Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 55 checked references that resolve
resolves10.1186/s12870-015-0417-5Digital gene expression analysis of gene expression differences within Brassica diploids and allopolyploids
resolves10.1186/s12870-014-0208-4Increased expression of native cytosolic Cu/Zn superoxide dismutase and ascorbate peroxidase improves tolerance to oxidative and chilling stresses in cassava (Manihot esculenta Crantz)
resolves10.1038/ng.919The genome of the mesopolyploid crop species Brassica rapa
resolves10.1139/g00-026Amphidiploid<i>Brassica juncea</i>contains conserved progenitor genomes
resolves10.1270/jsbbs.64.60Recent progress in drought and salt tolerance studies in <i>Brassica</i> crops
resolves10.1104/pp.010188Antioxidant Systems and O2
.−/H2O2 Production in the Apoplast of Pea Leaves. Its Relation with Salt-Induced Necrotic Lesions in Minor Veins
resolves10.1186/s12864-017-3768-5Genome-wide characterization and expression analyses of superoxide dismutase (SOD) genes in Gossypium hirsutum
resolves10.1104/pp.118.2.637Superoxide Dismutase in Arabidopsis: An Eclectic Enzyme Family with Disparate Regulation and Protein Localization
resolves10.1016/j.aggene.2017.08.003Superoxide dismutases in bread wheat ( Triticum aestivum L.): Comprehensive characterization and expression analysis during development and, biotic and abiotic stresses
resolves10.1016/j.jplph.2004.09.009Enhanced drought tolerance of transgenic rice plants expressing a pea manganese superoxide dismutase
resolves10.1038/srep40179Overproduction of superoxide dismutase and catalase confers cassava resistance to Tetranychus cinnabarinus
resolves10.1093/molbev/mst010MAFFT Multiple Sequence Alignment Software Version 7: Improvements in Performance and Usability
resolves10.1038/msb.2011.75Fast, scalable generation of high‐quality protein multiple sequence alignments using Clustal Omega
resolves10.1093/nar/30.1.325PlantCARE, a database of plant cis-acting regulatory elements and a portal to tools for in silico analysis of promoter sequences
resolves10.1186/s12870-014-0405-1Global insights into high temperature and drought stress regulated genes by RNA-Seq in economically important oilseed crop Brassica juncea
resolves10.1007/s10681-017-1891-7Transcriptome analysis of non-heading Chinese cabbage under heat stress by RNA-seq and marker identification
resolves10.1007/s11105-017-1032-4Drought-Tolerant Brassica rapa Shows Rapid Expression of Gene Networks for General Stress Responses and Programmed Cell Death Under Simulated Drought Stress
resolves10.1038/nprot.2013.084De novo transcript sequence reconstruction from RNA-seq using the Trinity platform for reference generation and analysis
resolves10.1371/journal.pone.0036918Evaluation of Candidate Reference Genes for Gene Expression Normalization in Brassica juncea Using Real Time Quantitative RT-PCR
resolves10.1006/meth.2001.1262Analysis of Relative Gene Expression Data Using Real-Time Quantitative PCR and the 2−ΔΔCT Method
resolves10.3906/biy-1403-9Genome-wide distribution of superoxide dismutase (SOD) gene families inSorghum bicolor
resolves10.4049/jimmunol.168.3.1267Comparison of the Crystal Structures of the Human Manganese Superoxide Dismutase and the Homologous
<i>Aspergillus fumigatus</i>
Allergen at 2-Å Resolution
resolves10.1110/ps.04979505The crystal structure of an eukaryotic iron superoxide dismutase suggests intersubunit cooperation during catalysis
resolves10.3389/fpls.2017.01943Abiotic Stress Responsive miRNA-Target Network and Related Markers (SNP, SSR) in Brassica juncea
