• 제목/요약/키워드: herbicide resistant gene

검색결과 70건 처리시간 0.029초

Production of bialaphos-resistant Nierembergia repens by electroporation

  • Shizukawa, Yoshiaki;Mii, Masahiro
    • Plant Biotechnology Reports
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    • 제2권3호
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    • pp.219-226
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    • 2008
  • Transgenic plants with the herbicide-resistance gene (bar gene) were obtained via organogenesis from isolated mesophyll protoplasts of Nierembergia repens after applying electroporation. Transient ${\beta}-glucuronidase$ (GUS) activity of electroporated protoplasts assayed 2 days after applying an electric pulse showed that optimum condition (transient GUS activity 319 pmol 4 MU/mg per min and plating efficiency 2.43%) for electroporation was 0.5 kV/cm in field strength and $100{\mu}F$ in capacitance. The protoplasts electroporated with the bar gene at this condition initiated formation of microcolonies on medium after 2 weeks. After 4 weeks of culture, equal volume of fresh 1/2-strength Murashige and Skoog (MS) medium containing 0.2 mg/l bialaphos was added for selection of transformed colonies. After 6 weeks of culture, growing colonies were transferred onto regeneration medium containing 1.0 mg/l bialaphos, on which they formed adventitious shoots 1-2 months after electroporation. The adventitious shoots rooted easily after transfer onto MS medium with bialaphos lacking plant-growth regulators. Transformation of these regenerants with the bar gene was confirmed by Southern analysis. Some of the transformants showed strong resistance to the application of bialaphos solution at 10.0 mg/l.

Overproduction of 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) confers resistance to the herbicide glyphosate in transgenic rice

  • Lee, Soo-In;Kim, Hyun-Uk;Shin, Dong-Jin;Kim, Jin-A;Hong, Joon-Ki;Kim, Young-Mi;Lee, Yeon-Hee;Koo, Bon-Sung;Kwon, Sun-Jong;Suh, Seok-Chul
    • Journal of Plant Biotechnology
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    • 제38권4호
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    • pp.272-277
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    • 2011
  • Plants expressing Agrobacterium sp. strain CP4 5-enolpyruvylshikimate-3-phosphate synthase (CP4 EPSPS) are known to be resistant to glyphosate, a potent herbicide that inhibits the activity of the endogenous plant EPSPS. In order to develop herbicide-resistant rice, we prepared transgenic rice plants with CP4 EPSPS gene under the control of CaMV 35S promoter for over-expression. A recombinant plasmid was transformed into rice via Agrobacterium-mediated transformation. A large number of transgenic rice plants were obtained with glyphosate and most of the transformants showed fertile. The integration and expression of CP4 EPSPS gene from regenerated plants was analyzed by Southern and northern blot analysis. The transgenic rice plants had CP4 EPSPS enzyme activity levels more than 15-fold higher than the wild-type plants. EPSPS enzyme activity of transgenic rice plants was also identified by strip-test method. Field trial of transgenic rice plants further confirmed that they can be selectively survived at 100% by spay of glyphosate (Roundup$^{(R)}$) at a regular dose used for conventional rice weed control.

형질전환 벼 이용 품종 조기개발 체계 확립 (Establishment of a New Breeding Scheme for Rapid Release of Variety Using bar Gene Transformed Rice)

  • 원용재;이기환;조준현;고종민;박향미;한창덕;양세준;김순철;남민희
    • Journal of Plant Biotechnology
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    • 제31권1호
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    • pp.7-11
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    • 2004
  • 형질전환 식물체를 직접 이용하기에는 후대에 유전적인 고정 및 포장검정이라는 문제가 대두되는데, 이를 해결하기 위하여 본 연구는 바스타저항성 유전자가 도입된 벼와 직파적 응성 계통을 교잡한 후 약배양에 의한 형질전환체 고정 등 기존 육종체계와 연계하여 제초제 저항성 직파적응 계통을 조기에 육성할 수 있는 체계를 확립하고자 수행하였다. 제초제 저항성 직파적응 계통을 조기에 육성하고자 1999년 동계에 교배된 동진벼 Ds15(Ba $r^{R}$)/주남벼 등 5조합으로부터 2000년 $F_1$을 양성하고, 이들을 PCR분석으로 제초제 저항성 유전자 bar도입을 확인한 후 약배양을 실시하여 얻어진 1,508개의 재분화 식물체 중 제초제 저항성 유전자가 도입된 169개체 ( $A_2$)에서 채종하였다. 이들을 2001년 포장에 공시하여 42계통을 선발하고,2002년에 동진벼 Ds15 (Ba $r^{R}$)/주남벼 조합에서 수량 등 주요 농업형질이 우수한 7계통을 생산력 검정시험에 공시한 결과 제초제 저항성이면서 직파적응성 등 기타 농업형질이 우수한 YR23235Acp79를 선발하여 밀양 204호로 계통명을 부여하였다. 결과적으로 형질전환체를 이용하여 교배부터 계통선발까지 3년 만에 목적하는 계통을 조기에 육성할 수 있는 생력육종체계가 확립되었다.

