• 제목/요약/키워드: high-throughput marker

검색결과 21건 처리시간 0.025초

High-throughput SNP Genotyping by Melting Curve Analysis for Resistance to Southern Root-knot Nematode and Frogeye Leaf Spot in Soybean

  • Ha, Bo-Keun;Boerma, H. Roger
    • Journal of Crop Science and Biotechnology
    • /
    • 제11권2호
    • /
    • pp.91-100
    • /
    • 2008
  • Melting curve analysis of fluorescently labeled DNA fragments is used extensively for genotyping single nucleotide polymorphism(SNP). Here, we evaluated a SNP genotyping method by melting curve analysis with the two probe chemistries in a 384-well plate format on a Roche LightCycler 480. The HybProbe chemistry is based on the fluorescence resonance energy transfer(FRET) and the SimpleProbe chemistry uses a terminal self-quenching fluorophore. We evaluated FRET HybProbes and SimpleProbes for two SNP sites closely linked to two quantitative trait loci(QTL) for southern root-knot nematode resistance. These probes were used to genotype the two parents and 94 $F_2$ plants from the cross of PI 96354$\times$Bossier. The SNP genotypes of all samples determined by the LightCycler software agreed with previously determined SSR genotypes and the SNP genotypes determined on a Luminex 100 flow cytometry instrument. Multiplexed HybProbes for the two SNPs showed a 98.4% success rate and 100% concordance between repeats two of the same 96 DNA samples. Also, we developed a HybProbe assay for the Rcs3 gene conditioning broad resistance to the frogeye leaf spot(FLS) disease. The LightCycler 480 provides rapid PCR on 384-well plate and allows simultaneous amplification and analysis in approximately 2 hours without any additional steps after amplification. This allowed for a reduction of the potential contamination of PCR products, simplicity, and enablement of a streamlined workflow. The melting curve analysis on the LightCycler 480 provided high-throughput and rapid SNP genotyping and appears highly effective for marker-assisted selection in soybean.

  • PDF

RI검출 바이오칩의 혈관계 질환 발생 위험인자 검지에 대한 타당성 연구 (Feasibility Study on RI Biochip Application to Detection of Risk Factors of Atherosclerosis)

  • 고경철;최미희;박상현;조경현;이기택
    • 방사선산업학회지
    • /
    • 제3권1호
    • /
    • pp.25-29
    • /
    • 2009
  • Microarrays can be used to screen thousands of binding events in a parallel and high throughput fashion and are of major importance in disease diagnosis and drug discovery. The use of radioisotope is conventionally regarded as one of the most sensitive detection methods. Atherosclerosis is a common disorder affecting arterial blood vessels. It happens when fat, cholesterol, and other substances made in the arterial blood vessels form a hard substances called plaque. Lipoprotein-associated phospholipase $A_2$ ($Lp-PLA_2$), a phospholipase $A_2$ enzyme, is used as a marker for cardiac disease. The detection of $Lp-PLA_2$ was accomplished by using radioactive [$^3H-acetyl$] PAF as a substrate and a feasibility study on RI biochip application to detection of $Lp-PLA_2$, a risk factors of atherosclerosis was performed. Inhibitive activity of a native plant extract was also determined by using the RI biochip. It was found to be applicable to a high-throughput screening of inhibitors for developing atherosclerosis therapeutic agents.

