Mapping of QTL for Grain Yield Components Based on a DH Population in Maize
暂无分享,去创建一个
[1] S. Favaro,et al. Quantitative , 2020, Psychology through Critical Auto-Ethnography.
[2] Xianran Li,et al. Dissection of Leaf Angle Variation in Maize through Genetic Mapping and Meta‐Analysis , 2019, The plant genome.
[3] J. Whalen,et al. Global warming potential from maize and maize-soybean as affected by nitrogen fertilizer and cropping practices in the North China Plain , 2018 .
[4] M. Bohn,et al. Association Mapping of Flowering and Height Traits in Germplasm Enhancement of Maize Doubled Haploid (GEM‐DH) Lines , 2018, The plant genome.
[5] Rumei Chen,et al. Is there a strategy I iron uptake mechanism in maize? , 2018, Plant signaling & behavior.
[6] Yu Li,et al. Candidate Loci for Yield-Related Traits in Maize Revealed by a Combination of MetaQTL Analysis and Regional Association Mapping , 2017, Front. Plant Sci..
[7] P. Dash,et al. Comparative Analysis of CDPK Family in Maize, Arabidopsis, Rice, and Sorghum Revealed Potential Targets for Drought Tolerance Improvement , 2017, Front. Chem..
[8] Z. Ni,et al. Identification of Heterosis-Associated Stable QTLs for Ear-Weight-Related Traits in an Elite Maize Hybrid Zhengdan 958 by Design III , 2017, Front. Plant Sci..
[9] T. Olivoto,et al. REML/BLUP and sequential path analysis in estimating genotypic values and interrelationships among simple maize grain yield-related traits. , 2017, Genetics and molecular research : GMR.
[10] J. Weng,et al. Analysis of the genetic architecture of maize ear and grain morphological traits by combined linkage and association mapping , 2017, Theoretical and Applied Genetics.
[11] F. Biase,et al. Genotypic and allelic frequencies of gene polymorphisms associated with meat tenderness in Nellore beef cattle. , 2017, Genetics and molecular research : GMR.
[12] T. Rong,et al. Identification of QTL for maize grain yield and kernel-related traits , 2016, Journal of Genetics.
[13] Yu Li,et al. Fine-mapping of qGW4.05, a major QTL for kernel weight and size in maize , 2016, BMC Plant Biology.
[14] Rodomiro Ortiz,et al. Haploids: Constraints and opportunities in plant breeding. , 2015, Biotechnology advances.
[15] Guliang Yang,et al. qEL7.2 is a pleiotropic QTL for kernel number per row, ear length and ear weight in maize (Zea mays L.) , 2015, Euphytica.
[16] A. Melchinger,et al. High-density linkage mapping of yield components and epistatic interactions in maize with doubled haploid lines from four crosses , 2013, Molecular Breeding.
[17] Shaokun Li,et al. Maize Yield Gains in Northeast China in the Last Six Decades , 2013 .
[18] W. Jin,et al. Gametophytic and zygotic selection leads to segregation distortion through in vivo induction of a maternal haploid in maize , 2013, Journal of experimental botany.
[19] S. Baud,et al. Duplicate Maize Wrinkled1 Transcription Factors Activate Target Genes Involved in Seed Oil Biosynthesis1[C][W] , 2011, Plant Physiology.
[20] J. Z. Li,et al. QTL consistency and meta-analysis for grain yield components in three generations in maize , 2011, Theoretical and Applied Genetics.
[21] Yang Wang,et al. QTL analysis for yield components and kernel-related traits in maize across multi-environments , 2011, Theoretical and Applied Genetics.
[22] John J. Burke,et al. Role of Phosphatidic Acid in High Temperature Tolerance in Maize , 2010 .
[23] M. Bänziger,et al. Drought stress and tropical maize: QTL-by-environment interactions and stability of QTLs across environments for yield components and secondary traits , 2009, Theoretical and Applied Genetics.
[24] Jun Zhu,et al. QTLNetwork: mapping and visualizing genetic architecture of complex traits in experimental populations , 2008, Bioinform..
