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Unfolding the enigma of familial Hodgkin lymphoma:Current insights
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作者 Jelena Roganovic Nusa Matijasic Stjepovic Ana Dordevic 《World Journal of Clinical Cases》 2026年第1期6-14,共9页
Hodgkin lymphoma(HL)is a heterogenous lymphoproliferative disorder of B-cell origin and represents one of the most common malignancies in children and young adults.In addition to well-known underlying factors-such as ... Hodgkin lymphoma(HL)is a heterogenous lymphoproliferative disorder of B-cell origin and represents one of the most common malignancies in children and young adults.In addition to well-known underlying factors-such as Epstein-Barr virus infection-the familial aggregation demonstrated in large population studies suggested a genetic predisposition.First-degree relatives of patients with HL have an approximately threefold increased risk of developing the disease compared to the general population.These observations have recently prompted several whole-genome studies in affected families,identifying variants possibly implicated in lymphomagenesis,including alterations in DICER1(a member of the ribonuclease III family),POT1(protection of telomeres 1),KDR(kinase insert domain receptor),KLHDC8B(kelch domain-containing protein 8B),PAX5(paired box protein 5),GATA3(GATA binding protein 3),IRF7(interferon regulatory factor 7),EEF2KMT(eukaryotic elongation factor 2 lysine methyltransferase),and POLR1E(RNA polymerase I subunit E).In this article,we review current insights into the etiopathogenesis and risks of familial HL,and present case reports involving two sisters diagnosed with HL nearly 17 years apart.Recognizing the risk for first-degree relatives may potentially increase awareness of early symptoms among family members of HL patients,leading to earlier diagnosis and better outcomes.Conversely,understanding that the hereditary risk,though higher than in the general population,remains relatively low may provide reassurance for affected families. 展开更多
关键词 Hodgkin lymphoma Familial Hodgkin lymphoma Genetic analysis Whole genome sequencing Pathogenic variants
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Complete genome sequences of four isolates of Citrus leaf blotch virus from citrus in China 被引量:6
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作者 LI Ping LI Min +4 位作者 ZHANG Song WANG Jun YANG Fang-yun CAO Meng-ji LI Zhong-an 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2018年第3期712-715,共4页
Citrus leaf blotch virus (CLBV) is a member of the genus Citrivirus, in the family Betaflexiviridae. It has been reported CLBV could infect kiwi, citrus and sweet cherry in China. Of 289 citrus samples from six regi... Citrus leaf blotch virus (CLBV) is a member of the genus Citrivirus, in the family Betaflexiviridae. It has been reported CLBV could infect kiwi, citrus and sweet cherry in China. Of 289 citrus samples from six regions of China, 15 were detected to be infected with CLBV in this study. The complete genome of four isolates of CLBV was obtained from Reikou in Sichuan (CLBV-LH), Yura Wase in Zhejiang (CLBV-YL), Bingtangcheng in Hunan (CLBV-BT), Fengjie 72-1 in Chongqing (CLBV- F J), respectively. While they all represented 8 747 nucleotides in monopartite size, excluding the poly(A) tail, each of the isolates coded three open reading frames (ORFs). Identity of the four isolates ranged from 98.9 to 99.8% to each other and from 96.8 to 98.1% to the citrus references in GenBank by multiple alignment of genomes. A phylogenetic tree based on the genome sequences of available CLBV isolates indicated that the four isolates were clustered together, suggesting that CLBV isolates from citrus in China did not have obvious variation. This is the first report of the complete nucleotide sequences of CLBV isolates infecting citrus in China. 展开更多
关键词 Citrus leaf blotch virus (CLBV) genome sequence Citrivirus
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Genetic Variation Analysis on the Whole Genomic Sequence of a H9N2 Subtype Avian Influenza Virus Isolate 被引量:7
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作者 YU Bo ZHANG Zhen-hua +4 位作者 JIANG Bei-yu QIAN Ai-dong LI Lin JING Xiao-dong ZHANG Jian-wei 《Animal Husbandry and Feed Science》 CAS 2009年第11期33-36,共4页
