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104 peer-reviewed articles • 7,186 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Validating a novel genetic technology for hybrid maize seed production under management practices associated with resource‐poor farmers in Zimbabwe
Plants People Planet, 2025, 7, 801-815
2.85Citations (PDF)
2Genome-wide association mapping and genomic prediction analyses reveal the genetic architecture of grain yield and agronomic traits under drought and optimum conditions in maize
BMC Plant Biology, 2025, 25,
4.315Citations (PDF)
3Optimization of sparse phenotyping strategy in multi-environmental trials in maize3.61Citations (PDF)
4Public-private partnerships for seed industry development in developing countries: Lessons from MasAgro maize in Mexico
PLoS ONE, 2025, 20, e0328872
2.32Citations (PDF)
5Biophysical factors and agronomic practices associated with Fusarium ear rot and fumonisin contamination of maize in multiple agroecosystems in Ethiopia
Crop Science, 2024, 64, 827-845
1.713Citations (PDF)
6Genomic prediction of the performance of tropical doubled haploid maize lines under artificial Striga hermonthica (Del.) Benth. infestation1.94Citations (PDF)
7A combination of joint linkage and genome-wide association study reveals putative candidate genes associated with resistance to northern corn leaf blight in tropical maize4.07Citations (PDF)
8Bayesian modelling of phosphorus content in wheat grain using hyperspectral reflectance data
Plant Methods, 2023, 19,
4.03Citations (PDF)
9Genetic variation among elite inbred lines suggests potential to breed for BNI-capacity in maize
Scientific Reports, 2023, 13,
3.416Citations (PDF)
10Hermetic storage technologies preserve maize seed quality and minimize grain quality loss in smallholder farming systems in Mexico2.626Citations (PDF)
11Exploring the uncertainty in projected wheat phenology, growth and yield under climate change in China5.414Citations (PDF)
12Effect of Storage Technologies on Postharvest Insect Pest Control and Seed Germination in Mexican Maize Landraces
Insects, 2022, 13, 878
2.423Citations (PDF)
13Worldwide Selection Footprints for Drought and Heat in Bread Wheat (Triticum aestivum L.)
Plants, 2022, 11, 2289
3.66Citations (PDF)
14Genetic trends in CIMMYT’s tropical maize breeding pipelines
Scientific Reports, 2022, 12,
3.424Citations (PDF)
15Metrics for optimum allocation of resources on the composition and characterization of crop collections: The CIMMYT wheat collection as a proof of concept0.30Citations (PDF)
16Effects of conservation agriculture on physicochemical soil health in 20 maize‐based trials in different agro‐ecological regions across Mexico3.830Citations (PDF)
17UAV-based high-throughput phenotyping to increase prediction and selection accuracy in maize varieties under artificial MSV inoculation8.066Citations (PDF)
18Scalable Sparse Testing Genomic Selection Strategy for Early Yield Testing Stage4.032Citations (PDF)
19Application of Genomic Selection at the Early Stage of Breeding Pipeline in Tropical Maize4.060Citations (PDF)
20Disaggregating the Value of Conservation Agriculture to Inform Smallholder Transition to Sustainable Farming: A Mexican Case Study
Agronomy, 2021, 11, 1214
3.025Citations (PDF)
21Effect of Flowering Time-Related Genes on Biomass, Harvest Index, and Grain Yield in CIMMYT Elite Spring Bread Wheat
Biology, 2021, 10, 855
2.825Citations (PDF)
22Genome‐enabled prediction for sparse testing in multi‐environmental wheat trials
Plant Genome, 2021, 14,
3.326Citations (PDF)
23Introgression of Maize Diversity for Drought Tolerance: Subtropical Maize Landraces as Source of New Positive Variants4.030Citations (PDF)
24Contrasting contributions of five factors to wheat yield growth in China by process-based and statistical models
European Journal of Agronomy, 2021, 130, 126370
5.328Citations (PDF)
25Hermetic storage technologies reduce maize pest damage in smallholder farming systems in Mexico2.633Citations (PDF)
