• 제목/요약/키워드: insertion mutant

검색결과 79건 처리시간 0.021초

The Role of Rice Vacuolar Invertase2 in Seed Size Control

  • Lee, Dae-Woo;Lee, Sang-Kyu;Rahman, Md Mizanor;Kim, Yu-Jin;Zhang, Dabing;Jeon, Jong-Seong
    • Molecules and Cells
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    • 제42권10호
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    • pp.711-720
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    • 2019
  • Sink strength optimizes sucrose import, which is fundamental to support developing seed grains and increase crop yields, including those of rice (Oryza sativa). In this regard, little is known about the function of vacuolar invertase (VIN) in controlling sink strength and thereby seed size. Here, in rice we analyzed mutants of two VINs, OsVIN1 and OsVIN2, to examine their role during seed development. In a phenotypic analysis of the T-DNA insertion mutants, only the OsVIN2 mutant osvin2-1 exhibited reduced seed size and grain weight. Scanning electron microscopy analysis revealed that the small seed grains of osvin2-1 can be attributed to a reduction in spikelet size. A significant decrease in VIN activity and hexose level in the osvin2-1 spikelets interfered with spikelet growth. In addition, significant reduction in starch and increase in sucrose, which are characteristic features of reduced turnover and flux of sucrose due to impaired sink strength, were evident in the pre-storage stage of osvin2-1 developing grains. In situ hybridization analysis found that expression of OsVIN2 was predominant in the endocarp of developing grains. A genetically complemented line with a native genomic clone of OsVIN2 rescued reduced VIN activity and seed size. Two additional mutants, osvin2-2 and osvin2-3 generated by the CRISPR/Cas9 method, exhibited phenotypes similar to those of osvin2-1 in spikelet and seed size, VIN activity, and sugar metabolites. These results clearly demonstrate an important role of OsVIN2 as sink strength modulator that is critical for the maintenance of sucrose flux into developing seed grains.

A Gene Functional Study of Rice Using Ac/Ds Insertional Mutant Population

  • Kim, So-Young;Kim, Chang-Kug;Kang, Min;Ji, Seung-Uk;Yoon, Ung-Han;Kim, Yong-Hwan;Lee, Gang-Seob
    • Plant Breeding and Biotechnology
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    • 제6권4호
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    • pp.313-320
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    • 2018
  • Rice is the staple food of more than 50% of the world population. Cultivated rice has the AA genome (diploid, 2n = 24) and small genome size of only 430 megabase (haploid genome). As the sequencing of rice genome was completed by the International Rice Genome Sequencing Project (IRGSP), many researchers in the world have been working to explore the gene function on rice genome. Insertional mutagenesis has been a powerful strategy for assessing gene function. In maize, well characterized transposable elements have traditionally been used to clone genes for which only phenotypic information is available. In rice endogenous mobile elements such as MITE and Tos have been used to generate gene-tagged populations. To date T-DNA and maize transposable element systems have been utilized as main insertional mutagens in rice. The Ac/Ds system offers the advantage of generating new mutants by secondary transposition from a single tagged gene. To enhance the efficiency of gene detection, advanced gene-tagging systems (i.e. activation, gene or enhancer trap) have been employed for functional genomic studies in rice. Internationally, there have been many projects to develop large scales of insertional mutagenized populations and databases of insertion sites has been established. Ultimate goals of these projects are to supply genetic materials and informations essential for functional analysis of rice genes and for breeding using agronomically important genes. In this report, we summarize the current status of Ac/Ds-mediated gene tagging systems that has been conducted by collaborative works in Korea.

Phenotypic characterization of pre-harvest sprouting resistance mutants generated by the CRISPR/Cas9-geminiviral replicon system in rice

  • Jong Hee Kim;Jihyeon Yu;Jin Young Kim;Yong Jin Park;Sangsu Bae;Kwon Kyoo Kang;Yu Jin Jung
    • BMB Reports
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    • 제57권2호
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    • pp.79-85
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    • 2024
  • Pre-harvest sprouting is a critical phenomenon involving germination of seeds in the mother plant before harvest under relative humid conditions and reduced dormancy. In this paper, we generated HDR mutant lines with one region SNP (C/T) and an insertion of 6 bp (GGT/GGTGGCGGC) in OsERF1 genes for pre-harvest sprouting (PHS) resistance using CRISPR/Cas9 and a geminiviral replicon system. The incidence of HDR was 2.6% in transformed calli. T1 seeds were harvested from 12 HDR-induced calli and named ERF1-hdr line. Molecular stability, key agronomic properties, physiological properties, and biochemical properties of target genes in the ERF1-hdr line were investigated for three years. The ERF1-hdr line showed significantly enhanced seed dormancy and pre-harvest sprouting resistance. qRT-PCR analysis suggested that enhanced ABA signaling resulted in a stronger phenotype of PHS resistance. These results indicate that efficient HDR can be achieved through SNP/InDel replacement using a single and modular configuration applicable to different rice targets and other crops. This work demonstrates the potential to replace all genes with elite alleles within one generation and greatly expands our ability to improve agriculturally important traits.