A Objective3 This study was to understand the genetic variation characters of the H9N2 subtype avian influenza virus isolate (A/Chicken/ Hebei/WD/98, abbreviated as WD98) by comparing with other reference strains. I... A Objective3 This study was to understand the genetic variation characters of the H9N2 subtype avian influenza virus isolate (A/Chicken/ Hebei/WD/98, abbreviated as WD98) by comparing with other reference strains. I-Method3 Eight complete genes were amplified by RT-PCR and sequenced. The homology and genetic evolution relationship were analyzed between these sequences and that of the seven reference strains. [Result] The whole genomic sequence of WD98 strain was 91.1% -95.8% homologous to that of seven reference strains tested. This isolate shared the highest homology (95.8%) to D/HK/Y280/97 and the lowest homology (91.1% ) to C/Pak/2/99. The HA cleavage site of the WD98 strain was R-S-S-R G, and the 226th amino acid at receptor-binding site was Gin. [ Condmion] WD98 strain belongs to mildly pathogenic avian in- fluenza virus and may not infect human. The genetic relationship is the closest between A/Chicken/Hebei/wD/98 and A/duck/HongKong/Y280/ 97, both of which belong to the sub-line of A/Chicken/Beijing/1/94 in Eurasian line. And A/Chicken/Hebei/WD/98 and A/Chicken/Beijing/1/94 are genetically distant within the same sub-line. 展开更多
关键词 Avian influenza virus H9N2 subtype genomic sequence Genetic variation
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Complete genome of Cobetia marina JCM 21022T and phylogenomic analysis of the family Halomonadaceae 被引量:2
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作者 TANG Xianghai XU Kuipeng +2 位作者 HAN Xiaojuan MO Zhaolan MAO Yunxiang 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2018年第2期528-536,共9页
Cobetia marina is a model proteobacteria in researches on marine biofouling. Its taxonomic nomenclature has been revised many times over the past few decades. To better understand the role of the surface-associated li... Cobetia marina is a model proteobacteria in researches on marine biofouling. Its taxonomic nomenclature has been revised many times over the past few decades. To better understand the role of the surface-associated lifestyle of C. marina and the phylogeny of the family Halomonadaceae, we sequenced the entire genome of C. marina JCM 21022T using single molecule real-time sequencing technology (SMRT) and performed comparative genomics and phylogenomics analyses. The circular chromosome was 4 176 300 bp with an average GC content of 62.44% and contained 3 611 predicted coding sequences, 72 tRNA genes, and 21 rRNA genes. The C. marina JCM 2102U genome contained a set of crucial genes involved in surface colonization processes. The comparative genome analysis indicated the significant differences between C. marina JCM 21022T and Cobetia amphilecti KMM 296 (formerly named C. marina KMM 296) resulted from sequence insertions or deletions and chromosomal recombination. Despite these differences, pan and core genome analysis showed similar gene functions between the two strains. The phylogenomic study of the family Halomonadaceae is relationships were well resolved among every genera Cobetia, Kushneria, Zymobacter, and Halotalea. reported here for the first time. We found that the tested, including Chromohalobacter, Halomonas, 展开更多
关键词 Cobetia marina JCM 21022r Halomonadaceae complete genome sequence comparativegenomics PHYLOgenomicS surface colonization single molecule real-time sequencingtechnology (SMRT)
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Copy number variation profile-based genomic typing of premenstrual dysphoric disorder in Chinese 被引量:2
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作者 Hong Xue Zhenggang Wu +10 位作者 Xi Long Ata Ullah Si Chen Wai-Kin Mat Peng Sun Ming-Zhou Gao Jie-Qiong Wang Hai-Jun Wang Xia Li Wen-Jun Sun Ming-Qi Qiao 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2021年第12期1070-1080,共11页