소 동일성 검사에 적용 가능한 14 Microsatellite marker와 60 Single Nucleotide Polymorphism marker 간의 판별 효율성 비교 (A Comparison of Discriminating Powers Between 14 Microsatellite markers and 60 SNP Markers Applicable to the Cattle Identification Test)

  • 임현태;서보영;정은지;유채경;윤두학;전진태
    • Journal of Animal Science and Technology
    • /
    • 제51권5호
    • /
    • pp.353-360
    • /
    • 2009
  • 14개의 microsatellite (MS) marker를 사용 할 경우 무작위 교배 집단(PI) 가정 하에 $3.43{\times}10^{-27}$의 판별율을 보여 60 개의 single nucleotide polymorphism (SNP) marker에 비해 약 1,000배의 높은 판별 효과를 나타내는 것으로 파악되었다. 그러나, 60개의 SNP marker의 경우 반형매 교배 집단($PI_{half-sibs}$)으로 가정할 경우 $4.69{\times}10^{-20}$과 전형매 교배 집단($PI_{sibs}$)으로 가정 할 경우 $8.02{\times}10^{-12}$으로 14개의 MS marker에 비해 약 10배와 10,000배의 높은 판별 효과를 나타내는 것으로 추정되었다. 이러한 결과는 무작위 교배집단에서는 사용된 marker의 전체 대립유전자수(MS : SNP = 146 : 120)에 의하여 판별효율이 결정되는 반면, 혈연관계가 높은 반형매와 전형매 집단에서는 비슷한 총 대립유전자수일 경우 marker의 수(MS : SNP = 14 : 60)가 많은 경우가 더 높은 판별율을 보이는 것으로 나타났다. 한육우의 경우 소수의 보증 종모우를 이용해 인공수정을 통해 형성 된 거대한 반형매 집단으로 가정하였을 경우 MS와 SNP marker의 판별율은 10배 정도의 차이로 큰 차이를 보이지 않을 것으로 예견되나, likelihood rato를 이용 하는 inclusion 방법에 의하여 부모를 동시에 찾을 확률은 MS marker가 1,000 배 정도 더 효율적인 것으로 나타났다. SNP marker의 장점인 변이의 안정성, 유전자형 분석의 자동화 및 대용량화 등을 한육우의 동일성 검사에 활용하기 위해서는 분석비용 절감 방안과 분석방법 및 장비의 국산화 등 실용 및 상용화적 측면에서의 연구개발이 필요하다고 사료된다.

Development of Fluidigm SNP Type Genotyping Assays for Marker-assisted Breeding of Chili Pepper (Capsicum annuum L.)

  • Kim, Haein;Yoon, Jae Bok;Lee, Jundae
    • 원예과학기술지
    • /
    • 제35권4호
    • /
    • pp.465-479
    • /
    • 2017
  • Chili pepper (Capsicum annuum L.) is an economically important horticultural crop in Korea; however, various diseases, including Phytophthora root rot, anthracnose, powdery mildew, Cucumber mosaic virus (CMV), Pepper mild mottle virus (PMMoV), and Pepper mottle virus (PepMoV), severely affect their productivity and quality. Therefore, pepper varieties with resistance to multiple diseases are highly desired. In this study, we developed 20 SNP type assays for three pepper populations using Fluidigm nanofluidic dynamic arrays. A total of 4,608 data points can be produced with a 192.24 dynamic array consisting of 192 samples and 24 SNP markers. The assays were converted from previously developed sequence-tagged-site (STS) markers and included markers for resistance to Phytophthora root rot (M3-2 and M3-3), anthracnose (CcR9, CA09g12180, CA09g19170, CA12g17210, and CA12g19240), powdery mildew (Ltr4.1-40344, Ltr4.2-56301, and Ltr4.2-585119), bacterial spot (Bs2), CMV (Cmr1-2), PMMoV (L4), and PepMoV (pvr1 and pvr2-123457), as well as for capsaicinoids content (qcap3.1-40134, qcap6.1-299931, qcap6.1-589160, qdhc2.1-1335057, and qdhc2.2-43829). In addition, 11 assays were validated through a comparison with the corresponding data of the STS markers. Furthermore, we successfully applied the assays to commercial $F_1$ cultivars and to our breeding lines. These 20 SNP type assays will be very useful for developing new superior pepper varieties with resistance to multiple diseases and a higher content of capsaicinoids for increased pungency.

