CNGBdb的存储功能由国家基因库序列归档系统(CNSA)负责。CNSA是一个归档全球组学数据的系统,致力于多组学数据(基因组、转录组、代谢组、单细胞和空间转录组等)的存储、管理和共享。截至2022年12月7日,CNSA已支持论文发表600篇,发表期刊254种,包括TheLancet、Science、Cell等。
2019
CNGBdb科研支撑成果汇【更新至20191231】
2020
CNGBdb科研支撑成果汇【更新至20201231】
2021
CNGBdb科研支撑成果汇【更新至20211229】
2022
IF ≥20
1 | Han L, Wei X, Liu C, et al. Cell transcriptomic atlas of the non-human primate Macaca fascicularis[J]. Nature, 2022, 604(7907): 723-731.IF:69.504CNSA编号:CNP0001469 |
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2 | Feng S, Bai M, Rivas-González I, et al. Incomplete lineage sorting and phenotypic evolution in marsupials[J]. Cell, 2022, 185(10): 1646-1660. e18.IF:66.85CNSA编号:CNP0000563 |
3 | Chen A, Liao S, Cheng M, et al. Spatiotemporal transcriptomic atlas of mouse organogenesis using DNA nanoball-patterned arrays[J]. Cell, 2022, 185(10): 1777-1792. e21.IF:66.85CNSA编号:CNP0001543 |
4 | Wei X, Fu S, Li H, et al. Single-cell Stereo-seq reveals induced progenitor cells involved in axolotl brain regeneration[J]. Science, 2022, 377(6610): eabp9444.IF:63.714CNSA编号:CNP0002068 |
5 | Liu, X., Tong, X., Zou, Y. et al. Mendelian randomization analyses support causal relationships between blood metabolites and the gut microbiome. Nat Genet 54, 52–61 (2022).IF:41.307CNSA编号:CNP0000794 |
6 | Chen L, Luo J, Jin M, et al. Genome sequencing reveals evidence of adaptive variation in the genus Zea[J]. Nature Genetics, 2022: 1-10.IF:41.307CNSA编号:CNP0001565 |
7 | Lin Y, Peng L, Dong L, et al. Geospatial immune heterogeneity reflects the diverse tumor-immune interactions in intrahepatic cholangiocarcinoma[J]. Cancer Discovery, 2022.IF:38.272CNSA编号:CNP0002045 |
8 | Liu X, Tong X, Zhu J, et al. Metagenome-genome-wide association studies reveal human genetic impact on the oral microbiome[J]. Cell discovery, 2021, 7(1): 1-16.IF:38.079CNSA编号:CNP0001664 |
9 | Zhong H, Wang Y, Shi Z, et al. Characterization of respiratory microbial dysbiosis in hospitalized COVID-19 patients[J]. Cell discovery, 2021, 7(1): 1-14.IF:38.079CNSA编号:CNP0001066 |
10 | Shuai M, Fu Y, Zhong H, et al. Mapping the human gut mycobiome in middle-aged and elderly adults: multiomics insights and implications for host metabolic health[J]. Gut, 2022.IF:31.793CNSA编号:CNP0002114,CNP0000829,CNP0001510 |
11 | Li S, Su K, Zhuang Z, et al. A simple, rapid, and practical method for single-cell proteomics based on mass-adaptive coating of synthetic peptides[J]. Science Bulletin, 2022, 67(6): 581-584.IF:20.577CNSA编号:CNP0002132 |
10 ≤ IF < 20
12 | Jin X, Xu K, Jiang P, et al. Virus strain from a mild COVID-19 patient in Hangzhou represents a new trend in SARS-CoV-2 evolution potentially related to Furin cleavage site[J]. Emerging microbes & infections, 2020, 9(1): 1474-1488.IF:19.568CNSA编号:CNA0007334, CNA0007332 |
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13 | Zhang H, Gong X, Zhao Q, et al. The tRNA discriminator base defines the mutual orthogonality of two distinct pyrrolysyl-tRNA synthetase/tRNAPyl pairs in the same organism[J]. Nucleic acids research, 2022, 50(8): 4601-4615.IF:16.971CNSA编号:CNP0001963 |
14 | Zhou Z, Tan C, Chau M H K, et al. TEDD: a database of temporal gene expression patterns during multiple developmental periods in human and model organisms[J]. Nucleic Acids Research, 2022.IF:16.971CNSA编号:/ |