Premenstrual dysphoric disorder(PMDD) affects nearly 5% of women of reproductive age. Symptomatic heterogeneity, together with largely unknown genetics, has greatly hindered its effective treatment. In the present stu... Premenstrual dysphoric disorder(PMDD) affects nearly 5% of women of reproductive age. Symptomatic heterogeneity, together with largely unknown genetics, has greatly hindered its effective treatment. In the present study, analysis of genomic sequencing-based copy number variations(CNVs) called from 100 kb white blood cell DNA sequence windows by means of semisupervized clustering led to the segregation of patient genomes into the D and V groups, which correlated with the depression and invasion clinical types,respectively, with 89.0% consistency. Application of diagnostic CNV features selected using the correlation-based machine learning method enabled the classification of the CNVs obtained into the D group, V group, total patient group, and control group with an average accuracy of 83.0%. The power of the diagnostic CNV features was 0.98 on average, suggesting that these CNV features could be used for the molecular diagnosis of the major clinical types of PMDD. This demonstrated concordance between the CNV profiles and clinical types of PMDD supported the validity of symptom-based diagnosis of PMDD for differentiating between its two major clinical types, as well as the predominantly genetic nature of PMDD with a host of overlaps between multiple susceptibility genes/pathways and the diagnostic CNV features as indicators of involvement in PMDD etiology. 展开更多
关键词 Clinical subtyping genomic sequencing Machine learning Recurrent copy number variation Replication phase Semisupervized
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Characterization and Genomic Analysis of a Plaque Purified Strain of Cyanophage PP 被引量:2
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作者 Yiran Zhou Juan Lin +2 位作者 Na Li Zhihong Hu Fei Deng 《Virologica Sinica》 SCIE CAS CSCD 2013年第5期272-279,共8页
Cyanophages are ubiquitous and essential components of the aquatic environment and play an important role in the termination of algal blooms.As such,they have attracted widespread interest.PP was the first isolated cy... Cyanophages are ubiquitous and essential components of the aquatic environment and play an important role in the termination of algal blooms.As such,they have attracted widespread interest.PP was the first isolated cyanophage in China,which infects Plectonema boryanum and Phormidium foveolarum.In this study,this cyanophage was purified three times by a double-agar overlay plaque assay and characterized.Its genome was extracted,totally sequenced and analyzed.Electron microscopy revealed a particle with an icosahedral head connected to a short stubby tail.Bioassays showed that PP was quite virulent.The genome of PP is a 42,480 base pair(bp),linear,double-stranded DNA molecule with 222 bp terminal repeats.It has high similarity with the known Pf-WMP3 sequence.It contains 41 open reading frames(ORFs),17 of which were annotated.Intriguingly,the genome can be divided into two completely different parts,which differ both in orientation and function. 展开更多
关键词 Cyanophage PP CHARACTERIZATION Plaque assay Complete genome sequencing Genome organization
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Genomic Sequence Determination of Classical Swine Fever Virus Persistent Infection Strain 被引量:3
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作者 Wu Hai\|xiang, Zhang Chu\|yu , Zheng Cong yi, Guo Jun qing Institute of Virology, Wuhan University, Wuhan, 430072 《Wuhan University Journal of Natural Sciences》 EI CAS 2001年第4期864-866,共3页
Full genomic sequence of a newly isolated persistent infection strain of classical swine fever virus was firstly determined. It was demonstrated by sequence analyses that nucleotides homologies of this strain compared... Full genomic sequence of a newly isolated persistent infection strain of classical swine fever virus was firstly determined. It was demonstrated by sequence analyses that nucleotides homologies of this strain compared with virulent Shimen and vaccine HCLV were 89.7%and 87.7%, and homologies of amino acids were 94.8%and 93.3%, respectively. The sequencing results primarily suggest a tighter relationship between this persistent infection strain and virulent Shimen strain than vaccine HCLV strain. 展开更多
关键词 Classical Swine Fever Virus(CSFV) genomic sequence sequence analysis
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A Roadmap for Whitefly Genomics Research:Lessons from Previous Insect Genome Projects 被引量:2
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作者 Owain Rhys Edwards Alexie Papanicolaou 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2012年第2期269-280,共12页