resolves10.1016/j.jplph.2011.01.020Functional analysis of superoxide dismutases (SODs) in sunflower under biotic and abiotic stress conditions. Identification of two new genes of mitochondrial Mn-SOD
resolves10.1006/abbi.2001.2739Molecular Evolution and Structure–Function Relationships of the Superoxide Dismutase Gene Families in Angiosperms and Their Relationship to Other Eukaryotic and Prokaryotic Superoxide Dismutases
resolves10.1104/pp.108.3.1151Peroxisomal Copper,Zinc Superoxide Dismutase (Characterization of the Isoenzyme from Watermelon Cotyledons)
resolves10.1104/pp.103.023010Functional Characterization and Expression of a Cytosolic Iron-Superoxide Dismutase from Cowpea Root Nodules,
resolves10.3109/10715769109145863Nutritional Effect and Expression of SODs: Induction and Gene Expression; Diagnostics; Prospective Protection Against Oxygen Toxicity
resolves10.1074/jbc.M312329200Specificity and Phenetic Relationships of Iron- and Manganese-containing Superoxide Dismutases on the Basis of Structure and Sequence Comparisons
resolves10.1021/ja027319zComparison and Contrasts between the Active Site PKs of Mn-Superoxide Dismutase and Those of Fe-Superoxide Dismutase
resolves10.1186/1741-7007-8-55A modern circadian clock in the common angiosperm ancestor of monocots and eudicots
resolves10.1155/2013/658793The Low Temperature Induced Physiological Responses of <i>Avena nuda</i> L., a Cold‐Tolerant Plant Species
The 10 references without a DOI — listed, not checked
no DOI — not checkedNagaharu U. Genome analysis in Brassica with special reference to the experimental formation of B. napus and peculiar mode of fertilization. Jpn J Bot. 1935;7(7):389–452.
no DOI — not checkedWei Z, Wang M, Chang S, Wu C, Liu P, Meng J, Zou J. Introgressing subgenome components from Brassica rapa and B. carinata to B. juncea for broadening its genetic base and exploring intersubgenomic heterosis. Front Plant Sci. 2016;7:1677.
no DOI — not checkedHannaway D, Larson C. Forage fact sheet: pearlmillet (Pennisetum americanum). Corvallis: Oregon State University; 2004.
no DOI — not checkedSingh M, Rathore S, Raja P. Physiological and stress studies of different rapeseed-mustard genotypes under terminal heat stress. Int J Genet Eng Biotech. 2014(5):133–42.
no DOI — not checkedSadaqat HA, Tahir MHN, Hussain MT. Physiogenetic aspects of drought tolerance in canola (Brassica napus). Int J Agric Biol. 2003;5(4):611–4.
no DOI — not checkedFeng K, Yu J, Cheng Y, Ruan M, Wang R, Ye Q, Zhou G, Li Z, Yao Z, Yang Y. The SOD gene family in tomato: identification, phylogenetic relationships, and expression patterns. Front Plant Sci. 2016;7:1279.
no DOI — not checkedJalali-e-Emam SMS, Alizadeh B, Zaefizadeh M, Zakarya RA, Khayatnezhad M. Superoxide dismutase (SOD) activity in NaCl stress in salt-sensitive and salt-tolerance genotypes of colza (Brassica napus L.). Middle East J Sci Res. 2011;7:7–11.
no DOI — not checkedMarchler-Bauer A, Lu S, Anderson JB, Chitsaz F, Derbyshire MK, DeWeese-Scott C, Fong JH, Geer LY, Geer RC, Gonzales NR. CDD: a conserved domain database for the functional annotation of proteins. Nucleic Acids Res. 2010;39(suppl_1):D225–9.
no DOI — not checkedSharma R, Mishra M, Gupta B, Parsania C, Singla-Pareek SL, Pareek A. De novo assembly and characterization of stress transcriptome in a salinity-tolerant variety CS52 of Brassica juncea. PLoS One. 2015;10(5):e0126783.
no DOI — not checkedSinha S, Raxwal VK, Joshi B, Jagannath A, Katiyar-Agarwal S, Goel S, Kumar A, Agarwal M. De novo transcriptome profiling of cold-stressed siliques during pod filling stages in Indian mustard (Brassica juncea L.). Front Plant Sci. 2015;6:932.
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