• 제목/요약/키워드: Next generation sequencing

검색결과 448건 처리시간 0.025초

A genetic approach to comprehend the complex and dynamic event of floral development: a review

  • Jatindra Nath Mohanty;Swayamprabha Sahoo;Puspanjali Mishra
    • Genomics & Informatics
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    • 제20권4호
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    • pp.40.1-40.8
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    • 2022
  • The concepts of phylogeny and floral genetics play a crucial role in understanding the origin and diversification of flowers in angiosperms. Angiosperms evolved a great diversity of ways to display their flowers for reproductive success with variations in floral color, size, shape, scent, arrangements, and flowering time. The various innovations in floral forms and the aggregation of flowers into different kinds of inflorescences have driven new ecological adaptations, speciation, and angiosperm diversification. Evolutionary developmental biology seeks to uncover the developmental and genetic basis underlying morphological diversification. Advances in the developmental genetics of floral display have provided a foundation for insights into the genetic basis of floral and inflorescence evolution. A number of regulatory genes controlling floral and inflorescence development have been identified in model plants such as Arabidopsis thaliana and Antirrhinum majus using forward genetics, and conserved functions of many of these genes across diverse non-model species have been revealed by reverse genetics. Transcription factors are vital elements in systems that play crucial roles in linked gene expression in the evolution and development of flowers. Therefore, we review the sex-linked genes, mostly transcription factors, associated with the complex and dynamic event of floral development and briefly discuss the sex-linked genes that have been characterized through next-generation sequencing.

박과 작물에 과일썩음병을 일으키는 Acidovorax citrulli 검출을 위한 nested-PCR 검사법 개발 (Development of Nested-PCR Assay to Detect Acidovorax citrulli, a Causal Agent of Bacterial Fruit Blotch at Cucurbitaceae)

  • 김영탁;박경수;김혜성;이혁인;차재순
    • 식물병연구
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    • 제21권2호
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    • pp.74-81
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    • 2015
  • 박과 작물에서 과일썩음병(bacterial fruit blotch)을 일으키는 Acidovorax citrulli를 종자로부터 검출하기 위한 특이적이고 민감한 nested-PCR 방법을 개발하였다. 본 연구에서는 Next Generation Sequencing을 이용하여 draft genome sequencing을 얻은 후 이를 분석하여 PCR 프라이머를 디자인하였고, 이들 프라이머의 A. citrulli에 대한 특이성을 확인하여 Ac-ORF 21F/Ac-ORF 21R의 nested PCR 프라이머를 최종 선발하였다. Ac-ORF 21F/Ac-ORF 21R는 오직 A. citrulli에서만 특이적으로 140bp 크기의 DNA를 증폭하였으며, 그 검출민감도는 1차 PCR 검출한계(10 ng genomic DNA/PCR)보다 검출한계를 10,000배 증가시켰다. 개발된 nested-PCR 방법을 통해 병원균을 인공접종한 수박 종자의 외부검사에서 $10^1cfu/ml$까지 인공 접종 한 모든 종자 시료에서 병원균을 검출하였고, 병원균을 인공접종 한 수박 종자의 내부검사에서는 병원균이 검출되지 않았다. 자연 감염 수박 종자의 외부검사에서는 10개의 반복 시료 중 2개에서, 그리고 종자 내부검사에서는 10개의 반복 시료 중 5개에서 A. citrulli를 검출하였다. 본 연구에서 개발한 nested-PCR은 특이성과 민감도가 높고 인공접종과 자연감염 수박 종자에서도 병원균의 검출이 가능하여 박과 작물의 종자로부터 A. citrulli를 검출하는데 효과적으로 사용될 수 있을 것으로 생각된다.

차세대염기서열분석법을 이용한 HLA-A, -B 그리고 -DR 형별 분석법 개발 (Development of HLA-A, -B and -DR Typing Method Using Next-Generation Sequencing)