15 | Li Q, Wang M, Zhang P, et al. A single-cell transcriptomic atlas tracking the neural basis of division of labour in an ant superorganism[J]. Nature Ecology & Evolution, 2022, 6(8): 1191-1204.IF:19.1CNSA编号:CNP0001472 |
16 | Gui S, Wei W, Jiang C, et al. A pan-Zea genome map for enhancing maize improvement[J]. Genome biology, 2022, 23(1): 1-22.IF:17.906CNSA编号:CNP0002007,CNP0001565 |
17 | Shi, Q., Shao, K., Jia, H. et al. Genomic alterations and evolution of cell clusters in metastatic invasive micropapillary carcinoma of the breast. Nat Commun 13, 111 (2022). IF:17.694 CNSA编号:CNP0000395 |
18 | Chen D, Sun J, Zhu J, et al. Single cell atlas for 11 non-model mammals, reptiles and birds[J]. Nature communications, 2021, 12(1): 1-17.IF:17.694CNSA编号:CNP0001085 |
19 | Cole T L, Zhou C, Fang M, et al. Genomic insights into the secondary aquatic transition of penguins[J]. Nature Communications, 2022, 13(1): 1-13.IF:17.694CNSA编号:CNP0000605, CNP0000505 |
20 | Tong X, Han M J, Lu K, et al. High-resolution silkworm pan-genome provides genetic insights into artificial selection and ecological adaptation[J]. Nature communications, 2022, 13(1): 1-15.IF:17.694CNSA编号:CNP0001815,CNP0002456 |
21 | Liao Y, Wang J, Zhu Z, et al. The 3D architecture of the pepper genome and its relationship to function and evolution[J]. Nature communications, 2022, 13(1): 1-18.IF:17.694CNSA编号:CNP0001129 |
22 | Lei Y, Cheng M, Li Z, et al. Spatially resolved gene regulatory and disease-related vulnerability map of the adult Macaque cortex[J]. Nature Communications, 2022, 13(1): 1-20.IF:17.694CNSA编号:CNP0000927 |
23 | Wang Y, Wang X, Sun S, et al. GWAS, MWAS and mGWAS provide insights into precision agriculture based on genotype-dependent microbial effects in foxtail millet[J]. Nature communications, 2022, 13(1): 1-17.IF:17.694CNSA编号:CNP0001521 |
24 | Yuan J, Jiang S, Jian J, et al. Genomic basis of the giga-chromosomes and giga-genome of tree peony Paeonia ostii[J]. Nature Communications, 2022, 13(1): 1-16.IF:17.694CNSA编号:CNP0003098 |
25 | Liao N, Hu Z, Miao J, et al. Chromosome-level genome assembly of bunching onion illuminates genome evolution and flavor formation in Allium crops[J]. Nature communications, 2022, 13(1): 1-15.IF:17.694CNSA编号:CNP0002276 |
26 | Zhang H, Fu X, Gong X, et al. Systematic dissection of key factors governing recombination outcomes by GCE-SCRaMbLE[J]. Nature communications, 2022, 13(1): 1-11.IF:17.694CNSA编号:CNP0002899 |
27 | Ou Z, Lin S, Qiu J, et al. Single‐Nucleus RNA Sequencing and Spatial Transcriptomics Reveal the Immunological Microenvironment of Cervical Squamous Cell Carcinoma[J]. Advanced Science, 2022: 2203040.IF:17.521CNSA编号:CNP0002543,CNP0002535 |
28 | Liu Y, Wang S, Li L, et al. The Cycas genome and the early evolution of seed plants[J]. Nature Plants, 2022, 8(4): 389-401.IF:17.352CNSA编号:CNP0001756 |
29 | Tao Y, Luo H, Xu J, et al. Extensive variation within the pan-genome of cultivated and wild sorghum[J]. Nature Plants, 2021, 7(6): 766-773.IF:17.352CNSA编号:CNP0001075 |
30 | Pan H, Guo R, Ju Y, et al. A single bacterium restores the microbiome dysbiosis to protect bones from destruction in a rat model of rheumatoid arthritis[J]. Microbiome, 2019, 7(1): 1-11.IF:16.837CNSA编号:CNPhis0000071 |
31 | Liu X, Liu Q, Sun S, et al. Exploring AI-2-mediated interspecies communications within rumen microbial communities[J]. Microbiome, 2022, 10(1): 1-16.IF:16.837CNSA编号:CNP0000824 |
