillium dahliae in the lettuce cultivar La Brillante.
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- Theoretical & Applied Genetics, 2011, v. 123, n. 4, p. 509, doi. 10.1007/s00122-011-1603-y
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- Publication type:
- Article
A gene encoding an abscisic acid biosynthetic enzyme ( LsNCED4) collocates with the high temperature germination locus Htg6.1 in lettuce ( Lactuca sp.).
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- Theoretical & Applied Genetics, 2011, v. 122, n. 1, p. 95, doi. 10.1007/s00122-010-1425-3
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- Article
The genomic architecture of disease resistance in lettuce.
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- 2009
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- Publication type:
- Correction notice
The genomic architecture of disease resistance in lettuce.
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- Theoretical & Applied Genetics, 2009, v. 118, n. 3, p. 565, doi. 10.1007/s00122-008-0921-1
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- Publication type:
- Article
Dissection of two soybean QTL conferring partial resistance to Phytophthora sojae through sequence and gene expression analysis.
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- BMC Genomics, 2012, v. 13, n. 1, p. 428, doi. 10.1186/1471-2164-13-428
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- Article
Analyses of Synteny Between Arabidopsis thaliana and Species in the Asteraceae Reveal a Complex Network of Small Syntenic Segments and Major Chromosomal Rearrangements.
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- Genetics, 2006, v. 173, n. 4, p. 2227, doi. 10.1534/genetics.105.049205
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- Article
Expression of AtWRI1 and AtDGAT1 during soybean embryo development influences oil and carbohydrate metabolism.
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- Plant Biotechnology Journal, 2022, v. 20, n. 7, p. 1327, doi. 10.1111/pbi.13810
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- Article
Changes to the core and flanking sequences of G‐box elements lead to increases and decreases in gene expression in both native and synthetic soybean promoters.
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- Plant Biotechnology Journal, 2019, v. 17, n. 4, p. 724, doi. 10.1111/pbi.13010
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- Article
Mining germplasm panels and phenotypic datasets to identify loci for resistance to Phytophthora sojae in soybean.
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- Plant Genome, 2021, v. 14, n. 1, p. 1, doi. 10.1002/tpg2.20063
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- Article
Genetic diversity, gene flow, and differentiation among wild, semiwild, and landrace chile pepper (Capsicum annuum) populations in Oaxaca, Mexico.
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- American Journal of Botany, 2022, v. 109, n. 7, p. 1157, doi. 10.1002/ajb2.16019
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- Article
Genome‐wide genotyping of a novel Mexican Chile Pepper collection illuminates the history of landrace differentiation after Capsicum annuum L. domestication.
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- Evolutionary Applications, 2019, v. 12, n. 1, p. 78, doi. 10.1111/eva.12651
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- Article
Characterization of 40 soybean ( Glycine max) promoters, isolated from across 5 thematic gene groups.
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- Plant Cell, Tissue & Organ Culture, 2016, v. 127, n. 1, p. 145, doi. 10.1007/s11240-016-1038-x
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- Article
Isolation and characterization of novel Agrobacterium strains for soybean and sunflower transformation.
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- Plant Cell, Tissue & Organ Culture, 2015, v. 121, n. 1, p. 71, doi. 10.1007/s11240-014-0679-x
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- Article
Workflow for the Quantification of Soluble and Insoluble Carbohydrates in Soybean Seed.
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- Molecules, 2020, v. 25, n. 17, p. 3806, doi. 10.3390/molecules25173806
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- Article
Correlations of seed traits with tofu texture in 48 soybean cultivars and breeding lines.
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- Plant Breeding, 2014, v. 133, n. 1, p. 67, doi. 10.1111/pbr.12122
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- Article
Environment of origin and domestication affect morphological, physiological, and agronomic response to water deficit in chile pepper (Capsicum sp.).
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- PLoS ONE, 2022, v. 17, n. 6, p. 1, doi. 10.1371/journal.pone.0260684
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- Article
Testing methods and statistical models of genomic prediction for quantitative disease resistance to Phytophthora sojae in soybean [Glycine max (L.) Merr] germplasm collections.
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- Theoretical & Applied Genetics, 2020, v. 133, n. 12, p. 3441, doi. 10.1007/s00122-020-03679-w
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- Article
Genome-wide association study of seed protein, oil and amino acid contents in soybean from maturity groups I to IV.
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- Theoretical & Applied Genetics, 2019, v. 132, n. 6, p. 1639, doi. 10.1007/s00122-019-03304-5
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- Article
Population structure in diverse pepper (Capsicum spp.) accessions.
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- BMC Research Notes, 2023, v. 16, n. 1, p. 1, doi. 10.1186/s13104-023-06293-3
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- Article
Germination response of diverse wild and landrace chile peppers (Capsicum spp.) under drought stress simulated with polyethylene glycol.
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- PLoS ONE, 2020, v. 15, n. 11, p. 1, doi. 10.1371/journal.pone.0236001
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- Article
Rationalization of genes for resistance to Bremia lactucae in lettuce.
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- Euphytica, 2016, v. 210, n. 3, p. 309, doi. 10.1007/s10681-016-1687-1
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- Article
Genome-wide association analyses of quantitative disease resistance in diverse sets of soybean [Glycine max (L.) Merr.] plant introductions.
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- PLoS ONE, 2020, v. 15, n. 3, p. 1, doi. 10.1371/journal.pone.0227710
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- Publication type:
- Article
Genome-wide association mapping of partial resistance to Phytophthora sojae in soybean plant introductions from the Republic of Korea.
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- BMC Genomics, 2016, v. 17, p. 1, doi. 10.1186/s12864-016-2918-5
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- Article
Development and optimization of agroinfiltration for soybean.
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- Plant Cell Reports, 2015, v. 34, n. 1, p. 133, doi. 10.1007/s00299-014-1694-4
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- Article
Genetic Structure of Liriomyza trifolii (Diptera: Agromyzidae) Associated With Host Plants From Southeastern Mexico.
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- Environmental Entomology, 2019, v. 48, n. 1, p. 253, doi. 10.1093/ee/nvy184
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- Article
Identification of Candidate Genes for a Major Quantitative Disease Resistance Locus From Soybean PI 427105B for Resistance to Phytophthora sojae.
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- Frontiers in Plant Science, 2022, v. 13, p. 1, doi. 10.3389/fpls.2022.893652
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- Publication type:
- Article
Single- and multiple-trait quantitative trait locus analyses for seed oil and protein contents of soybean populations with advanced breeding line background.
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- Molecular Breeding, 2024, v. 44, n. 8, p. 1, doi. 10.1007/s11032-024-01489-2
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- Article
Identification of SNP markers associated with soybean fatty acids contents by genome-wide association analyses.
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- Molecular Breeding, 2021, v. 41, n. 4, p. 1, doi. 10.1007/s11032-021-01216-1
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- Article
Use of genomic selection in breeding rice (Oryza sativa L.) for resistance to rice blast (Magnaporthe oryzae).
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- Molecular Breeding, 2019, v. 39, n. 8, p. N.PAG, doi. 10.1007/s11032-019-1023-2
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- Article
Molecular mechanisms underpinning quantitative resistance to Phytophthora sojae in Glycine max using a systems genomics approach.
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- Frontiers in Plant Science, 2023, p. 1, doi. 10.3389/fpls.2023.1277585
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- Article