• 제목/요약/키워드: Herbicide-resistant crops

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제초제 저항성작물에서 잡초관리기술 동향 및 전망 (Current Status and Perspective of Weed Management in Herbicide-Resistant Crops)

  • 변종영;장규섭;이증주;박기웅
    • Weed & Turfgrass Science
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    • 제2권3호
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    • pp.221-229
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    • 2013
  • 우리나라에서 제초제 저항성작물의 개발과 저항성작물의 실용화 재배가 이루어질 경우를 대비하기 위하여 제초제 저항성작물 개발 및 잡초방제 연구현황을 분석하고 앞으로의 잡초방제 방향과 전망에 관하여 기술하였다. 제초제 저항성작물 개발은 작물에 대한 약해 없이 한 가지 제초제만을 사용해서 선택적으로 광범한 잡초방제 효과를 나타낼 수 있는 획기적인 잡초관리 기술의 하나이다. Glyphosate 저항성 형질전환 콩, 옥수수, 캐놀라, 면화에서 glyphosate 사용은 단순한 잡초방제법으로 저비용으로 편리하게 잡초를 관리할 수 있다. 한 작물에 glyphosate와 glufosinate에 모두 저항성인 이중저항성작물은 옥수수, 콩, 면화에서 개발되어 glyphosate 저항성잡초를 방제할 수 있었으며, 기존 제초제 기술의 영역을 확장할 수 있을 것이다. 그리고 glyphosate를 ALS 저해형 제초제, 합성옥신 제초제, HPPD 저해형 제초제 혹은 ACCase 저해형 제초제를 포함한 새로운 제초제 저항성작물 개발은 제초제 저항성잡초를 효과적으로 방제하기 위하여 가까운 장래에 개발되기를 기대한다. 또한 제초제 저항성작물만으로는 잡초문제를 해결할 수 없기 때문에 앞으로 다른 작용기작 제초제의 교호사용, 기계적, 경종적 방법을 통합한 종합적잡초관리 체계에 관한 연구가 요망된다.

Soil Microbial Community Assessment for the Rhizosphere Soil of Herbicide Resistant Genetically Modified Chinese Cabbage

  • Sohn, Soo-In;Oh, Young-Ju;Ahn, Byung-Ohg;Ryu, Tae-Hoon;Cho, Hyun-Suk;Park, Jong-Sug;Lee, Ki-Jong;Oh, Sung-Dug;Lee, Jang-Yong
    • 한국환경농학회지
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    • 제31권1호
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    • pp.52-59
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    • 2012
  • BACKGROUND: Cultivation of genetically modified(GM) crops rapidly has increased in the global agricultural area. Among those, herbicide resistant GM crops are reported to have occupied 89.3 million hectares in 2010. However, cultivation of GM crops in the field evoked the concern of the possibility of gene transfer from transgenic plant into soil microorganisms. In our present study, we have assessed the effects of herbicide-resistant GM Chinese cabbage on the surrounding soil microbial community. METHODS AND RESULTS: The effects of a herbicide-resistant genetically modified (GM) Chinese cabbage on the soil microbial community in its field of growth were assessed using a conventional culture technique and also culture-independent molecular methods. Three replicate field plots were planted with a single GM and four non-GM Chinese cabbages (these included a non-GM counterpart). The soils around these plants were compared using colony counting, denaturing gradient gel electrophoresis and a species diversity index assessment during the growing periods. The bacterial, fungal and actinomycetes population densities of the GM Chinese cabbage soils were found to be within the range of those of the non-GM Chinese cabbage soils. The DGGE banding patterns of the GM and non-GM soils were also similar, suggesting that the bacterial community structures were stable within a given month and were unaffected by the presence of a GM plant. The similarities of the bacterial species diversity indices were consistent with this finding. CONCLUSION: These results indicate that soil microbial communities are unaffected by the cultivation of herbicide-resistant GM Chinese cabbage within the experimental time frame.