32 | Bai X, Sun Y, Li Y, et al. Landscape of the gut archaeome in association with geography, ethnicity, urbanization, and diet in the Chinese population[J]. Microbiome, 2022, 10(1): 1-18.IF:16.837CNSA编号:CNP0002547 |
33 | Li Z, Lai J, Zhang P, et al. Multi-omics analyses of serum metabolome, gut microbiome and brain function reveal dysregulated microbiota-gut-brain axis in bipolar depression[J]. Molecular Psychiatry, 2022: 1-13.IF:13.437CNSA编号:CNP0002003 |
34 | Liu Y, Li C, Han Y, et al. Spatial transcriptome analysis on peanut tissues shed light on cell heterogeneity of the peg[J]. Plant biotechnology journal, 2022, 20(9): 1648-1650.IF:13.263CNSA编号:CNP0002814 |
35 | Chen Z, Zhu J, Du M, et al. High-throughput sequencing revealed low-efficacy genome editing using Cas9 RNPs electroporation and single-celled microinjection provided an alternative to deliver CRISPR reagents into Euglena gracilis[J]. Plant biotechnology journal, 2022, 20(11): 2048-2050.IF:13.263CNSA编号:CNP0002995,CNP0003142 |
36 | Jiang P, Zhang Z, Hu Y, et al. Single-cell ATAC-seq maps the comprehensive and dynamic chromatin accessibility landscape of CAR-T cell dysfunction[J]. Leukemia, 2022: 1-13.IF:12.883CNSA编号:CNP0002442 |
37 | Liu Y, Shao L, Zhou J, et al. Genomic insights into the genetic signatures of selection and seed trait loci in cultivated peanut[J]. Journal of Advanced Research, 2022.IF:12.822CNSA编号:CNP0001330 |
38 | Wu W, Gao Y D, Jiang D C, et al. Genomic adaptations for arboreal locomotion in Asian flying treefrogs[J]. Proceedings of the National Academy of Sciences, 2022, 119(13): e2116342119.IF:12.779CNSA编号:CNP0002375 |
39 | Chen M, Guo L, Ramakrishnan M, et al. Rapid growth of Moso bamboo (Phyllostachys edulis): Cellular roadmaps, transcriptome dynamics, and environmental factors[J]. The Plant Cell, 2022.IF:12.085CNSA编号:CNP0001577 |
40 | Chow L K Y, Chung D L S, Tao L, et al. Epigenomic landscape study reveals molecular subtypes and EBV-associated regulatory epigenome reprogramming in nasopharyngeal carcinoma[J]. EBioMedicine, 2022, 86: 104357.IF:11.205CNSA编号:CNP0000428 |
41 | Zhang H, Xu H K, Zhang S F, et al. Metaproteomics reveals the molecular mechanism underlying bloom maintenance of a marine dinoflagellate under low ambient CO2 and inorganic nutrients[J]. Science of The Total Environment, 2021, 768: 144515.IF:10.753CNSA编号:CNP0000232 |
42 | Wu Z, Chen H, Pan Y, et al. The genome of Hippophae rhamnoides provides insights into a conserved molecular mechanism in actinorhizal and rhizobial symbiosis[J]. New Phytologist, 2022.IF:10.323CNSA编号:CNP0001846 |
43 | Li L, Chen X, Fang D, et al. Genomes shed light on the evolution of Begonia, a mega‐diverse genus[J]. New Phytologist, 2022.IF:10.323CNSA编号:CNP0001056 |
44 | Zhou H, Zhu W, Wang X, et al. A missense mutation in WRKY32 converts its function from a positive regulator to a repressor of photomorphogenesis[J]. The New Phytologist, 2021.IF:10.323CNSA编号:CNP0001592 |
IF <10
45 | Ye X, Wang L, Nie M, et al. A single-cell atlas of diffuse large B cell lymphoma[J]. Cell Reports, 2022, 39(3): 110713.IF:9.995CNSA编号:CNP0001940 |
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46 | Zhang Z Y, Lv Y, Wu W, et al. The structural and functional divergence of a neglected three-finger toxin subfamily in lethal elapids[J]. Cell Reports, 2022, 40(2): 111079.IF:9.995CNSA编号:CNP0002662 |