Investigation of Possible Horizontal Gene Transfer from the Leaf Tissue of Transgenic Potato to Soil Bacteria

  • KIM YOUNG TAE;KIM SUNG EUN;PARK KI DUK;KANG TAE HOON;LEE YUN MI;LEE SANG HAN;MOON JAE SUN;KIM SUNG UK
    • Journal of Microbiology and Biotechnology
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    • 제15권5호
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    • pp.1130-1134
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    • 2005
  • To monitor the possibility of horizontal gene transfer between transgenic potato and bacteria in the environment, the gene flow from glufosinate-tolerant potato to bacteria in soils was investigated. The soil samples treated with the leaf tissue of either glufosinate-tolerant or glufosinate-sensitive potato were subjected to PCR and Southern hybridization to determine possible occurrence of glufosinate-resistant soil bacteria and to detect the bar (phosphinothricin acetyltransferase) gene, conferring tolerance to glufosinate. The bar gene was not detected from genomic DNAs extracted at different time intervals from the soil samples, which had been treated with the leaf tissue of either transgenic or non-transgenic potato for 2 to 8 weeks. In addition, the level of glufosinate-resistant bacteria isolated from the soil samples treated with the leaf tissue of transgenic potato was similar to that of the samples treated with non-transgenic potato after 4 months of incubation at $25^{\circ}C$. The bar gene was not detected in the genomic DNAs extracted from colonies growing on the plate containing glufosinate, indicating that the bacteria could acquire the resistant phenotype to glufosinate by another mechanism without the uptake of the bar gene from glufosinate-tolerant potato.

제초제(除草劑) 약해발생(藥害發生) 양상(樣相)과 경감대책(輕減對策) (Crop Injury (Growth Inhibition) Induced by Herbicides and Remedy to Reduce It)

  • 김길웅
    • 한국잡초학회지
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    • 제12권3호
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    • pp.261-270
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    • 1992
  • Many herbicides that are applied at the soil before weed emergence inhibit plant growth soon after weed germination occurs. Plant growth has been known as an irreversible increase in size as a result of the processes of cell divison and cell enlargement. Herbicides can influence primary growth in which most new plant tissues emerges from meristmatic region by affecting either or both of these processes. Herbicides which have sites of action during interphase($G_1$, S, $G_2$) of cell cycle and cause a subsequent reduction in the observed frequency of mitotic figures can be classified as an inhibitor of mitotic entry. Those herbicides that affect the mitotic sequence(mitosis) by influencing the development of the spindle apparatus or by influencing new cell plate formation should be classified as causing disruption of the mitotic sequence. Sulfonylureas, imidazolinones, chloroacetamides and some others inhibit plant growth by inhibiting the entry of cell into mitosis. The carbamate herbicides asulam, carbetamide, chlorpropham and propham etc. reported to disrupt the mitotic sequence, especially affecting on spindle function, and the dinitroaniline herbicides trifluralin, nitralin, pendimethalin, dinitramine and oryzalin etc. reported to disrupt the mitotic sequence, particularly causing disappearence of microtubles from treated cells due to inhibition of polymerization process. An inhibition of cell enlargement can be made by membrane demage, metabolic changes within cells, or changes in processes necessary for cell yielding. Several herbicides such as diallate, triallate, alachlor, metolachlor and EPTC etc. reported to inhibit cell enlargement, while 2, 4-D has been known to disrupt cell enlargement. One potential danger inherent in the use of soil acting herbicides is that build-up of residues could occur from year to year. In practice, the sort of build-up that would be disastrous is unikely to occur for substances applied at the correct soil concentration. Crop injury caused by soil applied herbicides can be minimized by (1) following the guidance of safe use of herbicides, particularly correct dose at correct time in right crop, (2) by use of safeners which protect crops against injury without protecting any weed ; interactions between herbicides and safeners(antagonists) at target sites do occur probably from the following mechanisms (1) competition for binding site, (2) circumvention of the target site, and (3) compensation of target site, and another mechanism of safener action can be explained by enhancement of glutathione and glutathione related enzyme activity as shown in the protection of rice from pretilachlor injury by safener fenclorim, (3) development of herbicide resistant crops ; development of herbicide-resistant weed biotypes can be explained by either gene pool theory or selection theory which are two most accepted explanations, and on this basis it is likely to develop herbicide-resistant crops of commercial use. Carry-over problems do occur following repeated use of the same herbicide in an extended period of monocropping, and by errors in initial application which lead to accidental and irregular overdosing, and by climatic influence on rates of loss. These problems are usually related to the marked sensitivity of the particular crops to the specific herbicide residues, e.g. wheat/pronamide, barley/napropamid, sugarbeet/ chlorsulfuron, quinclorac/tomato. Relatively-short-residual product, succeeding culture of insensitive crop to specific herbicide, and greater reliance on postemergence herbicide treatments should be alternatives for farmer practices to prevent these problems.