Mechanisms of herbicide resistance in weeds

  • Bo, Aung Bo;Won, Ok Jae;Sin, Hun Tak;Lee, Jeung Joo;Park, Kee Woong
    • 농업과학연구
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    • 제44권1호
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    • pp.1-15
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    • 2017
  • In major field crops, synthetic herbicides have been used to control weeds worldwide. Globally, herbicide resistance in weeds should be minimized because it is a major limiting factor for food security. Cross resistance can occur with herbicides within the same or in different herbicide families and with the same or different sites of action. Multiple resistance refers to evolved mechanisms of resistance to more than one herbicide (e.g., resistance to both ALS-inhibitors and ACCase-inhibitors) and this resistance was brought about by separate selection processes. Target site resistance could occur from changes at the biochemical site of action of one herbicide. Non target site resistance occurs through mechanisms which reduce the number of herbicide molecules that reach the herbicide target site. There are currently 480 unique cases (species ${\times}$ site of action) of herbicide resistance globally in 252 plant species (145 dicots and 105 monocots). To date, resistance in weeds has been reported to 161 different herbicides, involving 23 of the 26 known herbicide sites of action. Finally, it can be concluded that we can protect crops associated to herbicide resistant weeds by applications of biochemical, genetic and crop control strategies.

일본잡초학회에서 본 일본의 잡초연구 동향 (Report on the 54th annual meeting of the weed science society of Japan)

  • 황재복;김경현
    • 농업과학연구
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    • 제42권4호
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    • pp.335-339
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    • 2015
  • 일본잡초학회를 참석하여 잡초방제 관한 최근 연구동향을 파악하고 이를 토대로 향후 잡초방제 연구의 발전방향과 전망을 제시하고자 하였다. 주요 연구분야로는 잡초연구, 잡초관리, 제초제, 그리고 해외동향 등이었다. 일반강연 49편, 포스터 발표 45편이 었다. 학회 일정 중에 미니심포지엄이 소분과로 나누어 각각 개최되었고, 젊은 과학자의 모임도 활발하게 진행되었다. 일본도 우리나라와 같이 기후변화에 따른 문제잡초의 증가 및 외래잡초의 관련연구의 비중이 높고, 친환경 방제를 위한 식물체 유래 제초활성 물질 탐색, 저항성 잡초를 방제하기 위한 연구들이 주로 이루어지고 있었다.

Molecular Breeding for Plant Disease Resistance : Prospects and Problems

  • Park, Hyo-Guen
    • The Plant Pathology Journal
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    • 제17권1호
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    • pp.1-8
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    • 2001
  • The technique of plant transformation has started to show off its great power in the area of plant breeding by commercially successful introduction of transgenic varieties such as herbicide tolerant soybean and insect resistant corn in USA with an unimaginable speed. However, in contrast with the great success in the commercialization of herbicide tolerance and insect resistance, the transformation works on disease resistance has not yet reached the stage of full commercialization. This review surveys the current status of molecular breeding for plant disease resistance and their limits and problems. Some novel ideas and approaches in molecular breeding for disease resistance are introduced.

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Development of herbicide-resistant upland crops

  • Kim, Jin-Seog;Kwon, Suk-Yoon;Chung, Young-Soo;Choi, Pil-Son;Lee, Byung-Hyun;Lim, Hak-Tae;Lee, Byung-Moo
    • 한국식물생명공학회:학술대회논문집
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    • 한국식물생명공학회 2005년도 추계학술대회 및 한일 식물생명공학 심포지엄
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    • pp.424-424
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    • 2005
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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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Bromoxynil 특이성 nitrilase 유전자를 이용한 제초제 저항성 형질 전환 식물의 분자육종 (Molecular breeding of herbicide resistant transgenic plants with bromoxynil specific nitrilase gene)

  • 민복기;박은성;박연홍;송재영;이세영
    • Applied Biological Chemistry
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    • 제37권4호
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    • pp.248-254
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    • 1994
  • Bromoxynil은 쌍떡잎 특이적 제초제로써 폭 넓게 이용되고 있으며 반감기가 매우 짧다. Bromoxynil을 3,5-dibromo-4-hydroxybenzoic acid로 분해하는 nitrilase를 암호화한 bxn 유전자를 식물 벡터인 pGA482에 도입하고 Agrobacterium과의 동시배양을 통해 담배와 상추에 형질전환하였다. Kanamycin을 이용해 형질전환 식물체를 선별하고 완전한 식물체로 분화시켰다. Northern hybridization을 통해 bxn 유전자의 발현정도를 검정하고 liaf-disc와 pot assay를 통해 형질전환 식물체가 고농도의 bromoxynil에 저항성을 보임을 확인하였다.