비생물학적 스트레스 관련 벼 Ac/Ds 삽입 변이체의 선발 및 유전자 발현 분석 (Selection of (Ac/Ds) insertion mutant lines by abiotic stress and analysis of gene expression pattern of rice (Oryza sativar L.))

  • 정유진;박슬아;안병옥;윤도원;지현소;이강섭;박용환;서석철;백형진;이명철
    • Journal of Plant Biotechnology
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    • 제35권4호
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    • pp.307-316
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    • 2008
  • 식물에서 전이인자를 이용한 삽입 변이체의 유전자 기능분석 연구가 최근 가장 활발하게 이루어지고 있다. 본 연구에서는 동진벼의 Ac/Ds 삽입 변이체인 F2 세대 30,000 계통을 이용하여 고염과 저온에 민감한 계통과 내성이 있는 계통을 대량 스크리닝을 통해 선발하였다. 첫 번째 스크리닝에서 선발한 212 계통을 Southern blot 분석을 통해 Ds의 삽입여부 및 copy 수를 꽉인하고 표현형과 비교하여 고염과 저온에서 총 19 계통을 선발하였고, 이 중 copy 수가 하나인 계통은 13 계통이었다. 선발한 계통을 FSTs 분석을 통해 Ds의 삽입위치 및 knock-out유전자를 확인하고 염기서열 정보를 이용하여 벼 전체 염기서열 정보와 상동성 비교분석 결과 세포의 신호전달 과정과 조절 관여하는 유전자 그룹인 transpoter, protease family protein and apical meristem family protein, 삼투압조절에 관여하는 유전자 그룹인 heat shock potein, O-methyltransferase, glyceraldehyde-3-phosphate dehydrogenase and drought stress Induce protein 그리고 식물의 소포유통(vesicle trafficking)에 관여하는 유전자 SYP 5 family protein로 구분할 수 있었다. 선발된 19개 유전자의 발현 분석을 위해 9종류 비생물학적 스트레스 하에서 RT-PCR을 수행한 결과 이들 knock-out 유전자는 비생물학적 스트레스에 각각 다른 발현 패턴을 보였다. 이 연구의 결과는 삽입 변이체를 통한 유전자의 기능분석에 있어서 비생물학적인 스트레스의 응답 반응계에 관여하는 유전자를 연구하는데 유용할 것이라고 생각된다.

Zinc finger RING-H2 protein관련 Ac/Ds전이인자 삽입 변이체 Oszinc626 유전자의 특성 분석 (Characterization of Oszinc626, knock-out in zinc finger RING-H2 protein gene, in Ac/Ds mutant lines of rice(Oryza sativar L.))

  • 박슬아;정유진;안병옥;윤도원;지현소;박용환;은무영;서석철;이순열;이명철
    • Journal of Plant Biotechnology
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    • 제35권3호
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    • pp.177-183
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    • 2008
  • 본 연구는 동진벼 유래의 Ac/Ds 삽입변이집단의 GUS 분석을 통하여 뿌리 및 미숙종자에서 강하게 GUS가 발현한 개체를 선발하여 FST(flanking sequence tag) 분석 한 결과 Ds 전이 인자가 3번 염색체 zinc finger RING-H2 관련 Oszinc626 유전자의 첫 번째 exon 부위에 single copy로 삽입되어 있었으며, 선발변이체는 뿌리 및 종자 발달이 정상인 동진벼에 비해 매우 낮은 것으로 나타났다. Oszinc626 유전자는 RING-H2 type(C3-H2-C3)으로 $Cys-X_2-Cys-X_{28}-Cys-X-His-X_2-His-X_2-Cys-X_{14}-Cys-X_2-Cys$ 배열이 C-terminus 가장 말단에 위치하며, 49 kDa의 분자량을 가지고 있다. 또한 Southern blot 분석에서 Oszinc626 유전자는 벼 게놈상에 single copy로 존재하였다. RT-PCR을 통한 돌연변이 유전자의 발현분석 결과 250 mM의 염과, $4^{\circ}C$ 저온등과 같은abiotic stress에 의해 발현이 증가함을 보였고, 호르몬처리에 있어서 ABA와 IAA의 식물호르몬을 처리했을 경우 24시간까지 계속해서 발현양이 증가하는 것을 보이는 반면, 2,4-D 처리의 경우 30분 후에 발현이 일시적으로 증가되었으나 이후 발현이 급속히 감소한 것을 보였다. 벼의 조직 별 발현 검정에서 미성숙한 종자, 뿌리 분열조직 및 신초 등 주로 생장점 부위에서 강하게 발현되는 것을 보임에 따라 Oszinc626 유전자의 경우 식물의 생장에 관여하는 주동 유전자의 하나로 판단된다.