  • 서동희;이정민;박미옥;이현주;문서윤;오미진;김소영;이상헌;형기은;허혜진;조대연
    • 대한수혈학회지
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    • 제29권3호
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    • pp.310-319
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    • 2018
  • 배경: 최근 차세대염기서열분석법(Next Generation Sequencing: NGS)을 이용한 HLA 형별 분석에 대한 연구가 활발히 진행되고 있다. 이에 HLA 고해상도 분석법의 내재적 한계인 위상 모호성의 문제를 해결하고, 대량 검체 처리가 가능한 NGS 기반 고해상도 HLA 형별 검사법을, 자체 기술로 개발하고자 본 연구를 실시하였다. 방법: HLA NGS를 위한 핵산 추출 조건, 라이브러리 제작 및 PCR 체계 확립, 그리고 생물정보학을 이용한 HLA 형별 분석법을 개발하였다. 본 기관에서 개발한 NGS 기반 HLA 형별 검사의 정확성을 알아보기 위해 SSOP법으로 HLA 형별을 알고 있는 192개 검체와 SBT법으로 HLA 형별을 알고 있는 28개 검체에 대해 NGS 기반으로 검사한 HLA-A, -B 그리고 -DR 형별 결과를 비교해 보았다. 결과: 두 단계의 PCR을 통한 DNA 라이브러리 제작과 MiSeq (Illumina Inc., San Diego, USA) 기기를 이용한 NGS 시퀸싱 그리고 데이터 분석 시스템을 구축하였다. 기존에 HLA 형별을 알고 있는 220개 혈액 검체에 대해 NGS 기반 HLA 형별검사 결과가 모두 일치함을 확인하였다. 결론: NSG 기반 HLA 형별 검사법은 많은 검체를 효율적인 시간 내에 처리가 가능하여 조혈모세포기증 희망자 HLA 검사 등에 유용할 것으로 기대된다.

Analysis of Microbial Composition Associated with Freshwater and Seawater

  • Lee, So-Yeon;Eom, Yong-Bin
    • 대한의생명과학회지
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    • 제22권4호
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    • pp.150-159
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    • 2016
  • Knowledge of the distribution and biodiversity of environmental bacteria and the ecosystem that influences them is crucial for predicting an ecosystem. However, bacterial culture methods can only analyze approximately 0.1% of the existing microorganisms, those that are readily cultured under laboratory conditions. By contrast, next-generation sequencing (NGS) has generally been known to obtain more diverse profiling of bacterial composition. We compared the bacterial communities using both a culture-dependent (MALDI-TOF) and culture-independent (NGS) methods. Environmental specimens were obtained from both freshwater and seawater. Water samples were also analyzed by both pyrosequencing and MiSeq sequencing, in order to select one NGS platform which could analyze comparatively more diverse microbiota. Bacterial distribution analyzed with MALDI-TOF showed no difference between the microbiota of freshwater and seawater, whereas the results analyzed with NGS distinguished between the two. The diversity indexes of MiSeq sequencing were higher than for Pyrosequencing. This indicated that MiSeq sequencing is capable of analyzing a comparatively wider diversity of bacteria. The genus of Flavobacterium and Planktophila were identified as being unique to freshwater, whereas EU801223 and OM43 were found in the seawater. Difference between the bacterial composition of the freshwater and seawater environments was identified by MiSeq sequencing analysis.

Development of an RNA sequencing panel to detect gene fusions in thyroid cancer

  • Kim, Dongmoung;Jung, Seung-Hyun;Chung, Yeun-Jun
    • Genomics & Informatics
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    • 제19권4호
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    • pp.41.1-41.10
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    • 2021
  • In addition to mutations and copy number alterations, gene fusions are commonly identified in cancers. In thyroid cancer, fusions of important cancer-related genes have been commonly reported; however, extant panels do not cover all clinically important gene fusions. In this study, we aimed to develop a custom RNA-based sequencing panel to identify the key fusions in thyroid cancer. Our ThyChase panel was designed to detect 87 types of gene fusion. As quality control of RNA sequencing, five housekeeping genes were included in this panel. When we applied this panel for the analysis of fusions containing reference RNA (HD796), three expected fusions (EML4-ALK, CCDC6-RET, and TPM3-NTRK1) were successfully identified. We confirmed the fusion breakpoint sequences of the three fusions from HD796 by Sanger sequencing. Regarding the limit of detection, this panel could detect the target fusions from a tumor sample containing a 1% fusion-positive tumor cellular fraction. Taken together, our ThyChase panel would be useful to identify gene fusions in the clinical field.

Screening of Genetic Variations in Korean Native Duck using Next-Generation Resequencing Data

  • Eunjin Cho;Minjun Kim;Hyo Jun Choo;Jun Heon Lee
    • 한국가금학회지
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    • 제50권3호
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    • pp.187-191
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    • 2023
  • Korean native ducks (KNDs) continue to have a high preference from consumers due to their excellent meat quality and taste characteristics. However, due to low productivity and fixed plumage color phenotype, it could not secure a large share in the domestic market compared to imported species. In order to improve the market share of KNDs, the genetic characteristics of the breed should be identified and used for improvement and selection. Therefore, this study was conducted to identify the genetic information of colored and white KNDs using next-generation resequencing data and screening for differences between the two groups. As a result of the analysis, the genetic variants that showed significant differences between the colored and white KND groups were mainly identified as mutations related to tyrosine activity. The variants were located in the genes that affect melanin synthesis and regulation, such as EGFR, PDGFRA, and DDR2, and these were reported as the candidate genes related to plumage pigmentation in poultry. Therefore, the results of this study are expected to be useful as a basis for understanding and utilizing the genetic characteristics of KNDs for genetic improvement and selection of white broiler KNDs.