[25] Jun Zhu,et al. Mapping the genetic architecture of complex traits in experimental populations , 2007, Bioinform..
[26] Jianbing Yan,et al. Epistatic interaction is an important genetic basis of grain yield and its components in maize , 2007, Molecular Breeding.
[27] Jianbing Yan,et al. Quantitative trait loci mapping and epistatic analysis for grain yield and yield components using molecular markers with an elite maize hybrid , 2006, Euphytica.
[28] K. Semagn,et al. Distribution of DArT, AFLP, and SSR markers in a genetic linkage map of a doubled-haploid hexaploid wheat population. , 2006, Genome.
[29] A. P. Souza,et al. Mapping QTL for Grain Yield and Plant Traits in a Tropical Maize Population , 2006, Molecular Breeding.
[30] John Doebley,et al. Maize association population: a high-resolution platform for quantitative trait locus dissection. , 2005, The Plant journal : for cell and molecular biology.
[31] P. He,et al. Comparative mapping of QTLs for agronomic traits of rice across environments using a doubled haploid population , 1996, Theoretical and Applied Genetics.
[32] Michael Lee,et al. Comparative mapping in F2∶3 and F6∶7 generations of quantitative trait loci for grain yield and yield components in maize , 1996, Theoretical and Applied Genetics.
[33] V. Lefebvre,et al. Construction of an intraspecific integrated linkage map of pepper using molecular markers and doubled-haploid progenies. , 1995, Genome.
[34] D. Grant,et al. Identification of Quantitative Trait Loci Using a Small Sample of Topcrossed and F4 Progeny from Maize , 1994 .
[35] Z. Zeng. Precision mapping of quantitative trait loci. , 1994, Genetics.
[36] J. Epplen,et al. Genetic and population study of a Y-linked tetranucleotide repeat DNA polymorphism with a simple non-isotopic technique , 1993, Human Genetics.
[37] A. Gallais. Optimization of recurrent selection on the phenotypic value of doubled haploid lines , 1989, Theoretical and Applied Genetics.
[38] M. Daly,et al. MAPMAKER: an interactive computer package for constructing primary genetic linkage maps of experimental and natural populations. , 1987, Genomics.
[39] W. M. Ross,et al. Exact Confidence Intervals for Heritability on a Progeny Mean Basis1 , 1983 .
[40] S. S. Chase,et al. An Embryo Marker for Detecting Monoploids Of Maize (Zea Mays L.)1 , 1966 .
[41] Zongliang Xia,et al. The SULTR gene family in maize (Zea mays L.): Gene cloning and expression analyses under sulfate starvation and abiotic stress. , 2018, Journal of plant physiology.
[42] A. Melchinger,et al. Production of haploids and doubled haploids in maize. , 2012, Methods in molecular biology.
[43] M. Altaf,et al. Studies on heritability, correlation and path analysis in maize (Zea mays L.). , 2010 .
[44] R. Voorrips,et al. Mapping of two genes for resistance to clubroot (Plasmodiophora brassicae) in a population of doubled haploid lines of Brassica oleracea by means of RFLP and AFLP markers , 2009, Theoretical and Applied Genetics.
[45] P. Ronald,et al. A Rapid DNA Minipreparation Method Suitable for AFLP and Other PCR Applications , 2004, Plant Molecular Biology Reporter.
[46] B. Griffing. Efficiency changes due to use of doubled-haploids in recurrent selection methods , 2004, Theoretical and Applied Genetics.
[47] H. Leung,et al. Mapping quantitative and qualitative disease resistance genes in a doubled haploid population of barley (Hordeum vulgare) , 2000, Theoretical and Applied Genetics.
[48] R. Doerge,et al. Permutation tests for multiple loci affecting a quantitative character. , 1996, Genetics.
[49] S. Lincoln. Constructing genetic maps with MAPMAKER/EXP 3.0. , 1992 .
[50] A. Gallais. Quantitative genetics of doubled haploid populations and application to the theory of line development. , 1990, Genetics.
[51] T. Choo. Doubled haploids for estimating mean and variance of recombination values. , 1981, Genetics.