Applied Computational Tools for Crop Genome Research

  • Love Christopher G;Batley Jacqueline;Edwards David
    • Journal of Plant Biotechnology
    • /
    • 제5권4호
    • /
    • pp.193-195
    • /
    • 2003
  • A major goal of agricultural biotechnology is the discovery of genes or genetic loci which are associated with characteristics beneficial to crop production. This knowledge of genetic loci may then be applied to improve crop breeding. Agriculturally important genes may also benefit crop production through transgenic technologies. Recent years have seen an application of high throughput technologies to agricultural biotechnology leading to the production of large amounts of genomic data. The challenge today is the effective structuring of this data to permit researchers to search, filter and importantly, make robust associations within a wide variety of datasets. At the Plant Biotechnology Centre, Primary Industries Research Victoria in Melbourne, Australia, we have developed a series of tools and computational pipelines to assist in the processing and structuring of genomic data to aid its application to agricultural biotechnology resear-ch. These tools include a sequence database, ASTRA, for the processing and annotation of expressed sequence tag data. Tools have also been developed for the discovery of simple sequence repeat (SSR) and single nucleotide polymorphism (SNP) molecular markers from large sequence datasets. Application of these tools to Brassica research has assisted in the production of genetic and comparative physical maps as well as candidate gene discovery for a range of agronomically important traits.

대량 모근 시료 DNA 분리 체계 확립과 11 microsatellite maker를 사용하는 한우 생산이력제로의 적용가능성 검증 (Establishment of the High-Throughput Hair Roots' DNA Isolation System and Verification of Its Appicability for Hanwoo Traceability Using the 11 Microsatellite Makes)

  • 임현태;이상호;유채경;선두원;조인철;윤두학;양대용;정일정;이정규;전진태
    • 농업생명과학연구
    • /
    • 제44권6호
    • /
    • pp.91-99
    • /
    • 2010
  • 한우 이력추적제에 적용되는 11개의 MS marker (TGLA227, BM2113, TGLA53, ETH10, SPS115, TGLA126, TGLA122, ETH3, ETH225, BM1824 and INRA23)와 성감별을 위한 2개의 sexing primer로 조합된 하나의 Multiplex PCR set를 이용하여 모근에서 추출한 genomic DNA를 이용해 3510두의 대량 시료를 분석한 결과 3.93%의 genotyping 실패율로 성공적인 분석결과를 얻었다. 무작위교배집단으로 가정 시 동일개체출현확률 (PI)은 $1.31{\times}10^{-23}$, 반형매교배집단으로 가정 시 동일개체출현확률 ($PI_{half-sibs}$)은 $2.52{\times}10^{-16}$ 그리고 전형매교배집단으로 가정 시 동일개체출현확률 ($PI_{sibs}$)은 $1.09{\times}10^{-6}$으로 나타나 현재 사용 중인 11종의 MS marker는 범용적으로 사용하여도 무방할 것으로 재확인 되었다. 또한 생산 및 사육단계의 생우의 경우 모근을 이용하여 DNA를 추출하는 것은 시료 채취 시 소에게 주어지는 스트레스를 최소화 시킬 수 있을 뿐만 아니라 대립유전자형 분석에 있어서 시간적, 경제적인 효율성을 높일 수 있었다. 또한 모근 채취 부위 중 등, 배, 꼬리상부와 꼬리하부를 이용하여 검정한 결과 꼬리하부의 모근을 이용하여 5~13가닥을 사용했을 때 최적의 분석결과를 보였다. 최종적으로 한우의 사육단계 대량 유전자형 분석에 적용 가능한 96 well 단위를 기본으로 하는 모근 DNA분리 체계를 확립하였다.