Due to evolving molecular and informatics technologies,modern genome sequencing projects have more different characteristics than what most biologists have become accustomed to during the capillary-based sequencing er... Due to evolving molecular and informatics technologies,modern genome sequencing projects have more different characteristics than what most biologists have become accustomed to during the capillary-based sequencing era.In this paper,we explore the characteristics that made past insect genome projects successful and place them in the context of next-generation sequencing.By taking into account the intricacies of whitefly biology and the community,we present a roadmap for whitefly-omics,which focuses on the formation of an international consortium,deployment of informatic platforms and realistic generation of reference sequence data. 展开更多
关键词 whole genome sequencing next generation sequencing TRANSCRIPTOME genome consortium white paper
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The evolution of cancer genomic medicine in Japan and the role of the National Cancer Center Japan 被引量:1
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作者 Teruhiko Yoshida Yasushi Yatabe +6 位作者 Ken Kato Genichiro Ishii Akinobu Hamada Hiroyuki Mano Kuniko Sunami Noboru Yamamoto Takashi Kohno 《Cancer Biology & Medicine》 SCIE CAS CSCD 2024年第1期29-44,共16页
The journey to implement cancer genomic medicine(CGM)in oncology practice began in the 1980s,which is considered the dawn of genetic and genomic cancer research.At the time,a variety of activating oncogenic alteration... The journey to implement cancer genomic medicine(CGM)in oncology practice began in the 1980s,which is considered the dawn of genetic and genomic cancer research.At the time,a variety of activating oncogenic alterations and their functional significance were unveiled in cancer cells,which led to the development of molecular targeted therapies in the 2000s and beyond.Although CGM is still a relatively new discipline and it is difficult to predict to what extent CGM will benefit the diverse pool of cancer patients,the National Cancer Center(NCC)of Japan has already contributed considerably to CGM advancement for the conquest of cancer.Looking back at these past achievements of the NCC,we predict that the future of CGM will involve the following:1)A biobank of paired cancerous and non-cancerous tissues and cells from various cancer types and stages will be developed.The quantity and quality of these samples will be compatible with omics analyses.All biobank samples will be linked to longitudinal clinical information.2)New technologies,such as whole-genome sequencing and artificial intelligence,will be introduced and new bioresources for functional and pharmacologic analyses(e.g.,a patient-derived xenograft library)will be systematically deployed.3)Fast and bidirectional translational research(bench-to-bedside and bedside-to-bench)performed by basic researchers and clinical investigators,preferably working alongside each other at the same institution,will be implemented;4)Close collaborations between academia,industry,regulatory bodies,and funding agencies will be established.5)There will be an investment in the other branch of CGM,personalized preventive medicine,based on the individual's genetic predisposition to cancer. 展开更多
关键词 Cancer genomic medicine BIOBANK patient-derived xenograft multi-gene panel test whole genome sequencing
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Improving the accuracy of genomic prediction for meat quality traits using whole genome sequence data in pigs 被引量:1
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作者 Zhanwei Zhuang Jie Wu +14 位作者 Yibin Qiu Donglin Ruan Rongrong Ding Cineng Xu Shenping Zhou Yuling Zhang Yiyi Liu Fucai Ma Jifei Yang Ying Sun Enqin Zheng Ming Yang Gengyuan Cai Jie Yang Zhenfang Wu 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2023年第5期1880-1894,共15页
Background Pork quality can directly affect customer purchase tendency and meat quality traits have become valu-able in modern pork production.However,genetic improvement has been slow due to high phenotyping costs.In... Background Pork quality can directly affect customer purchase tendency and meat quality traits have become valu-able in modern pork production.However,genetic improvement has been slow due to high phenotyping costs.In this study,whole genome sequence(WGS)data was used to evaluate the prediction accuracy of genomic best linear unbiased prediction(GBLUP)for meat quality in large-scale crossbred commercial pigs.Results We produced WGS data(18,695,907 SNPs and 2,106,902 INDELs exceed quality control)from 1,469 sequenced Duroc×(Landrace×Yorkshire)pigs and developed a reference panel for meat quality including meat