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Production of transgenic potato exhibiting enhanced resistance to fungal infections and herbicide applications

  • Khan, Raham Sher;Sjahril, Rinaldi;Nakamura, Ikuo;Mii, Masahiro
    • Plant Biotechnology Reports
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    • 제2권1호
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    • pp.13-20
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    • 2008
  • Potato (Solanum tuberosum L.), one of the most important food crops, is susceptible to a number of devastating fungal pathogens in addition to bacterial and other pathogens. Producing disease-resistant cultivars has been an effective and useful strategy to combat the attack of pathogens. Potato was transformed with Agrobacterium tumefaciens strain EHA101 harboring chitinase, (ChiC) isolated from Streptomyces griseus strain HUT 6037 and bialaphos resistance (bar) genes in a binary plasmid vector, pEKH1. Polymerase chain reaction (PCR) analysis revealed that the ChiC and bar genes are integrated into the genome of transgenic plants. Different insertion sites of the transgenes (one to six sites for ChiC and three to seven for bar) were indicated by Southern blot analysis of genomic DNA from the transgenic plants. Expression of the ChiC gene at the messenger RNA (mRNA) level was confirmed by Northern blot analysis and that of the bar gene by herbicide resistance assay. The results obviously confirmed that the ChiC and bar genes are successfully integrated and expressed into the genome, resulting in the production of bialaphos-resistant transgenic plants. Disease-resistance assay of the in vitro and greenhouse-grown transgenic plants demonstrated enhanced resistance against the fungal pathogen Alternaria solani (causal agent of early blight).

세계 잡초연구 동향 및 전망 (Current Status and Perspectives of Weed Science in the World)

  • 이인용;박태선;최정섭;고영관;박기웅;서현아
    • Weed & Turfgrass Science
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    • 제5권3호
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    • pp.105-110
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    • 2016
  • 세계 잡초연구자들이 세계잡초학회에서 발표한 최근 연구동향을 파악하여 이를 토대로 향후 잡초연구 발전방향과 전망을 제시하고자 하였다. 제 7차 세계잡초학회는 우리나라를 포함한 59개국 520여명이 참석하였으며, 9개 분야 625편이 발표되었다. 주요 연구분야로는 제초제 저항성잡초, 잡초생태, 농경지 및 비농경지의 잡초관리, 제초제 살포기술, 비화학적 잡초방제 등이었다. 이중 제초제 저항성잡초 연구분야는 전체 30%를 점유하여 향후에도 이들 연구가 지속될 것으로 판단된다. 특히 설포닐우레아계 보다는 비선택성 제초제인 glyphosate, glufosinate-ammonium 저항성 잡초에 대한 발표가 많았다. 신규 제초제 개발은 synthetic auxin 작용기작의 제초제인 arylex, HPPD 저해제로 개발 중인 3가지 물질을 safener와의 합제 연구 등이 있었다. 그리고 세계 주곡작물인 옥수수, 밀, 벼 재배지에서 발생되는 제초제 저항성잡초에 대한 연구가 집중되었다. 특히 잡초의 non-target site에 대한 저항성 연구가 집중적이었다. 또한 우리나라에는 없는 기생잡초에 대한 연구 폭이 넓어지고 있으며, 예년에는 취급하지 않았던 비화학적 잡초방제 부문도 많았다. 향후에는 제초제 저항성 메카니즘 구명, 기생잡초 연구, 제초제 살포기술, 비화학적 잡초방제 등의 연구가 폭넓게 진행될 것으로 전망되었다.