Increase of Spacer Sequence Yields Higher Dimer $(Fab-Spacer-Toxin)_{2}$ Formation

  • Yoo Mee-Hyeon;Won Jae-Seon;Lee Yong-Chan;Choe Mu-Hyeon
    • Journal of Microbiology and Biotechnology
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    • 제16권7호
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    • pp.1097-1103
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    • 2006
  • The divalent antibody-toxins are expected to have increased binding avidities to target cells because of the two cell-binding domains. However, previous studies showed that the refolding yield of divalent antibody-toxin is very low, and it is assumed that homodimer formation of antibody-toxin is strongly interfered by the repulsion between the two large toxin domains that come close to each other during dimer formation. In this study, B3 antibody was used as a model antibody, and its Fab domain was used to construct three different kinds of Fab divalent molecules, $[B3(Fab)-toxin]_{2}$. The monomer Fab-toxin molecules were made by fusing the Fab domain of monoclonal antibody B3 to PE38, a truncated mutant form of Pseudomonas exotoxin (PE), and a connecting sequence that contained spacer amino acid sequence (G4S)n (n=l, 2, 3) was inserted between Fab and PE38. The prepared divalent molecules were $[Fab-S\;1,\;2,\;3-PE38]_{2}\;(=[Fab-SKPCIST-KAS(G_{4}S)nGGPE-PE38]_{2}\;(n=1,\;2,\;3))$, and they are derivatives of previously studied $[Fab-H2cys-PE38]_{2}\;(=[Fab-SKPCIST-KASGGPE-PE38]_{2})$. In $[Fab-Sl,\;2,\;3-PE38]_{2}$, two Fab-S1, 2, 3-PE38 monomers were covalently linked by the disulfide bond bridge made from cysteine in the -SKPCIST- sequence. The insertion of spacer amino acids after the disulfide bridge resulted in a 12-18 fold higher yield of dimer formation than previously constructed $[Fab-Hlcys-PZ38]_{2}[7]$, 3-4-fold higher than $[Fab-ext-PZ38]_{2}[25]$. These two molecules have less amino acid spacer sequence between the disulfide bridge and PE38 domain. The design of $[Fab-PE38]_{2}$ in this study gave molecules with a higher refolding yield. The results of cytotoxicity assay showed a higher cytotoxic effect of these divalent molecules than that of the monovalent scFv-PE38 molecule.

미토콘드리아 ribosomal RNA 유전자 염기서열분석에 의한 한국산 연어아과 어류의 유전적 계통도 (Phylogeny of the subfamily Salmoninae distributed in Korea based upon nucleotide sequences of mitochondrial ribosomal RNA genes)

  • 이희정;박중연;이정호;민광식;전임기;유미애;이원호
    • 한국수산과학회지
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    • 제33권2호
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    • pp.103-109
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    • 2000
  • 열목어를 비롯한 산천어, 시마연어, 연어, 무지개송어 등 우리나라 연어아과 어류의 집단구조분석을 위한 기초자료를 얻기 위하여, 미토콘드리아 ribosomal RMA 유전자 영역의 염기서열변이를 비교${\cdot}$분석하였다. 미토콘드리아 DNA의 125 rRNA(945 bases, 열목어 의 경우 946 bases), Valine transfer RNA (72 bases), 및 16S rRNA(1513 bases) 등 3개의 유전자 영역에 걸쳐, 최대 2531 bases의 염기서열을 PCR/direct sequencing하여 얻었는데, 모든 염기변이중 전이가 월등히 우세하게 나타났으며, 종내${\cdot}$종간변이율은 모두 $0.5{\%}$이하로 낮게 나타나, 다른 영역에 비해 rRNA 유전자 영역에서의 염기서열이 매우 보존적임을 보여주었다. 또한, 미토콘드리아 rRNA 유전자 염기서열은 연어류의 속 (genus)단계 이상에서 집단분류표지인자로 유용하게 쓰일 수 있으리라 사료되어진다. 미토콘드리아 rRNA 염기서열자료를 기초로 구성된 phylogenetic tree를 통해 이들 종간의 진화적인 유연관계를 살펴본 결과, 시마연어가 무지개송어보다는 연어와 더 근연인 것으로 나타났으며, 열목어는 가장 유연이 먼 종임을 확인할 수 있었다.