color score,marbling score,L*(lightness),a*(redness),and b*(yellowness)of genomic prediction.The prediction accuracy was defined as the Pearson correlation coefficient between adjusted phenotypes and genomic estimated breeding values in the validation population.Using different marker density panels derived from WGS data,accuracy differed substantially among meat quality traits,varied from 0.08 to 0.47.Results showed that MultiBLUP outperform GBLUP and yielded accuracy increases ranging from 17.39%to 75%.We optimized the marker density and found medium-and high-density marker panels are beneficial for the estimation of heritability for meat quality.Moreover,we conducted genotype imputation from 50K chip to WGS level in the same population and found average concord-ance rate to exceed 95%and r^(2)=0.81.Conclusions Overall,estimation of heritability for meat quality traits can benefit from the use of WGS data.This study showed the superiority of using WGS data to genetically improve pork quality in genomic prediction. 展开更多
关键词 genomic prediction Meat quality PIGS Whole genome sequence
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Genomics and proteomics of Apis mellifera filamentous virus isolated from honeybees in China 被引量:1
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作者 Dahe Yang Jun Wang +5 位作者 Xi Wang Fei Deng Qingyun Diao Manli Wang Zhihong Hu Chunsheng Hou 《Virologica Sinica》 SCIE CAS CSCD 2022年第4期483-490,共8页
Apis mellifera filamentous virus(Am FV)is a large DNA virus that is endemic in honeybee colonies.The genome sequence of the Am FV Swiss isolate(Am FV CH–C05)has been reported,but so far very few molecular studies hav... Apis mellifera filamentous virus(Am FV)is a large DNA virus that is endemic in honeybee colonies.The genome sequence of the Am FV Swiss isolate(Am FV CH–C05)has been reported,but so far very few molecular studies have been conducted on this virus.In this study,we isolated and purified Am FV(Am FV CN)from Chinese honeybee(Apis mellifera)colonies and elucidated its genomics and proteomics.Electron microscopy showed ovoid purified virions with dimensions of 300–500×210–285 nm,wrapping a 3165×40 nm filamentous nucleocapsid in three figure-eight loops.Unlike Am FV CH–C05,which was reported to have a circular genome,our data suggest that Am FV CN has a linear genome of approximately 493 kb.A total of 197 ORFs were identified,among which36 putative genes including 18 baculoviral homologs were annotated.The overall nucleotide similarity between the CN and CH–C05 isolates was 96.9%.Several ORFs were newly annotated in Am FV CN,including homologs of per os infectivity factor 4(PIF4)and a putative integrase.Phylogenomic analysis placed Am FVs on a separate branch within the newly proposed virus class Naldaviricetes.Proteomic analysis revealed 47 Am FV virionassociated proteins,of which 14 had over 50%sequence coverage,suggesting that they are likely to be main structural proteins.In addition,all six of the annotated PIFs(PIF-0–5)were identified by proteomics,suggesting that they may function as entry factors in Am FV infection.This study provides fundamental information regarding the molecular biology of Am FV. 展开更多
关键词 Apis mellifera filamentous Virus(AmFV) per os infectivity factor 4(PIF4) Genome sequence Proteomics Structural proteins Naldaviricetes
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Complete nucleotide sequences of two isolates of Cherry virus A from sweet cherry in China 被引量:1
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作者 GAO Rui LI Shi-fang LU Mei-guang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第7期1667-1671,共5页
Cherry virus A(CVA) is a member of the genusCapilovirus, in the familyBetalfexiviridae. The infection rate of CVA was high in sweet cherry in China. We determined the complete nucleotide sequences of two isolates of... Cherry virus A(CVA) is a member of the genusCapilovirus, in the familyBetalfexiviridae. The infection rate of CVA was high in sweet cherry in China. We determined the complete nucleotide sequences of two isolates of CVA from Tai’an, Shan-dong Province, China using high ifdelity PCR enzymes and speciifc primer pairs for amplifying long fragments in RT-PCR and RACE. The ful-length sequences from isolates ChTA11 and ChTA12 are both 7382 nucleotide (nt) long, excluding the poly(A) tail, encode two open reading frames (ORFs) and have similar genome organization to the two isolates in Gen-Bank. The complete nucleotide sequence of ChTA11 is 98.2 and 81.2% nt identity to the isolates from Germany and India in GenBank, respectively, and the ChTA12 isolate is 98.2 and 81.0% similar. Analysis of the nucleotide and amino acid sequences showed that the domain of unknown function (DUF1717) is more variable compared with other domains. This is the ifrst report of the complete nucleotide sequences of CVA isolates infecting sweet cherry in China. 展开更多