Novel target genes of hepatocellular carcinoma identified by chip-based functional genomic approaches

  • Kim Dong-Min;Min Sang-Hyun;Lee Dong-Chul;Park Mee-Hee;Lim Soo-Jin;Kim Mi-Na;Han Sang-Mi;Jang Ye-Jin;Yang Suk-Jin;Jung Hai-Yong;Byun Sang-Soon;Lee Jeong-Ju;Oh Jung-Hwa
    • 한국생물정보학회:학술대회논문집
    • /
    • 한국생물정보시스템생물학회 2006년도 Principles and Practice of Microarray for Biomedical Researchers
    • /
    • pp.83-89
    • /
    • 2006
  • Cellular functions are carried out by a concerted action of biochemical pathways whose components have genetic interactions. Abnormalities in the activity of the genes that constitute or modulate these pathways frequently have oncogenic implications. Therefore, identifying the upstream regulatory genes for major biochemical pathways and defining their roles in carcinogenesis can have important consequences in establishing an effective target-oriented antitumor strategy We have analyzed the gene expression profiles of human liver cancer samples using cDNA microarray chips enriched in liver and/or stomach-expressed cDNA elements, and identified groups of genes that can tell tumors from non-tumors or normal liver, or classify tumors according to clinical parameters such as tumor grade, age, and inflammation grade. We also set up a high-throughput cell-based assay system (cell chip) that can monitor the activity of major biochemical pathways through a reporter assay. Then, we applied the cell chip platform for the analysis of the HCC-associated genes discovered from transcriptome profiling, and found a number of cancer marker genes having a potential of modulating the activity of cancer-related biochemical pathways such as E2F, TCF, p53, Stat, Smad, AP-1, c-Myc, HIF and NF-kB. Some of these marker genes were previously blown to modulate these pathways, while most of the others not. Upon a fast-track phenotype analysis, a subset of the genes showed increased colony forming abilities in soft agar and altered cell morphology or adherence characteristics in the presence of purified matrix proteins. We are currently analyzing these selected marker genes in more detail for their effects on various biological Processes and for Possible clinical roles in liver cancer development.

  • PDF

Sampling and Selection Factors that Enhance the Diversity of Microbial Collections: Application to Biopesticide Development

  • Park, Jun-Kyung;Lee, Seung-Hwan;Lee, Jang-Hoon;Han, Songhee;Kang, Hunseung;Kim, Jin-Cheol;Kim, Young Cheol;McSpadden Gardener, Brian
    • The Plant Pathology Journal
    • /
    • 제29권2호
    • /
    • pp.144-153
    • /
    • 2013
  • Diverse bacteria are known to colonize plants. However, only a small fraction of that diversity has been evaluated for their biopesticide potential. To date, the criteria for sampling and selection in such bioprospecting endeavors have not been systematically evaluated in terms of the relative amount of diversity they provide for analysis. The present study aimed to enhance the success of bioprospecting efforts by increasing the diversity while removing the genotypic redundancy often present in large collections of bacteria. We developed a multivariate sampling and marker-based selection strategy that significantly increase the diversity of bacteria recovered from plants. In doing so, we quantified the effects of varying sampling intensity, media composition, incubation conditions, plant species, and soil source on the diversity of recovered isolates. Subsequent sequencing and high-throughput phenotypic analyses of a small fraction of the collected isolates revealed that this approach led to the recovery of over a dozen rare and, to date, poorly characterized genera of plant-associated bacteria with significant biopesticide activities. Overall, the sampling and selection approach described led to an approximately 5-fold improvement in efficiency and the recovery of several novel strains of bacteria with significant biopesticide potential.