47 | Ma P, Liu X, Xu Z, et al. Joint profiling of gene expression and chromatin accessibility during amphioxus development at single-cell resolution[J]. Cell Reports, 2022, 39(12): 110979.IF:9.995CNSA编号:CNP0000891 |
48 | Zheng H, Chen Y, Li J, et al. Longitudinal analyses reveal distinct immune response landscapes in lung and intestinal tissues from SARS-CoV-2-infected rhesus macaques[J]. Cell Reports, 2022, 39(8): 110864.IF:9.995CNSA编号:CNP0002884 |
49 | Chen X, Shao Y, Wei W, et al. Androgen deprivation restores ARHGEF2 to promote neuroendocrine differentiation of prostate cancer[J]. Cell death & disease, 2022, 13(11): 1-13.IF:9.685CNSA编号:CNP0001560,CNP0001628 |
50 | Zhu Z, Wang W, Lin F, et al. Molecular profiling of lymphovascular invasive cancer cells in TNBC using G&T-seq[J]. Genome Res, 2019, 25: 714-24.IF:9.438CNSA编号:CNP0000440 |
51 | Ferrández-Peral L, Zhan X, Alvarez-Estape M, et al. Transcriptome innovations in primates revealed by single-molecule long-read sequencing[J]. Genome research, 2022, 32(8): 1448-1462.IF:9.438CNSA编号:CNP0002604 |
52 | Yan J, Zhang P, Tan J, et al. Cdk5 phosphorylation-induced SIRT2 nuclear translocation promotes the death of dopaminergic neurons in Parkinson’s disease[J]. npj Parkinson's Disease, 2022, 8(1): 1-12.IF:9.304CNSA编号:CNP0002710 |
53 | Dong B, Lin X, Jing X, Hu T, Zhou J, Chen J, Xiao L, Wang B, Chen Z, Liu J, Hu Y, Liu G, Liu S, Liu J, Wei W, Zou Y. A Bacterial Genome and Culture Collection of Gut Microbial in Weanling Piglet. Microbiol Spectr. 2022 Feb 23;10(1):e0241721.IF:9.043CNSA编号:CNP0002075,CNP0002072 |
54 | Pei N, Li Y, Liu C, et al. Large-Scale Genomic Epidemiology of Klebsiella pneumoniae Identified Clone Divergence with Hypervirulent Plus Antimicrobial-Resistant Characteristics Causing Within-Ward Strain Transmissions[J]. Microbiology Spectrum, 2022, 10(2): e02698-21.IF:9.043CNSA编号:CNP0001198 |
55 | Zajc J, Černoša A, Sun X, et al. From Glaciers to Refrigerators: the Population Genomics and Biocontrol Potential of the Black Yeast Aureobasidium subglaciale[J]. Microbiology spectrum, 2022: e01455-22.IF:9.043CNSA编号:CNP0000446 |
56 | Yi X, Li Y, Liu H, et al. Inflammatory Endotype-Associated Airway Resistome in Chronic Obstructive Pulmonary Disease[J]. Microbiology Spectrum, 2022, 10(2): e02593-21.IF:9.043CNSA编号:CNP0001954 |
57 | Wang L, Wu Y, Xu J, et al. Colicins of Escherichia coli Lead to Resistance against the Diarrhea-Causing Pathogen Enterotoxigenic E. coli in Pigs[J]. Microbiology Spectrum, 2022, 10(5): e01396-22.IF:9.043CNSA编号:CNP0000824 |
58 | Pan H, Jia C, Paudyal N, et al. Comprehensive Assessment of Subtyping Methods for Improved Surveillance of Foodborne Salmonella[J]. Microbiology spectrum, 2022, 10(5): e02479-22.IF:9.043CNSA编号:CNP0001590 |
59 | Su W, Jiang L, Lu W, et al. A Serotype-Specific and Multiplex PCR Method for Whole-Genome Sequencing of Dengue Virus Directly from Clinical Samples[J]. Microbiology spectrum, 2022, 10(5): e01210-22.IF:9.043CNSA编号:CNP0003264,CNP0003265 |
60 | Lyu M, Wang S, Gao K, Wang L, Zhu X, Liu Y, Wang M, Liu X, Li B, Tian L. Dissecting the Landscape of Activated CMV-Stimulated CD4 T Cells in Humans by Linking Single-Cell RNA-Seq With T-Cell Receptor Sequencing. Front Immunol. 2021 Dec 7;12:779961.IF:8.786CNSA编号:CNP0001262 |
61 | Wang Z, Zhong Y, Zhang Z, et al. Characteristics and Clinical Significance of T-Cell Receptor Repertoire in Hepatocellular Carcinoma[J]. Frontiers in immunology, 2022, 13.IF:8.786CNSA编号:CNP0002126 |