关键词 Cherry virus A (CVA) genome sequence Capilovirus
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Genomics of pancreatic ductal adenocarcinoma 被引量:1
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作者 Christian Pilarsky Robert Grützmann 《Hepatobiliary & Pancreatic Diseases International》 SCIE CAS 2014年第4期381-385,共5页
Pancreatic cancer is one of the worst prognostic cancers because of the late diagnosis and the absence of effective treatment. Within all subtypes of this disease, ductal adenocarcinoma has the shortest survival time.... Pancreatic cancer is one of the worst prognostic cancers because of the late diagnosis and the absence of effective treatment. Within all subtypes of this disease, ductal adenocarcinoma has the shortest survival time. In recent years,global genomics profiling allowed the identification of hundreds of genes that are perturbed in pancreatic cancer. The integration of different omics sources in the study of pancreatic cancer has revealed several molecular mechanisms, indicating the complex history of its development. However, validation of these genes as biomarkers for early diagnosis, prognosis or treatment efficacy is still incomplete but should lead to new approaches for the treatment of the disease in the future. 展开更多
关键词 pancreatic ductal adenocarcinoma genomes DNA RNA next-generation sequencing precision medicine
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Digital Karyotyping with Whole Genomic Sequencing for Complex Congenital Disorder
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作者 Rongrong Chen Shuzhan Li +8 位作者 Gongshu Liu Yuan Yuan Jiucheng Liu Tao Liu Renhua Wu Qian Sun Xiubao Ren Xin Yi Hongbing Zhang 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2015年第11期651-655,共5页
Complex congenital disorders may be caused by multiple genetic alterations and/or environmental hazards. Diagnosis and management of these diseases are usually difficult. Robust next-generation sequencing (NGS) tech... Complex congenital disorders may be caused by multiple genetic alterations and/or environmental hazards. Diagnosis and management of these diseases are usually difficult. Robust next-generation sequencing (NGS) technologies provide unprecedented opportunities to maximize mutation detection and improve genetic counseling and clinical management. Targeted or whole exome sequencing (WES) mainly detects protein-coding DNA sequence aberrations and is the major DNA sequencing technology that is entering clinical practice (Liu et al., 2014). 展开更多
关键词 WGS Digital Karyotyping with Whole genomic Sequencing for Complex Congenital Disorder gene CGH
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A Comparison of Complete Genome Sequences of a Rabies Virus Chinese Isolate SH06 with the Vaccine Strains
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作者 Sheng-li MENG Ge-Lin XU Jie WU Xiao-Ming YANG Jia-Xin YAN 《Virologica Sinica》 SCIE CAS CSCD 2009年第6期529-536,共8页
In this study, we determined the complete nucleotide and deduced amino acid sequence of a primary isolate of rabies virus (SH06) obtained from the brain of a rabid dog. The overall length of the genome was 11 924 nucl... In this study, we determined the complete nucleotide and deduced amino acid sequence of a primary isolate of rabies virus (SH06) obtained from the brain of a rabid dog. The overall length of the genome was 11 924 nucleotides. Comparison of the genomic sequence showed the homology of SH06 at nucleotide level with full-length genomes of reference vaccine strains ranged from 82.2% with the PV strain to 86.9% with the CTN strain. A full-length genome-based phylogenetic analysis was performed with sequences available from GenBank. Phylogenetic analysis of the complete genome sequences indicated that the SH06 exhibited the highest homology with rabies street virus BD06 and CTN vaccine strain originated from China. 展开更多
关键词 Rabies virus Complete genome sequence Phylogenetic analysis
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Dynamic changes of genomic methylation profiles at different growth stages in Chinese Tan sheep