Estimation of the Genetic Substitution Rate of Hanwoo and Holstein Cattle Using Whole Genome Sequencing Data

  • Lee, Young-Sup;Shin, Donghyun
    • Genomics & Informatics
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    • 제16권1호
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    • pp.14-20
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    • 2018
  • Despite the importance of mutation rate, some difficulties exist in estimating it. Next-generation sequencing (NGS) data yields large numbers of single-nucleotide polymorphisms, which can make it feasible to estimate substitution rates. The genetic substitution rates of Hanwoo and Holstein cattle were estimated using NGS data. Our main findings was to calculate the gene's substitution rates. Through estimation of genetic substitution rates, we found: diving region of altered substitution density exists. This region may indicate a boundary between protected and unprotected genes. The protected region is mainly associated with the gene ontology terms of regulatory genes. The genes that distinguish Hanwoo from Holstein in terms of substitution rate predominantly have gene ontology terms related to blood and circulatory system. This might imply that Hanwoo and Holstein evolved with dissimilar mutation rates and processes after domestication. The difference in meat quality between Hanwoo and Holstein could originate from differential evolution of the genes related to these blood and circulatory system ontology terms.

Genetics of Alzheimer's Disease

  • Kim, Jong Hun
    • 대한치매학회지
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    • 제17권4호
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    • pp.131-136
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    • 2018
  • Alzheimer's disease (AD) related genes have been elucidated by advanced genetic techniques. Familial autosomal dominant AD genes founded by linkage analyses are APP, PSEN1, PSEN2, ABCA7, and SORL1. Genome-wide association studies have found risk genes such as ABCA7, BIN1, CASS4, CD33, CD2AP, CELF1, CLU, CR1, DSG2, EPHA1, FERMT2, HLA-DRB5-HLA-DRB1, INPP5D, MEF2C, MS4A6A/MS4A4E, NME8, PICALM, PTK2B, SLC24A4, SORL1, and ZCWPW1. ABCA7, SORL1, TREM2, and APOE are proved to have high odds ratio (>2) in risk of AD using next generation sequencing studies. Thanks to the promising genetic techniques such as CRISPR-CAS9 and single-cell RNA sequencing opened a new era in genetics. CRISPR-CAS9 can directly link genetic knowledge to future treatment. Single-cell RNA sequencing are providing useful information on cell biology and pathogenesis of diverse diseases.

Maturity-onset Diabetes of the Young: Update on Diagnosis and Treatment

  • Jang, Kyung Mi
    • Journal of Interdisciplinary Genomics
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    • 제3권1호
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    • pp.1-6
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    • 2021
  • Maturity-onset diabetes of the young (MODY) is characterized by a heterogeneous group of monogenic diabetes. MODY has autosomal dominant inheritance, a primary defect in pancreatic β-cell, and an early onset. Discriminating MODY from type 1 or type 2 diabetes is often challenging at first. To date, 14 different disease causing mutations have been identified in MODY patients worldwide. Targeted DNA sequencing is the gold standard to diagnose MODY and their asymptomatic relatives. Next-generation sequencing may help successfully to diagnose MODY patients and identify new MODY genes. In this review, the current perspectives on diagnosis and treatment of MODY and discrepancy in the disease-causing mutations between the Asian and Caucasian patients with MODY are summarized.

Exonic copy number variations in rare genetic disorders

  • Man Jin Kim
    • Journal of Genetic Medicine
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    • 제20권2호
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    • pp.46-51
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    • 2023
  • Exonic copy number variation (CNV), involving deletions and duplications at the gene's exon level, presents challenges in detection due to their variable impact on gene function. The study delves into the complexities of identifying large CNVs and investigates less familiar but recurrent exonic CNVs, notably enriched in East Asian populations. Examining specific cases like DRC1, STX16, LAMA2, and CFTR highlights the clinical implications and prevalence of exonic CNVs in diverse populations. The review addresses diagnostic challenges, particularly for single exon alterations, advocating for a strategic, multi-method approach. Diagnostic methods, including multiplex ligation-dependent probe amplification, droplet digital PCR, and CNV screening using next-generation sequencing data, are discussed, with whole genome sequencing emerging as a powerful tool. The study underscores the crucial role of ethnic considerations in understanding specific CNV prevalence and ongoing efforts to unravel subtle variations. The ultimate goal is to advance rare disease diagnosis and treatment through ethnically-specific therapeutic interventions.