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수분ㆍ수정 시기를 이용한 Bialaphos 저항성 형질전환 담배의 개발 (Development of Bialaphos Resistant Transgenic Tabacco Plants by Pollination and Utilization of Fertilization Cycle)

  • 이효연;노일섭;김진호;유장렬;이종석;김학진
    • 식물조직배양학회지
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    • 제21권2호
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    • pp.99-103
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    • 1994
  • 비선택성 제초제인 bialaphos는 고등식물에 있어서 glutamine 합성을 억제하여 식물체를 고사 시키는 능력을 갖고 있다. 본 연구에서 acetylteansferase에 의해 encoding된 bialaphos 저항성 유전자(bar gene)는 세균(Pseudomonas sryngae pv tabaci)의 genomic DNA로부터 cloning된 것을 사용하였다. 수분시킨 담배의 화계에 일정한 시간별로 bar 유전자를 처리한 결과 수분 후 30-40시간 사이의 처리구 에서 형질전환 식물체가 가장 많이 얻어 졌다. 그러한 형질전환 식물체의 kanamycin과 bialaphos 저항성 형질은 자식후대(T$_1$, T$_2$)에 있어서도 우성형질로 유전되었으나 wild type의 담배는 상기의 약제를 처리 하였을때 전부 고사하였다. 그리고, T$_1$세대의 형질전환 식물체로부터 전 염색체 DNA를 추출하여 Southern 분석한 결과 bar 유전자가 식물의 염색체상에 안정하게 존재하는 것을 확인하였다. 이상의 결과로부터 담배의 수분, 수정 시기에 외부유전자인 bar를 화주에 처리함으로써 bialaphos 저항성 식물을 만들어낼 수 있었다.

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Phosphinothricin acetyltransferase 유전자를 이용한 현사시의 형질전환 (Transformation of Populus alba $\times$Populus glandulosa Using Phosphinothricin Acetyltransferase Gene)

  • 오경은;양덕춘;문흥규;박재인
    • 식물조직배양학회지
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    • 제26권3호
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    • pp.163-169
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    • 1999
  • 우리나라의 주요 개량 포플러의 하나인 현사시 3호를 대상으로 Arobacterium tumefaciens MP 90/PAT을 이용하여 비선택성 제초제인 Basta에 내성을 갖는 형질전환체를 획득하고자 본 실험을 수행하였다. 기내 배양된 엽절편을 재료로 균주에 10분간 감염, 2일간 공조 배양 및 3주간 선발배지에서 배양으로 kanamycin에 내성을 갖는 잠정적인 형질전환 캘러스를 유도하였다. 선발된 캘러스로부터 배양 4주 후 줄기를 유도하였으며, 증식된 줄기는 발근시켜 완전한 형질전환체를 얻었다. 형질전환체는 PCR기법 및 Southern blot 분석으로 PAT 유전자 전이를 확인하고. 유전자의 발현은 GUS 유전자의 발색 반응으로 확인하였다. 형질전환체는 폿트로 이식하여 4주간 생장시킨 후 제초제 Basta로 살포한 결과 대조구 식물체는 고사되었으나, 형질전환체는 정상적인 생육이 가능하였다