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作者 Yufang Liu Qiao Xu +5 位作者 Xiaolong Kang Kejun Wang Jve Wang Dengzhen Feng Ying Bai Meiying Fang 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2022年第1期82-93,共12页
Background:Tan sheep,an important local sheep breed in China,is famous for their fur quality.One-month-old Tan sheep have white,curly hair with beautiful flower spikes,commonly known as“nine bends”,which has high ec... Background:Tan sheep,an important local sheep breed in China,is famous for their fur quality.One-month-old Tan sheep have white,curly hair with beautiful flower spikes,commonly known as“nine bends”,which has high economic value.However,the“nine bends”characteristic gradually disappears with age;consequently,the economic value of the Tan sheep decreases.Age-related changes in DNA methylation have been reported and may be responsible for age-induced changes in gene expression.Until now,no genome-wide surveys have been conducted to identify potential DNA methylation sites involved in different sheep growth stages.In this study we investigated the dynamic changes of genome-wide DNA methylation profiles in Tan sheep using DNA from skin and deep whole-genome bisulfite sequencing,and compared the DNA methylation levels at three different growth stages:1,24,and 48 months old(mon1,mon24,and mon48,respectively).Results:In this study,11 skin samples from three growth stages(four for mon1,four for mon24,and three for mon48)were used for DNA methylation analysis and gene expression profiling.There were 52,288 and 236 differentially methylated genes(DMGs)identified between mon1 and mon24,mon1 and mon48,and mon24 and mon48,respectively.Of the differentially methylated regions,1.11%,7.61%,and 7.65% were in the promoter in mon1 vs.mon24,mon24 vs.mon48,and mon1 vs.mon48,respectively.DMGs were enriched in the MAPK and WNT signaling pathways,which are related to age growth and hair follicle morphogenesis processes.There were 51 DMGs associated with age growth and curly fleece formation.Four DMGs between mon1 and mon48(KRT71,CD44,ROR2 and ZDHHC13)were further validated by bisulfite sequencing.Conclusions:This study revealed dynamic changes in the genomic methylation profiles of mon1,mon24,and mon48 sheep,and the percentages of methylated cytosines were 3.38%,2.85% and 4.17%,respectively.Of the DMGs,KRT71 and CD44 were highly methylated in mon1,and ROR2 and ZDHHC13 were highly methylated in mon48.These findings provide foundational information that may be used to develop strategies for potentially retaining the lamb fur and thus improving the economic value of Tan sheep. 展开更多
关键词 Chinese tan sheep Different growth stages DNA methylation Whole genome bisulfite sequencing
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The Application of Nicotiana benthamiana as a Transient Expression Host to Clone the Coding Sequences of Plant Genes
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作者 Jianzhong Huang Peng Jia +3 位作者 Xiaoju Zhong Xiuying Guan Hongbin Zhang Honglei Ruan 《American Journal of Molecular Biology》 CAS 2024年第2期54-65,共12页
Coding sequences (CDS) are commonly used for transient gene expression, in yeast two-hybrid screening, to verify protein interactions and in prokaryotic gene expression studies. CDS are most commonly obtained using co... Coding sequences (CDS) are commonly used for transient gene expression, in yeast two-hybrid screening, to verify protein interactions and in prokaryotic gene expression studies. CDS are most commonly obtained using complementary DNA (cDNA) derived from messenger RNA (mRNA) extracted from plant tissues and generated by reverse transcription. However, some CDS are difficult to acquire through this process as they are expressed at extremely low levels or have specific spatial and/or temporal expression patterns in vivo. These challenges require the development of alternative CDS cloning technologies. In this study, we found that the genomic intron-containing gene coding sequences (gDNA) from Arabidopsis thaliana, Oryza sativa, Brassica napus, and Glycine max can be correctly transcribed and spliced into mRNA in Nicotiana benthamiana. In contrast, gDNAs from Triticum aestivum and Sorghum bicolor did not function correctly. In transient expression experiments, the target DNA sequence is driven by a constitutive promoter. Theoretically, a sufficient amount of mRNA can be extracted from the N. benthamiana leaves, making it conducive to the cloning of CDS target genes. Our data demonstrate that N. benthamiana can be used as an effective host for the cloning CDS of plant genes. 展开更多
