scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1007716547 |
P356 | DOI | 10.1038/NG.3339 |
P698 | PubMed publication ID | 26098868 |
P5875 | ResearchGate publication ID | 278968604 |
P50 | author | Meixia Zhao | Q56498957 |
P2093 | author name string | Jianxin Ma | |
Randall L Nelson | |||
Zhanyuan J Zhang | |||
Yanyan Wu | |||
Lianjun Sun | |||
Liwen Zhou | |||
Chunmei Cai | |||
Xueling Zhang | |||
Zhenyan Miao | |||
Dajian Zhang | |||
Stephen A Swarm | |||
P2860 | cites work | Genome sequence of the palaeopolyploid soybean | Q22122200 |
MUSCLE: multiple sequence alignment with high accuracy and high throughput | Q24613456 | ||
Predicting transmembrane protein topology with a hidden Markov model: application to complete genomes | Q27860838 | ||
A conserved family of calcineurin regulators. | Q27933946 | ||
Calcineurin: form and function | Q27934527 | ||
Whole-genome sequencing and intensive analysis of the undomesticated soybean (Glycine soja Sieb. and Zucc.) genome | Q28743970 | ||
The I-TASSER Suite: protein structure and function prediction. | Q30370293 | ||
Dt2 is a gain-of-function MADS-domain factor gene that specifies semideterminacy in soybean | Q33358747 | ||
Artificial selection for determinate growth habit in soybean | Q33928320 | ||
Genomic analysis reveals selection for Asian genes in European pigs following human-mediated introgression | Q34477690 | ||
Selection under domestication: evidence for a sweep in the rice waxy genomic region | Q34895821 | ||
Impacts of genetic bottlenecks on soybean genome diversity | Q35110785 | ||
Calcineurin: a central controller of signalling in eukaryotes | Q35732880 | ||
QTL mapping of domestication-related traits in soybean (Glycine max). | Q37380707 | ||
Maize HapMap2 identifies extant variation from a genome in flux. | Q38943891 | ||
Resequencing 302 wild and cultivated accessions identifies genes related to domestication and improvement in soybean. | Q39044302 | ||
TASSEL: software for association mapping of complex traits in diverse samples | Q39512996 | ||
Genetic changes accompanying the domestication of Pisum sativum: is there a common genetic basis to the 'domestication syndrome' for legumes? | Q42234280 | ||
Cracks in the palisade cuticle of soybean seed coats correlate with their permeability to water | Q43027102 | ||
BR-SIGNALING KINASE1 physically associates with FLAGELLIN SENSING2 and regulates plant innate immunity in Arabidopsis | Q44403263 | ||
De novo assembly of soybean wild relatives for pan-genome analysis of diversity and agronomic traits | Q46124159 | ||
Genetic structure and diversity of cultivated soybean (Glycine max (L.) Merr.) landraces in China. | Q46512622 | ||
Silencing of GmFAD3 gene by siRNA leads to low alpha-linolenic acids (18:3) of fad3-mutant phenotype in soybean [Glycine max (Merr.)]. | Q46767201 | ||
The chickpea, summer cropping, and a new model for pulse domestication in the ancient near east | Q47249550 | ||
Plant domestication versus crop evolution: a conceptual framework for cereals and grain legumes | Q47682535 | ||
The origin of lentil and its wild genepool | Q56611071 | ||
Genetic analysis of soybean hard seededness with molecular markers | Q86719830 | ||
P433 | issue | 8 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 939-943 | |
P577 | publication date | 2015-06-22 | |
P1433 | published in | Nature Genetics | Q976454 |
P1476 | title | GmHs1-1, encoding a calcineurin-like protein, controls hard-seededness in soybean | |
P478 | volume | 47 |
Q36367470 | A Combined Comparative Transcriptomic, Metabolomic, and Anatomical Analyses of Two Key Domestication Traits: Pod Dehiscence and Seed Dormancy in Pea (Pisum sp.). |
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Q47170609 | Contributions of Zea mays subspecies mexicana haplotypes to modern maize |
Q38803990 | Differential expression of a WRKY gene between wild and cultivated soybeans correlates to seed size |
Q92189061 | Domesticating Vigna Stipulacea: A Potential Legume Crop With Broad Resistance to Biotic Stresses |
Q47239802 | Elevation of soybean seed oil content through selection for seed coat shininess. |
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Q55716455 | Genome-wide identification and characterization of InDels and SNPs in Glycine max and Glycine soja for contrasting seed permeability traits. |
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Q89791837 | Molecular mapping and identification of quantitative trait loci for domestication traits in the field cress (Lepidium campestre L.) genome |
Q33740631 | Next-Generation Sequencing from Bulked-Segregant Analysis Accelerates the Simultaneous Identification of Two Qualitative Genes in Soybean |
Q91703873 | Parallel selection on a dormancy gene during domestication of crops from multiple families |
Q36348545 | Performance of hybrid progeny formed between genetically modified herbicide-tolerant soybean and its wild ancestor |
Q37521718 | QTLomics in Soybean: A Way Forward for Translational Genomics and Breeding |
Q38638965 | Seed vigour and crop establishment: extending performance beyond adaptation. |
Q46426043 | Soybean domestication: the origin, genetic architecture and molecular bases |
Q90776519 | Stepwise selection on homeologous PRR genes controlling flowering and maturity during soybean domestication |
Q93087680 | Structural features of the aleurone layer of the seed coat associated with imbibition injury in soybean |
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