• 제목/요약/키워드: Whole-genome sequencing

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Two novel mutations in ALDH18A1 and SPG11 genes found by whole-exome sequencing in spastic paraplegia disease patients in Iran

  • Komachali, Sajad Rafiee;Siahpoosh, Zakieh;Salehi, Mansoor
    • Genomics & Informatics
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    • 제20권3호
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    • pp.30.1-30.9
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    • 2022
  • Hereditary spastic paraplegia is a not common inherited neurological disorder with heterogeneous clinical expressions. ALDH18A1 (located on 10q24.1) gene-related spastic paraplegias (SPG9A and SPG9B) are rare metabolic disorders caused by dominant and recessive mutations that have been found recently. Autosomal recessive hereditary spastic paraplegia is a common and clinical type of familial spastic paraplegia linked to the SPG11 locus (locates on 15q21.1). There are different symptoms of spastic paraplegia, such as muscle atrophy, moderate mental retardation, short stature, balance problem, and lower limb weakness. Our first proband involves a 45 years old man and our second proband involves a 20 years old woman both are affected by spastic paraplegia disease. Genomic DNA was extracted from the peripheral blood of the patients, their parents, and their siblings using a filter-based methodology and quantified and used for molecular analysis and sequencing. Sequencing libraries were generated using Agilent SureSelect Human All ExonV7 kit, and the qualified libraries are fed into NovaSeq 6000 Illumina sequencers. Sanger sequencing was performed by an ABI prism 3730 sequencer. Here, for the first time, we report two cases, the first one which contains likely pathogenic NM_002860: c.475C>T: p.R159X mutation of the ALDH18A1 and the second one has likely pathogenic NM_001160227.2: c.5454dupA: p.Glu1819Argfs Ter11 mutation of the SPG11 gene and also was identified by the whole-exome sequencing and confirmed by Sanger sequencing. Our aim with this study was to confirm that these two novel variants are direct causes of spastic paraplegia.

Whole Genome Sequencing of Two Musa Species Towards Disease Resistance and Fiber Quality Improvement

  • John Ivan Pasquil;Richellen Plaza;Roneil Christian Alonday;Damsel Bangcal;Julianne Villela;Antonio, Lalusin;Maria Genaleen Diaz;Antonio Laurena
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.32-32
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    • 2022
  • Abaca (Musa textilis L. Nee) is a native Musa species from the Philippines known for its natural fiber. Abaca fiber a.k.a. Manila hemp extracted from its pseudostems is considered one of the strongest fibers in the world. This is used for commodities such as ropes, papers, and money bills. Abaca is vulnerable to pests and diseases such as the Abaca Bunchy Top Disease (ABTD) caused by Abaca Bunchy Top Virus (ABTV) and Banana Bunchy Top Virus (BBTV). Inosa, one of the varieties of abaca utilized in the Philippines, is highly susceptible to ABTD. In contrast, Pacol (Musa balbisiana L.), a close relative of abaca, is highly resistant to the same disease. Here, we report the sequencing and de novo genome assembly of both abaca var. Inosa and banana var. Pacol. A total of ~16 Gb and ~21 Gb raw reads for Inosa and Pacol, respectively, were generated using Pacbio Hifi sequencing method and assembled with Hifiasm. High-quality de novo assemblies of both Musa species with 99% recovered as per BUSCO analysis were obtained. The assembled Inosa genome has a total length of ~654 Mb and N50 of 7 Mb while Pacol has a total length of 527 Mb and N50 of 3 Mb which are close to their estimated genome size of ~638 Mb and ~503 Mb, respectively. The information that can be derived from the de novo assembled genomes would provide a solid foundation for further research in disease resistance and fiber quality improvement in abaca.