关键词 Coding Sequence genomic Sequence Nicotiana benthamiana Plant Genes
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The complete genomic sequence analysis of human norovirus NVgz01 strain in Guangzhou
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作者 QI Yi ZENG JIA YU ZHONG +8 位作者 XIAO LI YAN LI SU BING ZHU YI CHEN TAO LIN MI Sin XIAO HUI YING CHENG RONG ZHOU SI TANG GONG 《Journal of Microbiology and Immunology》 2007年第1期29-34,共6页
The aim of this study is to explore the genomic molecular organization and genogroup of human nomvirus from infected infants in Guangzhou of China. Primers were designed according to the genomic sequence of norovims i... The aim of this study is to explore the genomic molecular organization and genogroup of human nomvirus from infected infants in Guangzhou of China. Primers were designed according to the genomic sequence of norovims in the GenBank, and the nomvirus genome was amplified by RT-PCR. The PCR- products were cloned into T vector and sequenced, and the genomic nucleotide sequences were analyzed with the programs CLUSTAL W/X, DNASTAR and RAT (Recombination Analysis Tool). The NVgz01 strain genome is 7558 bp in length and encodes three open reading frames (GenBank accession No. is DQ369797). The genomic sequences of NVgz01 were compared with those of nomvirus in GenBank, which revealed that the homology with genogroup Ⅱ ranges between 76%-90%, and genogroup Ⅰ between 43%-44%. The ORF1 region shared 94% and 88% identity with Mc37 and Famiington strains, respectively; the capsid region (ORF2) shared 65% and 94% identity with Mc37 and Farmington strains, respectively. Phylogenetic trees were reconstructed by the neighbor-joining method. Comparative complete sequence analysis of the NVgz01 with reported human norovirus genomic sequences revealed that this isolate belongs to genogroup Ⅱ . The ORF1 and ORF2 regions shared different identity with Mc37 and Fannington strains, suggesting NVgz01 could be a recombinant virus. 展开更多
关键词 Human norovirus Genome Sequence analysis Recombinant
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The complete genomic sequence analysis of genotype 4 human astrovirus HASTVgz01 strain in Guangzhou
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作者 BING ZHU JIA YU ZHONG +5 位作者 XIAO LI YI CHEN TAO LIN ZAO HE WU RONG ZHOU SI TANG GONG 《Journal of Microbiology and Immunology》 2006年第3期173-176,共4页
To analyze the genomic molecular structure and genotype of human astrovirus isolated from infant in Guangzhou of China, the primers were designed based on the genomic sequence of astrovirus from the C, enBank and the ... To analyze the genomic molecular structure and genotype of human astrovirus isolated from infant in Guangzhou of China, the primers were designed based on the genomic sequence of astrovirus from the C, enBank and the target sequence were amplified by RT-PCR. Then the PCR-products were cloned to T vector and sequenced. The genomic nucleotide sequences were analyzed by the programs CLUSTAL W and DNASTAR. It was found that the full genomic length of HASTVgz01 strain was 6721 bp and the ORFs were 6558 bp. The 5' and 3'UTR were 82 and 81 nucleotides. The genome included 3 open reading frames (ORFs) : ORFla, ORFlb and ORF2. The 5'-terminal ORFla started at nueleotide 83 and extended to nucleotide 2845. ORFlb (nt 2785 to nt 4332) overlaped ORFla by 61 nueleotides. The 3'-terminal ORF2 began at nucleotide 4325 and terminated at nucleotide 6640. ORF2 had 2316 nucleotides. Compared with other astrovirus sequences in GenBank, the homology of the amino acid sequence of ORF2 of HASTVgz01 strain with that of serotype 4 was 93%. Homology with other serotypes ranged from 61% to 70%. The complete nucleotide sequence of astrovirus HASTVgz01 strain isolated from Guangzhou in China was 6721 bp in length, GenBank accession NO. DQ344027. Comparing the ORF2 of astrovirus HASTVgz01 with the known sequences of types 1-8 the highest homology was serotype 4 (93%). Comparative sequence analysis of the HASTVgz01 ORF2 with the reported human astrovirus sequences revealed that the isolated astrovirus belongs to genotype (serotype) 4. 展开更多
关键词 Human astrovirus Genome Genotype 4 Sequence analysis
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