26Diversity analysis of 80,000 wheat accessions reveals consequences and opportunities of selection footprints13.7206Citations (PDF)
27Genomic Prediction Enhanced Sparse Testing for Multi-environment Trials
G3: Genes, Genomes, Genetics, 2020, 10, 2725-2739
1.9121Citations (PDF)
28META-R: A software to analyze data from multi-environment plant breeding trials
Crop Journal, 2020, 8, 745-756
5.3348Citations (PDF)
29An Evaluation of Kernel Zinc in Hybrids of Elite Quality Protein Maize (QPM) and Non-QPM Inbred Lines Adapted to the Tropics Based on a Mating Design
Agronomy, 2020, 10, 695
3.015Citations (PDF)
30Hybrid Breeding for MLN Resistance: Heterosis, Combining Ability, and Hybrid Prediction
Plants, 2020, 9, 468
3.621Citations (PDF)
31Maximizing efficiency of genomic selection in CIMMYT’s tropical maize breeding program3.654Citations (PDF)
32GWAS to Identify Genetic Loci for Resistance to Yellow Rust in Wheat Pre-Breeding Lines Derived From Diverse Exotic Crosses4.068Citations (PDF)
33Effect of F1 and F2 generations on genetic variability and working steps of doubled haploid production in maize
PLoS ONE, 2019, 14, e0224631
2.316Citations (PDF)
34Factor analysis to investigate genotype and genotype × environment interaction effects on pro-vitamin A content and yield in maize synthetics
Euphytica, 2019, 215,
1.520Citations (PDF)
35isqg: A Binary Framework forin SilicoQuantitative Genetics
G3: Genes, Genomes, Genetics, 2019, 9, 2425-2428
1.91Citations (PDF)
36Maize responsiveness to Azospirillum brasilense: Insights into genetic control, heterosis and genomic prediction
PLoS ONE, 2019, 14, e0217571
2.327Citations (PDF)
37Identification of donors for low-nitrogen stress with maize lethal necrosis (MLN) tolerance for maize breeding in sub-Saharan Africa
Euphytica, 2019, 215,
1.527Citations (PDF)
38Modeling Genotype × Environment Interaction Using a Factor Analytic Model of On‐Farm Wheat Trials in the Yaqui Valley of Mexico
Agronomy Journal, 2019, 111, 2647-2657
1.810Citations (PDF)
39Deep Kernel for Genomic and Near Infrared Predictions in Multi-environment Breeding Trials
G3: Genes, Genomes, Genetics, 2019, 9, 2913-2924
1.993Citations (PDF)
40Multivariate Bayesian Analysis of On‐Farm Trials with Multiple‐Trait and Multiple‐Environment Data
Agronomy Journal, 2019, 111, 2658-2669
1.823Citations (PDF)
41Genomic-Enabled Prediction Kernel Models with Random Intercepts for Multi-environment Trials
G3: Genes, Genomes, Genetics, 2018, 8, 1347-1365
1.940Citations (PDF)
42Genotype by tillage interaction and performance progress for bread and durum wheat genotypes on irrigated raised beds
Field Crops Research, 2018, 216, 42-52
6.128Citations (PDF)
43Efficacy ofBeauveria bassianaapplications on coffee berry borer across an elevation gradient in Hawaii1.128Citations (PDF)
44SASHAYDIALL: A SAS Program for Hayman's Diallel Analysis
Crop Science, 2018, 58, 1605-1615
1.716Citations (PDF)
45Bayesian functional regression as an alternative statistical analysis of high-throughput phenotyping data of modern agriculture
Plant Methods, 2018, 14,
4.015Citations (PDF)
46BGGE: A New Package for Genomic-Enabled Prediction Incorporating Genotype × Environment Interaction Models
G3: Genes, Genomes, Genetics, 2018, 8, 3039-3047
1.960Citations (PDF)
47A Bayesian Decision Theory Approach for Genomic Selection
G3: Genes, Genomes, Genetics, 2018, 8, 3019-3037
1.911Citations (PDF)
48An informational view of accession rarity and allele specificity in germplasm banks for management and conservation
PLoS ONE, 2018, 13, e0193346
2.321Citations (PDF)
49A study of allelic diversity underlying flowering-time adaptation in maize landraces
Nature Genetics, 2017, 49, 476-480
25.2318Citations (PDF)
50Genomic-Enabled Prediction in Maize Using Kernel Models with Genotype × Environment Interaction
G3: Genes, Genomes, Genetics, 2017, 7, 1995-2014
1.9110Citations (PDF)
51Rapid Cycling Genomic Selection in a Multiparental Tropical Maize Population