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한국 논에서 제초제 저항성잡초의 발생 현황, 메카니즘 및 방제 (Current status, mechanism and control of herbicide resistant weeds in rice fields of Korea)

  • 박태선;성기영;조현숙;서명철;강항원;박기웅
    • 농업과학연구
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    • 제41권2호
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    • pp.85-99
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    • 2014
  • Sulfonylurea (SU)-resistant weeds of eight annual weeds, Monochoria vaginalis, Scirpus juncoides and Cyperus difformis, etc., and four perennial weeds, Scirpus planiculmis, Sagittaria pigmaea, Eleocharis acicularis and Sagittaria trifolia as of 2013 since identification Monochoria korsakowii in the reclaimed rice field in 1998. And the resistant Echinochloa oryzoides to ACCase and ALS inhibitors has been confirmed in rice fields of the southern province, Korea in 2009. In the beginning, the M. vaginalis, S. juncoides and C. difformis of these SU-resistant weeds were rapidly and individually spreaded in different fields, however, these resistant weeds have been occurring simultaneously in the same filed recently. The resistant biotype by weed species demonstrated about 10-to 1,000-fold resistance, based on $GR_{50}$ values of the SU herbicides tested. And the resistant biotype of E. oryzoides to cyhalofop-butyl, pyriminobac-methyl, and penoxsulam was about 14, 8, and 11 times more resistant than the susceptible biotype base on $GR_{50}$ values. The products and applied area of SU-included herbicides have been increased rapidly, and have accounted for about 69% and 96% in Korea, respectively. In Korea, the main cause of SU-resistant weed is extensive use of these herbicides. The top ten herbicides by applied area were composed of all SU-included herbicides by 2003. The concentrated and successive treatment of ACCase and ALS inhibitors for control of barnyardgrass in rice led up to the resistance of E. oryzoides. Also, SU-herbicides like pyrazosulfuron-ethyl and imazosulfuron which effective to barnyardgrass can be bound up with the resistance of E. oryzoides. The ALS activity isolated from the resistant biotype of M. korsakowii to SU-herbicides tested was less sensitive than that of susceptible biotype. The concentration of herbicide required for 50% inhibition of ALS activity ($I_{50}$) of the SU-resistant M. korsakowii was 14-to 76-fold higher as compared to the susceptible biotype. No differences were observed in the rates of [$^{14}C$]bensulfuron uptake and translocation. Acetolactate synthase (ALS) genes from M. vaginalis resistant and susceptible biotypes against SU-herbicides revealed a single amino acid substitution of proline (CCT), at 197th position based on the M. korsakowii ALS sequence numbering, to serin (TCT) in conserved domain A of the gene. Carfentrazone-ethyl and pyrazolate were used mainly to control SU-resistant M. vaginalis by 2006 in Korea. However, the alternative herbicides such as benzobicyclone, to be possible to control simultaneously the several resistant weeds, have been developing and using broadly, because the several resistant weeds have been occurring simultaneously in the same fieled. The top ten herbicides by applied area in Korea have been occupied by products of 3-way mixture type including herbicides with alternative mode of action for the herbicide resistant weeds. Mefenacet, fentrazamide and cafenstrole had excellent controlling effects on the ACCase and ALS inhibitors resistant when they were applied within 2nd leaf stage.

Particle Bombardment 방법을 이용한 인공 씨감자의 형질전환 (Genetic Transformation of Intact Potato Microtuber by Particle Bombardment)

  • 최경화;전재흥;김현순;정영희;임용표;정혁
    • 식물조직배양학회지
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    • 제24권2호
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    • pp.87-91
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    • 1997
  • 제초제 저항성 유전자를 코팅시킨 입자를 particle bombardment 기법으로 자주감자 품종의 인공씨감자에 도입시켰다. 발아직전에 있는 인공씨감자의 생장점 부위를 집중적으로 particle bombardment 한 후 발아한 인공씨감자를 온실에 심었다. 온실에서 5주동안 생육시킨 후 northern 분석결과 유전자가 발현된 2개의 형질전환체를 선발하였고 제초제 살포 실험을 한 결과 형질전환 되지않은 식물체는 모두 고사하였지만 형질전환된 2개의 자주감자 식물체는 생존하였다.

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