62 | Chen J, Meng J, Li X, et al. HA/CD44 Regulates the T Helper 1 Cells Differentiation by Activating Annexin A1/Akt/mTOR Signaling to Drive the Pathogenesis of EAP[J]. Frontiers in immunology, 2022, 13.IF:8.786CNSA编号:CNP0002741 |
63 | Guo H, Wang M, Wang B, , et al. PRDM1 Drives Human Primary T Cell Hyporesponsiveness by Altering the T Cell Transcriptome and Epigenome. Front Immunol. 2022 Apr 28;13:879501.IF:8.786CNSA编号:CNP0002725 |
64 | Deng M, Li Y, Li Y, et al. A Novel STAT3 Gain-of-Function Mutation in Fatal Infancy-Onset Interstitial Lung Disease[J]. Frontiers in immunology, 2022, 13: 866638.IF:8.786CNSA编号:CNP0002801 |
65 | Du W, Gao C Y, You X, et al. Increased proportion of follicular helper T cells is associated with B cell activation and disease severity in IgA nephropathy[J]. Frontiers in immunology, 2022, 13.IF:8.786CNSA编号:CNP0002798 |
66 | Wang X, Xiong K, Huang F, et al. A metagenome-wide association study of the gut microbiota in recurrent aphthous ulcer and regulation by thalidomide[J]. Frontiers in immunology, 2022, 13.IF:8.786CNSA编号:CNP0001744 |
67 | Qiu Q, Deng J, Deng H, et al. Association of the characteristics of the blood metabolome and gut microbiome with the outcome of methotrexate therapy in psoriasis[J]. Frontiers in immunology, 2022, 13.IF:8.786CNSA编号:CNP0002116 |
68 | Fan W, Pang H, Shi X, et al. Plasma-derived exosomal mRNA profiles associated with type 1 diabetes mellitus[J]. Frontiers in Immunology, 2022, 13.IF:8.786CNSA编号:CNP0002574 |
69 | Giri B, Li S, Fang C, et al. Dynamic miRNA profile of host T cells during early hepatic stages of Schistosoma japonicum infection[J]. Frontiers in immunology, 2022, 13.IF:8.786CNSA编号:CNP0003350 |
70 | Zhong Y M, Yin K, Chen Y, et al. PD-1/PD-L1 combined with LAG3 is associated with clinical activity of immune checkpoint inhibitors in metastatic primary pulmonary lymphoepithelioma-like carcinoma[J]. Frontiers in Immunology, 2022, 13.IF:8.786CNSA编号:CNP0003388 |
71 | Song K, Zheng X, Liu X, et al. Genome-wide association study of SNP-and gene-based approaches to identify susceptibility candidates for lupus nephritis in the Han Chinese population[J]. Frontiers in immunology, 2022, 13.IF:8.786CNSA编号:CNP0003504 |
72 | Wu J, Chen D, Huang H, et al. A novel gene ZNF862 causes hereditary gingival fibromatosis[J]. Elife, 2022, 11: e66646.IF:8.713CNSA编号:CNP0000995 |
73 | Liao Y, Yang Y, Wen H, et al. Abnormal Sylvian fissure at 20–30 weeks as an indicator of malformations of cortical development: role for prenatal whole‐genome sequencing[J]. Ultrasound in Obstetrics & Gynecology, 2021.IF:8.678CNSA编号:CNP0001444 |
74 | Han L, Lan T, Li D, et al. Chromosome‐scale assembly and whole‐genome sequencing of 266 giant panda roundworms provide insights into their evolution, adaptation and potential drug targets[J]. Molecular Ecology Resources, 2022, 22(2): 768-785.IF:8.678CNSA编号:CNP0001242 |
75 | Li D, Qian J, Li W, et al. A high‐quality genome assembly of the eggplant provides insights into the molecular basis of disease resistance and chlorogenic acid synthesis[J]. Molecular Ecology Resources, 2021, 21(4): 1274-1286.IF:8.678CNSA编号:CNP0000734 |
76 | Yang Y, Huang L, Xu C, et al. Chromosome‐scale genome assembly of areca palm (Areca catechu)[J]. Molecular Ecology Resources, 2021, 21(7): 2504-2519.IF:8.678CNSA编号:CNP0000517 |