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Comparison of the copy-neutral loss of heterozygosity identified from whole-exome sequencing data using three different tools

  • Lee, Gang-Taik;Chung, Yeun-Jun
    • Genomics & Informatics
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    • 제20권1호
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    • pp.4.1-4.8
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    • 2022
  • Loss of heterozygosity (LOH) is a genomic aberration. In some cases, LOH can be generated without changing the copy number, which is called copy-neutral LOH (CN-LOH). CN-LOH frequently occurs in various human diseases, including cancer. However, the biological and clinical implications of CN-LOH for human diseases have not been well studied. In this study, we compared the performance of CN-LOH determination using three commonly used tools. For an objective comparison, we analyzed CN-LOH profiles from single-nucleotide polymorphism array data from 10 colon adenocarcinoma patients, which were used as the reference for comparison with the CN-LOHs obtained through whole-exome sequencing (WES) data of the same patients using three different analysis tools (FACETS, Nexus, and Sequenza). The majority of the CN-LOHs identified from the WES data were consistent with the reference data. However, some of the CN-LOHs identified from the WES data were not consistent between the three tools, and the consistency with the reference CN-LOH profile was also different. The Jaccard index of the CN-LOHs using FACETS (0.84 ± 0.29; mean value, 0.73) was significantly higher than that of Nexus (0.55 ± 0.29; mean value, 0.50; p = 0.02) or Sequenza (0 ± 0.41; mean value, 0.34; p = 0.04). FACETS showed the highest area under the curve value. Taken together, of the three CN-LOH analysis tools, FACETS showed the best performance in identifying CN-LOHs from The Cancer Genome Atlas colon adenocarcinoma WES data. Our results will be helpful in exploring the biological or clinical implications of CN-LOH for human diseases.

Genome Organization of Temperate Phage 11143 from Emetic Bacillus cereus NCTC11143

  • Lee, Young-Duck;Park, Jong-Hyun
    • Journal of Microbiology and Biotechnology
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    • 제22권5호
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    • pp.649-653
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    • 2012
  • A temperate phage was isolated from emetic Bacillus cereus NCTC 11143 by mitomycin C and characterized by transmission electron microscopy and DNA and protein analyses. Whole genome sequencing of Bacillus phage 11143 was performed by GS-FLX. The phage has a dsDNA genome of 39,077 bp and a 35% G+C content. Bioinformatic analysis of the phage genome revealed 49 putative ORFs involved in replication, morphogenesis, DNA packaging, lysogeny, and host lysis. Bacillus phage 11143 could be classified as a member of the Siphoviridae family by morphology and genome structure. Genomic comparisons at the DNA and protein levels revealed homologous genetic modules with patterns and morphogenesis proteins similar to those of other Bacillus phages. Thus, Bacillus phages might have a mosaic genetic relationship.

NGS 기법을 활용한 전장게놈에서의 경제형질 관련 유전자 마커 발굴 (Development of an Economic-trait Genetic Marker by Applying Next-generation Sequencing Technologies in a Whole Genome)

  • 김정안;김희수
    • 생명과학회지
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    • 제24권11호
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    • pp.1258-1267
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    • 2014
  • 가축의 고 성장률, 강건성, 질병 저항성과 같은 경제적 형질을 발굴하는 것은 매우 중요한 과제이다. 이에 경제적 형질을 발굴하기 위한 방법으로 전통적으로 RFLP, AFLP와 같은 방법이 대두되었으며, 최근 NGS 기법이 발달함에 따라 이러한 경제적 형질을 전장게놈의 수준에서 발굴하려는 노력이 계속되고 있다. 하지만, NGS 기법의 경우 상대적으로 많은 연구 비용이 필요한 실정이다. 이를 극복하기 위한 노력으로써 RNA-seq, RAD-Seq, RRL, MSG, GBS 등과 같은 기법이 활용되고 있다. 본 논문에서는 NGS 기법을 기반으로 한 최근 연구 동향을 확인하고자 하며, 특히 최소의 연구 비용으로 최대의 효과를 낼 수 있는 연구 방법을 소개하는 데 초점을 맞추었다. 또한 이러한 연구 방법이 우수한 경제형질을 가진 가축을 선정하는 데 어떻게 적용될 수 있는지에 대해 토의하였다.