G3: Genes, Genomes, Genetics, 2017, 7, 2315-2326
1.9116Citations (PDF)
52Genomic Selection in Plant Breeding: Methods, Models, and Perspectives
Trends in Plant Science, 2017, 22, 961-975
11.61,668Citations (PDF)
53Single‐Step Genomic and Pedigree Genotype × Environment Interaction Models for Predicting Wheat Lines in International Environments
Plant Genome, 2017, 10,
3.383Citations (PDF)
54Predicting grain yield using canopy hyperspectral reflectance in wheat breeding data
Plant Methods, 2017, 13,
4.0129Citations (PDF)
55Effect of Trait Heritability, Training Population Size and Marker Density on Genomic Prediction Accuracy Estimation in 22 bi-parental Tropical Maize Populations4.0182Citations (PDF)
56Genomic Bayesian functional regression models with interactions for predicting wheat grain yield using hyper-spectral image data
Plant Methods, 2017, 13,
4.047Citations (PDF)
57Use of Hyperspectral Image Data Outperforms Vegetation Indices in Prediction of Maize Yield
Crop Science, 2017, 57, 2517-2524
1.780Citations (PDF)
58Bayesian Genomic Prediction with Genotype × Environment Interaction Kernel Models1.9156Citations (PDF)
59Gains in Maize Genetic Improvement in Eastern and Southern Africa: II. CIMMYT Open‐Pollinated Variety Breeding Pipeline
Crop Science, 2017, 57, 180-191
1.778Citations (PDF)
60Interrelations among Early Vigor, Flowering Time, Physiological Maturity, and Grain Yield in Tropical Maize (Zea mays L.) under Multiple Abiotic Stresses
Crop Science, 2017, 57, 229-242
1.720Citations (PDF)
61Extending the Marker × Environment Interaction Model for Genomic‐Enabled Prediction and Genome‐Wide Association Analysis in Durum Wheat
Crop Science, 2016, 56, 2193-2209
1.7119Citations (PDF)
62Genomic Prediction of Genotype × Environment Interaction Kernel Regression Models
Plant Genome, 2016, 9,
3.3160Citations (PDF)
63The Development of Quality Control Genotyping Approaches: A Case Study Using Elite Maize Lines
PLoS ONE, 2016, 11, e0157236
2.372Citations (PDF)
64Identification of Tropical Maize Germplasm with Tolerance to Drought, Nitrogen Deficiency, and Combined Heat and Drought Stresses
Crop Science, 2016, 56, 3031-3045
1.737Citations (PDF)
65Genomic prediction models for grain yield of spring bread wheat in diverse agro-ecological zones3.473Citations (PDF)
66A Hierarchical Bayesian Estimation Model for Multienvironment Plant Breeding Trials in Successive Years
Crop Science, 2016, 56, 2260-2276
1.721Citations (PDF)
67Genomic Prediction of Gene Bank Wheat Landraces
G3: Genes, Genomes, Genetics, 2016, 6, 1819-1834
1.9211Citations (PDF)
68Genomic Bayesian Prediction Model for Count Data with Genotype × Environment Interaction
G3: Genes, Genomes, Genetics, 2016, 6, 1165-1177
1.934Citations (PDF)
69Evaluation and Interpretation of Interactions
Agronomy Journal, 2015, 107, 736-747
1.828Citations (PDF)
70Genomic-Enabled Prediction of Ordinal Data with Bayesian Logistic Ordinal Regression
G3: Genes, Genomes, Genetics, 2015, 5, 2113-2126
1.928Citations (PDF)
71Using an Airborne Platform to Measure Canopy Temperature and NDVI under Heat Stress in Maize
Journal of Crop Improvement, 2015, 29, 669-690
1.818Citations (PDF)
72Holistic Risk Index: A Case Study of Cattle Producers in the Protected Area of Farrapos Estuaries—Uruguay2.45Citations (PDF)
73MODELACIÓN DE LA INTERACCIÓN GENOTIPO X AMBIENTE EN RENDIMIENTO DE HÍBRIDOS DE MAÍZ BLANCO EN AMBIENTES MÚLTIPLES0.110Citations (PDF)
74Genomic-enabled prediction with classification algorithms
Heredity, 2014, 112, 616-626
3.276Citations (PDF)
75A DNA Microarray-Based Assay to Detect Dual Infection with Two Dengue Virus Serotypes
Sensors, 2014, 14, 7580-7601
3.015Citations (PDF)
76Enhancing laccase production by a newly-isolated strain of Pycnoporus sanguineus with high potential for dye decolouration
RSC Advances, 2014, 4, 34096
4.422Citations (PDF)
77Effectiveness of selection at CIMMYT's main maize breeding sites in Mexico for performance at sites in Africa and vice versa