77 | Sun Y, Guo J, Zeng X, et al. Chromosome‐scale genome assembly of Castanopsis tibetana provides a powerful comparative framework to study the evolution and adaptation of Fagaceae trees[J]. Molecular Ecology Resources, 2022, 22(3): 1178-1189.IF:8.678CNSA编号:CNP0001714 |
78 | Wang L, Lee M, Sun F, et al. A chromosome-level genome assembly of chia provides insights into high omega-3 content and coat color variation of its seeds[J]. Plant Communications, 2022: 100326.IF:8.625CNSA编号:CNP0002868 |
79 | Zhou H, Li G, Yin J, et al. Neoadjuvant chemotherapy alters peripheral and tumour‐infiltrating immune cells in breast cancer revealed by single‐cell RNA sequencing[J]. Clinical and translational medicine, 2021, 11(12): e621.IF:8.554CNSA编号:CNP0001356 |
80 | Liu X, Jiang Y, Song D, et al. Clinical challenges of tissue preparation for spatial transcriptome[J]. Clinical and Translational Medicine, 2022, 12(1): e669.IF:8.554CNSA编号:CNP0002347 |
81 | Fang M, Su Z, Abolhassani H, et al. T Cell Repertoire Abnormality in Immunodeficiency Patients with DNA Repair and Methylation Defects[J]. Journal of clinical immunology, 2022, 42(2): 375-393.IF:8.542CNSA编号:CNP0000138 |
82 | Wang, M., Liu, Y., Wen, T. et al. Chromatin accessibility and transcriptome landscapes of Monomorium pharaonis brain. Sci Data 7, 217 (2020). IF:8.501CNSA编号:CNP0000740 |
83 | Lu Y, Li R, Xia L, et al. A chromosome-level genome assembly of the jade perch (Scortum barcoo)[J]. Scientific Data, 2022, 9(1): 1-10.IF:8.501CNSA编号:CNP0002889 |
84 | Li X, Gao R, Chen G, et al. Draft genome assemblies of four manakins[J]. Scientific Data, 2022, 9(1): 1-11.IF:8.501CNSA编号:CNP0002887 |
85 | Xiao C, Wang J, Su C, et al. Associations of dietary diversity with the gut microbiome, fecal metabolites, and host metabolism: results from 2 prospective Chinese cohorts[J]. The American journal of clinical nutrition, 2022, 116(4): 1049-1058.IF:8.472CNSA编号:CNP0000829 |
86 | Bai X, Zhan G, Tian S, et al. Transcription factor BZR2 activates chitinase Cht20. 2 transcription to confer resistance to wheat stripe rust[J]. Plant Physiology, 2021, 187(4): 2749-2762.IF:8.005CNSA编号:CNP0001524 |
87 | Wan C, Liu Y, Tian S, et al. A serine-rich effector from the stripe rust pathogen targets a Raf-like kinase to suppress host immunity[J]. Plant Physiology, 2022.IF:8.005CNSA编号:CNP0001524 |
88 | Gostinčar C, Sun X, Černoša A, et al. Clonality, inbreeding, and hybridization in two extremotolerant black yeasts[J]. GigaScience, 2022, 11.IF:7.658CNSA编号:CNP0001993 |
89 | Ren W, Wang X, Yang M, et al. Distinct clinical and genetic features of hepatitis B virus-associated follicular lymphoma in Chinese patients[J]. Blood Advances, 2022.IF:7.637CNSA编号:CNP0002528 |
90 | Zhen Q, Yang Z, Wang W, et al. Genetic study on small insertions and deletions in psoriasis reveals a role in complex human diseases[J]. Journal of Investigative Dermatology, 2019, 139(11): 2302-2312. e14.IF:7.59CNSA编号:CNP0000412 |
91 | Karlsson M, Sjöstedt E, Oksvold P, et al. Genome-wide annotation of protein-coding genes in pig[J]. BMC biology, 2022, 20(1): 1-18.IF:7.364CNSA编号:CNP0001361,CNP0000483 |
92 | Cui J, Yang Y, Luo S, et al. Whole-genome sequencing provides insights into the genetic diversity and domestication of bitter gourd (Momordica spp.)[J]. Horticulture research, 2020, 7.IF:7.291CNSA编号:CNP0000016,CNP0000017 |