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Comparative Genomic and Genetic Functional Analysis of Industrial L-Leucine- and L-Valine-Producing Corynebacterium glutamicum Strains

  • Ma, Yuechao;Chen, Qixin;Cui, Yi;Du, Lihong;Shi, Tuo;Xu, Qingyang;Ma, Qian;Xie, Xixian;Chen, Ning
    • Journal of Microbiology and Biotechnology
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    • 제28권11호
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    • pp.1916-1927
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    • 2018
  • Corynebacterium glutamicum is an excellent platform for the production of amino acids, and is widely used in the fermentation industry. Most industrial strains are traditionally obtained by repeated processes of random mutation and selection, but the genotype of these strains is often unclear owing to the absence of genomic information. As such, it is difficult to improve the growth and amino acid production of these strains via metabolic engineering. In this study, we generated a complete genome map of an industrial L-valine-producing strain, C. glutamicum XV. In order to establish the relationship between genotypes and physiological characteristics, a comparative genomic analysis was performed to explore the core genome, structural variations, and gene mutations referring to an industrial L-leucine-producing strain, C. glutamicum CP, and the widely used C. glutamicum ATCC 13032. The results indicate that a 36,349 bp repeat sequence in the CP genome contained an additional copy each of lrp and brnFE genes, which benefited the export of L-leucine. However, in XV, the kgd and panB genes were disrupted by nucleotide insertion, which increase the availability of precursors to synthesize L-valine. Moreover, the specific amino acid substitutions in key enzymes increased their activities. Additionally, a novel strategy is proposed to remodel central carbon metabolism and reduce pyruvate consumption without having a negative impact on cell growth by introducing the CP-derived mutant $H^+$/citrate symporter. These results further our understanding regarding the metabolic networks in these strains and help to elucidate the influence of different genotypes on these processes.

Citrobacter sp.에서 crystal violet와 malachite green 색소분해에 관여하는 유전자들의 동정 (Identification of Genes Involved in Decolorization of Crystal Violet and Malachite Green in Citrobacter sp.)

  • Lee, Young-Mi;Jang, Moon-Sun;Kim, Seok-Jo;Park, Yong-Lark;Cho, Young-Su;Lee, Young-Choon
    • 생명과학회지
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    • 제14권1호
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    • pp.21-25
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    • 2004
  • Crystal violet와 malachite green색소 분해에 관여하는 유전자들을 규명하기 위하여 색소분해능을 가진 Citrobacter sp.의 염색체 DNA속에의 transposon 도입에 의해 생성된 무작위 변이주들이 분리되었다. 이들 변이 주들로부터 두가지 색소분해능을 소실한 14개의 변이주들이 선별되었고, 이들로부터 염색체 DNA를 분리하여 EcoRl으로 절단한 후 Tn5 단편을 probe로하여 Southern hybridization을 행한 결과, 염색체 DNA상의 각각 다른 부위에 Transposon이 Single 삽입된 5개의 변이주 (Cmg2, Cmg6, Cmg8, Cmgll, Cmg12)가 최종적으로 분리되었다. 이들 변이주들의 Transposon 삽입부위 주위의 염기서열과 이로부터 유추되는 아미노산서열을 database상에 등록되어 있는 유전자의 염기서열과 단백질의 아미노산 서열에 대한 상동성을 비교한 결과, Cmg2는 대장균 maltose trnasporter (Mal C)이고, Cmg6은 LysR-type 전사조절 단백질이며, Cmg12는 산화환원효소를 코드하는 유전자인 것으로 알려졌고, 나머지 Cmg8과 Cmg11은 아직까지 기능이 알려져 있지 않은 단백질을 코드하는 유전자인 것으로임이 판명되었다.