Identification of Novel Functional Variants of SIN3A and SRSF1 among Somatic Variants in Acute Myeloid Leukemia Patients

  • Min, Jae-Woong;Koh, Youngil;Kim, Dae-Yoon;Kim, Hyung-Lae;Han, Jeong A;Jung, Yu-Jin;Yoon, Sung-Soo;Choi, Sun Shim
    • Molecules and Cells
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    • 제41권5호
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    • pp.465-475
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    • 2018
  • The advent of massively parallel sequencing, also called next-generation sequencing (NGS), has dramatically influenced cancer genomics by accelerating the identification of novel molecular alterations. Using a whole genome sequencing (WGS) approach, we identified somatic coding and noncoding variants that may contribute to leukemogenesis in 11 adult Korean acute myeloid leukemia (AML) patients, with serial tumor samples (primary and relapse) available for 5 of them; somatic variants were identified in 187 AML-related genes, including both novel (SIN3A, C10orf53, PTPRR, and RERGL) and well-known (NPM1, RUNX1, and CEPBA) AML-related genes. Notably, SIN3A expression shows prognostic value in AML. A newly designed method, referred to as "hot-zone" analysis, detected two putative functional noncoding variants that can alter transcription factor binding affinity near PPP1R10 and SRSF1. Moreover, the functional importance of the SRSF1 noncoding variant was further investigated by luciferase assays, which showed that the variant is critical for the regulation of gene expression leading to leukemogenesis. We expect that further functional investigation of these coding and noncoding variants will contribute to a more in-depth understanding of the underlying molecular mechanisms of AML and the development of targeted anti-cancer drugs.

Comprehensive Characterization of Mutant Pichia stipitis Co-Fermenting Cellobiose and Xylose through Genomic and Transcriptomic Analyses

  • Dae-Hwan Kim;Hyo-Jin Choi;Yu Rim Lee;Soo-Jung Kim;Sangmin Lee;Won-Heong Lee
    • Journal of Microbiology and Biotechnology
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    • 제32권11호
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    • pp.1485-1495
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    • 2022
  • The development of a yeast strain capable of fermenting mixed sugars efficiently is crucial for producing biofuels and value-added materials from cellulosic biomass. Previously, a mutant Pichia stipitis YN14 strain capable of co-fermenting xylose and cellobiose was developed through evolutionary engineering of the wild-type P. stipitis CBS6054 strain, which was incapable of co-fermenting xylose and cellobiose. In this study, through genomic and transcriptomic analyses, we sought to investigate the reasons for the improved sugar metabolic performance of the mutant YN14 strain in comparison with the parental CBS6054 strain. Unfortunately, comparative whole-genome sequencing (WGS) showed no mutation in any of the genes involved in the cellobiose metabolism between the two strains. However, comparative RNA sequencing (RNA-seq) revealed that the YN14 strain had 101.2 times and 5.9 times higher expression levels of HXT2.3 and BGL2 genes involved in cellobiose metabolism, and 6.9 times and 75.9 times lower expression levels of COX17 and SOD2.2 genes involved in respiration, respectively, compared with the CBS6054 strain. This may explain how the YN14 strain enhanced cellobiose metabolic performance and shifted the direction of cellobiose metabolic flux from respiration to fermentation in the presence of cellobiose compared with the CBS6054 strain.