93 | Hu J, Xu Q, Liu C, et al. Downregulated expression of S2-RNase attenuates self-incompatibility in “Guiyou No. 1” pummelo[J]. Horticulture Research, 2021, 8.IF:7.291CNSA编号:CNP0001704, CNP0001705, CNP0001706 |
94 | Li F, Gao Y, Jin C, et al. The chromosome-level genome of Gypsophila paniculata reveals the molecular mechanism of floral development and ethylene insensitivity[J]. Horticulture Research, 2022, 9.IF:7.291CNSA编号:CNP0003304 |
95 | Zhao N, Guo H B, Jia L, et al. High-quality chromosome-level genome assembly of redlip mullet (Planiliza haematocheila)[J]. Zoological research, 2021, 42(6): 796.IF:6.975CNSA编号:CNP0001604 |
96 | Tang R X, Wang J, Li Y F, et al. Genomics and morphometrics reveal the adaptive evolution of pikas[J]. Zoological Research, 2022, 43(5): 813-826.IF:6.975CNSA编号:CNP0001439 |
97 | Wang X, Ding P, Sun C, et al. Comparative analysis of single cell lung atlas of bat, cat, tiger, and pangolin[J]. Cell biology and toxicology, 2022: 1-5.IF:6.819CNSA编号:CNP0002166 |
98 | Yang T, Liao X, Yang L, et al. Comparative analyses of 3654 chloroplast genomes unraveled new insights into the evolutionary mechanism of green plants[J]. Frontiers in Plant Science, 2019: 655241.IF:6.627CNSA编号:CNPhis0000538 |
99 | Lin M, Zhou Z, Mei Z. Integrative Analysis of Metabolome and Transcriptome Identifies Potential Genes Involved in the Flavonoid Biosynthesis in Entada phaseoloides Stem[J]. Frontiers in Plant Science, 2022, 13: 792674-792674.IF:6.627CNSA编号:CNP0002249 |
100 | Kunyu Duan, Hui Fu, Dongming Fang, et al.Genome-Wide Analysis of the MADS-Box Gene Family in Holoparasitic Plants (Balanophora subcupularis and Balanophora fungosa var. globosa)[J]. Frontiers in Plant Science, 2022.IF:6.627CNSA编号:CNP0003054 |
101 | Lin M, Zhou Z, Mei Z. Integrative Analysis of Metabolome and Transcriptome Identifies Potential Genes Involved in the Flavonoid Biosynthesis in Entada phaseoloides Stem[J]. Frontiers in plant science, 2022, 13.IF:6.627CNSA编号:CNP0002249, CNP0001900 |
102 | Zhao C, Xie M, Liang L, et al. Genome-Wide Association Analysis Combined With Quantitative Trait Loci Mapping and Dynamic Transcriptome Unveil the Genetic Control of Seed Oil Content in Brassica napus L[J]. Frontiers in Plant Science, 2022, 13.IF:6.627CNSA编号:CNP0002896, CNP0002897 |
103 | Lu J, Cheng F, Huang Y, et al. Grafting Watermelon Onto Pumpkin Increases Chilling Tolerance by Up Regulating Arginine Decarboxylase to Increase Putrescine Biosynthesis[J]. Frontiers in plant science, 2022, 12: 812396.IF:6.627CNSA编号:CNP0002368 |
104 | Chen C, Miao Y, Luo D, et al. Sequence Characteristics and Phylogenetic Analysis of the Artemisia argyi Chloroplast Genome[J]. Frontiers in Plant Science, 2022, 13.IF:6.627CNSA编号:CNP0002996 |
105 | Zhang L, Ding Y, Xu J, et al. Selection Signatures in Chinese Sorghum Reveals Its Unique Liquor-Making Properties[J]. Frontiers in plant science, 2022, 13.IF:6.627CNSA编号:CNP0002968 |
106 | Sun F, Yan C, Lv Y, et al. Genome Sequencing of Amomum tsao-ko Provides Novel Insight Into Its Volatile Component Biosynthesis[J]. Frontiers in plant science, 2022, 13.IF:6.627CNSA编号:CNP0002802 |
107 | Yang Q, Li B, Rizwan H, et al. Genome-wide identification and comprehensive analyses of NAC transcription factor gene family and expression analysis under Fusarium kyushuense and drought stress conditions in Passiflora edulis[J]. Frontiers in plant science, 2022, 13.IF:6.627CNSA编号:CNP0001287 |
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