Construction of Various Copy Number Plasmid Vectors and Their Utility for Genome Sequencing

  • Yang, Tae-Jin;Yu, Yeisoo;Frisch, David A.;Lee, Seunghee;Kim, Hye-Ran;Kwon, Soo-Jin;Park, Beom-Suk;Wing, Rod A.
    • Genomics & Informatics
    • /
    • 제2권4호
    • /
    • pp.174-179
    • /
    • 2004
  • We developed various plasmid cloning vectors that are useful in the construction of genomic and shotgun libraries. Two medium copy vectors, pCUGlblu21 (pCb21) and pAGlblu21 (pAb21), which are resistant to kanamycin ($Km^R$) and chloramphenicol ($Cam^R$), respectively, are useful for cloning DNA inserts ranging from 5kb to 15kb. Two high copy vectors, pCUGlblu31 (pCb31) and pAGlblu31 (pAb31), containing $Km^R$ and $Cam^R$, respectively, are useful for DNA inserts less than 5kb. These vectors are well adapted for large-scale genome sequencing projects by providing choice of copy number and selectable marker. The small vector size is another advantage of these vectors. All vectors contain lacZa including multicloning sites that originated from pBluscriptllsk- for easy cloning and sequencing. Two medium copy vectors contain unique and rare cutting Swal (ATTTAAAT) restriction enzyme sites for easy determination of insert size. We developed two combined vectors, pC21A31 and pC31A21, which are combinations of (pCb21 + pAb31) and (pCb31 + pAb21), respectively. These two vectors provide four choices of vectors such as $Km^R$ and medium, $Cam^R$ and high, $Cam^R$ and medium, and $Km^R$ and high copy vectors by restriction enzyme cutting, dephosphorylation, and gel purification. These vectors were successfully applied to high throughput shotgun sequencing of rice, tomato, and brassica BAC clones. With an example of extremely biased hydro sheared 3 kb shotgun library of a tomato BAC clone, which is originated from cytogenetically defined peri-centromeric region, we suggest the utility of an additional 10 kb library for sequence assembly of the difficult-to-assemble BAC clone.

생식생물학에세 프로테오믹스의 응용 (Potential Importance of Proteomics in Research of Reproductive Biology)

  • 김호승;윤용달
    • 한국발생생물학회지:발생과생식
    • /
    • 제8권1호
    • /
    • pp.1-9
    • /
    • 2004
  • 프로테오믹스(proteomics, 단백질체학이라고도 함)의 잠재적 중요성은 간질환, 심장질환, 몇몇 종류의 암 등의 의학, 생식 독성, 발생 독성, 생체 독성 연구 분야에서도 명백하게 제시되었다. 그러나 단백질을 대상으로 연구하여 유전자 기능을 연구하는 프로테오믹스 연구를 각각의 분야에 접목시키려는 노력은 아직까지 빈약하다. 프로테오믹스는 기능을 갖는 단백질들의 발현을 종합적이고 정량적으로 측정하는 가장 직접적인 수단이고, 질병, 약물투여, 쇼크, 내분비계 장애물질 등 생물학적인 동요(perturbation)에 의하여 변하는 단백질들의 발현 양상 변화를 정확하게 관찰할 수 있게 한다. 그리고 생체내 유전자 발현의 궁극적인 양상을 규명할 수 있으며, 또한 유전자, 단백질 및 질병간의 연결고리를 제공한다. 기존의 biomarker는 다른 질병 표지자와 연관성이 높아 직접적인 biomaker와 정확한 연관을 판정하기 어렵다. 따라서 대량 발굴 탐색(high-throughput screening)이 가능한 2차원 전기 영동 분석과 MALDI-TOF또는 protein chip array와 SELDI-TOF에 의한 단백질 분자 구조 분석 기술 및 이들을 지원하는 생물정보학(bioinformatics)의 발전을 이용하여, 생식학 연구에 이용할 수 있는 표적 단백질 발굴 및 정성 정량적 연구에 적절한 이용이 가능할 것이다. 이러한 연구는 생식과정 중 배아 발생 및 조직 기관 발생 중 유전자 발현의 변화, 내분비계 장애물질 등 호르몬 및 독성 물질의 작용 기전, ecotoxicogenomics지표 marker의 변동 분석, 중간대사물질체학(metabolomics)에의 이용 등등의 연구에 필수적인 방법으로 발전할 것이다.

  • PDF