Plant Breeding, 2013, 132, 299-304
1.56Citations (PDF)
78Genomic Prediction in Maize Breeding Populations with Genotyping-by-Sequencing
G3: Genes, Genomes, Genetics, 2013, 3, 1903-1926
1.9270Citations (PDF)
79Genomic prediction in CIMMYT maize and wheat breeding programs
Heredity, 2013, 112, 48-60
3.2449Citations (PDF)
80A reaction norm model for genomic selection using high-dimensional genomic and environmental data3.6633Citations (PDF)
81Genomic Prediction of Breeding Values when Modeling Genotype × Environment Interaction using Pedigree and Dense Molecular Markers
Crop Science, 2012, 52, 707-719
1.7592Citations (PDF)
82In Vivo Expression of Helicobacter pylori Virulence Genes in Patients with Gastritis, Ulcer, and Gastric Cancer
Infection and Immunity, 2012, 80, 594-601
2.727Citations (PDF)
83Genomic Prediction of Genetic Values for Resistance to Wheat Rusts
Plant Genome, 2012, 5,
3.3117Citations (PDF)
84Molecular and cytogenetic characterization of a collection of bahiagrass (Paspalum notatum Flügge) native to Uruguay1.220Citations (PDF)
85Prediction Assessment of Linear Mixed Models for Multienvironment Trials
Crop Science, 2011, 51, 944-954
1.797Citations (PDF)
86Reply
Crop Science, 2010, 50, 1123-1123
1.71Citations (PDF)
87Prediction of Genetic Values of Quantitative Traits in Plant Breeding Using Pedigree and Molecular Markers
Genetics, 2010, 186, 713-724
4.2748Citations (PDF)
88Biplot Analysis of Genotype × Environment Interaction: Proceed with Caution
Crop Science, 2009, 49, 1564-1576
1.7274Citations (PDF)
89Using Factor Analytic Models for Joining Environments and Genotypes without Crossover Genotype × Environment Interaction
Crop Science, 2008, 48, 1291-1305
1.7109Citations (PDF)
90Association Analysis of Historical Bread Wheat Germplasm Using Additive Genetic Covariance of Relatives and Population Structure
Genetics, 2007, 177, 1889-1913
4.2438Citations (PDF)
91Modeling Additive × Environment and Additive × Additive × Environment Using Genetic Covariances of Relatives of Wheat Genotypes
Crop Science, 2007, 47, 311-320
1.764Citations (PDF)
92Classification of Peruvian highland maize races using plant traits1.265Citations (PDF)
93Modeling Genotype × Environment Interaction Using Additive Genetic Covariances of Relatives for Predicting Breeding Values of Wheat Genotypes
Crop Science, 2006, 46, 1722-1733
1.7123Citations (PDF)
94Using linear-bilinear models for studying gene expression × treatment interaction in microarray experiments0.85Citations (PDF)
95Spatial Analysis of cDNA Microarray Experiments
Crop Science, 2005, 45, 748-757
1.75Citations (PDF)
96SENSORY AND INSTRUMENTAL EVALUATION OF STRAWBERRY YOGURT COLOR1.311Citations (PDF)
97Identification of gray leaf spot–resistant donor lines in tropical maize germplasm and their agronomic performance under artificial inoculation4.03Citations (PDF)
98Comparison of Hybrid Maize ( Zea mays L.) Performance Developed Through Conventional Pedigree and Doubled Haploid Breeding Methods
Plant Breeding, 0, 145, 186-203
1.50Citations (PDF)
99Character Association Studies for Grain Yield and Kernel Zinc in Maize Hybrids0.30Citations (PDF)
100Multi environment evaluation of three-way cross maize (Zea mays L.) hybrids for fall armyworm (Spodoptera frugiperda) resistance and grain yield- performance and stability1.30Citations (PDF)
101Yield and combining ability of temperate ex-PVP introgressed and tropical maize under contrasting moisture regimes
PLoS ONE, 0, 21, e0344085
2.31Citations (PDF)
102Yield Performance, Combining Ability and Stability of Early‐ to Medium‐Maturing Doubled‐Haploid Maize Lines in Eastern Africa
Plant Breeding, 0, 145, 671-686
1.50Citations (PDF)
103Genetic Diversity and Population Structure of Drought Tolerant Maize Doubled Haploid Lines1.20Citations (PDF)
104Performance of doubled haploid maize (Zea mays L.) testcross hybrids under optimal and drought-stressed environments
PLoS ONE, 0, 21, e0350861
2.30Citations (PDF)