Validity of patient-derived xenograft mouse models for lung cancer based on exome sequencing data

  • Kim, Jaewon;Rhee, Hwanseok;Kim, Jhingook;Lee, Sanghyuk
    • Genomics & Informatics
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    • 제18권1호
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    • pp.3.1-3.8
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    • 2020
  • Patient-derived xenograft (PDX) mouse models are frequently used to test the drug efficacy in diverse types of cancer. They are known to recapitulate the patient characteristics faithfully, but a systematic survey with a large number of cases is yet missing in lung cancer. Here we report the comparison of genomic characters between mouse and patient tumor tissues in lung cancer based on exome sequencing data. We established PDX mouse models for 132 lung cancer patients and performed whole exome sequencing for trio samples of tumor-normal-xenograft tissues. Then we computed the somatic mutations and copy number variations, which were used to compare the PDX and patient tumor tissues. Genomic and histological conclusions for validity of PDX models agreed in most cases, but we observed eight (~7%) discordant cases. We further examined the changes in mutations and copy number alterations in PDX model production and passage processes, which highlighted the clonal evolution in PDX mouse models. Our study shows that the genomic characterization plays complementary roles to the histological examination in cancer studies utilizing PDX mouse models.

배추 유전체열구의 현황과 전망 (Korea Brassica Genome Project: Current Status and Prospective)

  • 최수련;박지영;박범석;김호일;임용표
    • Journal of Plant Biotechnology
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    • 제33권3호
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    • pp.153-160
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    • 2006
  • 유전체 연구란 목적하는 유전체의 구조를 밝히고 가지고 있는 모든 유전자의 기능 및 진화과정을 망라하여 이해하고자 하는 것이다. 계통발생학상 애기장대와 연관되어 있는 Brassica rapa는 채소, 유지 및 사료로 이용되는 중요한 작물의 하나이다. Brassica rapa의 유전체 연구를 착수하는 데는 적합한 유전학적 재료 및 유전체 재료가 있어야 한다. 우리는 배추 (Brassica rapa spp. pekinensis)를 재료로 하여 표준 mapping 집단을 개발하여, 78계통으로 구성된 DH집단과 약 250 계통으로 구성된 RI집단을 개발하였다. 2가지 제한효소 (HintIII, BamHI)를 이용해 세균인공염색체 (BAC) library (KBrH, KBrB)를 만들었고, 이들은 각각 56,592개와 50,688개의 클론으로 구성되어 있다. 또한 배추의 각기 다른 부위를 이용하여 만든 22가지의 cDNA library를 이용하여 평균 575bp의 길이를 가지는 104,914개의 EST 분석을 실시 하였다. 세계적으로 'Multinational Brassica Genome Project (MBGP)' 조직이 구성되었고 배추의 전 염기서열 분석을 하기로 2003년 결정되었다. 그 첫 단계로 104,914개의 BAC 클론의 BAC-end 염기서열분석이 제안되어 2006년 9월 5개국 공동 프로젝트로 추진하여 완성하게 되었다. 이러한 BAC-end 염기서열분석의 결과는 유전자의 염기서열 해석, 및 풍부하게 존재하는 반복염기서열 DNA를 분석함으로써 배추의 유전체 구조를 이해할 수 있는 실마리를 주었다. BAC 클론의 전체 염기서열분석은, 비록 단편 내에 유전자의 결실이 변화무쌍하게 일어나지만 배추 DNA 단편이 유전체에서 광범위하게 삼중복으로 존재함을 나타냈다. 이러한 BAC-end 염기서열을 아기장대 염기서열에 비교하여 629개의 종자 BAC을 선정하게 되었고, 이들의 염기서열 분석을 완성하였다. MBGP에서는2단계로서 배추의 전 유전체 염기서열 분석을 추진하게 되었고, 유전자지도에 위치한 종자 BAC을 이용하여 인접한 BAC 클론을 찾아 염기서열 분석하는 BAC-to-BAC 방법을 추진하고 있으며 8개국에서 참여하여 현재 염기서열 분석을 추진 중 이다. 최근에 각 국에서는 생물정보학기법을 활용한 염기서열 분석 기반에 대하여 많은 토론이 진행되고 있다. 앞으로 다양한 유전체 정보가 축적됨에 따라 배추의 유전체 구조를 이해하고 농업적으로 적용하고자 하는데 기여를 할 것이다.