• 제목/요약/키워드: crop discrimination

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SSR 마커를 이용한 국내산 인삼 품종 및 국외 수집종의 유전적 다양성 분석 (Analysis of Genetic Polymorphism of Korean Ginseng Cultivars and Foreign Accessions using SSR Markers)

  • 방경환;조익현;정종욱;김영창;이제완;서아연;박종현;김옥태;현동윤;김동휘;차선우
    • 한국약용작물학회지
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    • 제19권5호
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    • pp.347-353
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    • 2011
  • In this study, simple sequence repeat (SSR) analyses were utilized for evaluation of genetic diversity and discrimination of 17 accessions. Five cultivars, which were developed from Korea, and 12 foreign accessions, which were collected from China, Japan, Russia and USA, were evaluated by nine markers out of 22 SSR markers. A total of 39 alleles were detected, ranging from 2 to 8, with an average of 4.3 alleles per locus. The expected heterozygosity and PIC values were 0.627 and 0.553, with a range from 0.21 (GB-PG-078) to 0.76 (GB-PG-142) and from 0.19 (GB-PG-078) to 0.70 (GB-PG-142), respectively. Four makers out of nine SSR markers, GB-PG-026, GB-PG-043, GB-PG-142 and GB-PG-177, were selected as key factors for discrimination of Korean ginseng cultivars and foreign accessions. All of Korean ginseng cultivars and foreign accessions were individually by the combination of four SSR markers. Consequently, the SSR markers developed in this study may prove useful for the evaluation of genetic diversity and discrimination of Korean ginseng cultivars and foreign accessions.

당귀의 해부형태학적 특징에 따른 기원판별 (Discrimination of Angelicae Radix Based on Anatomical Characters)

  • 성정숙;방경환;박충헌;박춘근;유홍섭;박희운;성낙술
    • 한국약용작물학회지
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    • 제12권1호
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    • pp.67-72
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    • 2004
  • 당귀류 약재의 기원식물에 대해 해부형태적 특징을 관찰하고, 이를 통하여 당귀 기원 및 국내유통 당귀류 약재의 판별에 이용코자 실험한 결과는 다음과 같다. 기원식물 뿌리의 해부형태특징은 정상 2기생장, 주피발달, 유세포내 전분함유 등이 공통점이었고, 후각세포층은 참당귀와 왜당귀에서 관찰되었으며 피층의 유실분포는 참당귀와 중국당귀에서 관찰되었다. 또한 참당귀에서만 속성후벽세포가 다량 관찰되었다. 잎의 표피세포는 중국당귀가 가장 컸으며 세포표면의 형태는 참당귀와 중국당귀는 거친 주름이져 있었고, 왜당귀는 완만한 굴곡이 관찰되었다. 3종의 기공은 모두 불규칙형 부세포를 가지고 있었고 참당귀가 $mm^2$당 600개 이상으로 가장 많은 기공이 분포하고 있었다. 모용은 참당귀에서만 원뿔형으로 관찰되었다. 엽병은 3종식물에서 모두 유조직이 잘 발달된 형태였고 환상으로 병립유관속이 발달하고 있었다. 국내 유통 당귀류 약재의 판별에 있어서 해부형태적 특징을 정리하여 간단한 동정 KEY를 적용하여 만든 검색표가 유용하게 활용될 수 있었다. 검색표를 이용하여 전국 7개 지점에서 수집한 약재를 판별한 결과, 당귀 (국산) 또는 토당귀로 유통되는 약재는 참당귀 (A. gigas)로 동정되었고, 일당귀로 유통되는 약재는 왜당귀(A. acutiloba)로 동정되었다. 중국당귀는 현재 시중 유통되지 않고 있으며 본연구에서 사용된 약재 중국당귀는 중국 현지에서 직접 구입해 온 것으로 중국당귀 (A. sinensis)의 뿌리와 동일한 횡단면 형태를 관찰할 수 있었다. 그러므로, 현재 국내 유통되는 당귀류 약재는 (토)당귀의 경우는 KP에서 규정하는 것과 동일기원이었으며, 일당귀는 일본약국방(JP,2001)에서 규정하는 것과 동일한 기원으로 당귀류 유통약재의 기원상에 오류는 없었다.

Spectral Reflectance Signatures of Major Upland Crops at OSMI Bands

  • Hong, Suk-Young;Rim, Sang-Kyu;Jung, Won-Kyo
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 1998년도 Proceedings of International Symposium on Remote Sensing
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    • pp.370-375
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    • 1998
  • Spectral reflectance signatures of upland crops at OSMI bands were collected and evaluated for the feasibility of crop discrimination knowledge-based on crop calendar. Effective bands and their ratio values for discriminating corn from two other legumes were defined with OSMI equivalent bands and their ratio values. June 22 among measurements dates was the best date for corn discrimination from two other legumes, peanut and soybean, because all OSMI equivalent bands and their ratio values in June 22 were highly significant for corn separability. Phenological growth stage of a silage corn (rs510) could be estimated as a function of spectral reflectance signatures in vegetative stage. Five growth stage prediction models were generated by the SAS procedures REG and STEPWISE with OSMI equivalent bands and their ratio values in vegetative stage.

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분광분석법을 이용한 형질전환 작물 판별 기술 현황 (Current Status of GM Crop Discrimination Technology Using Spectroscopy)

  • 손수인;오영주;조우석;조윤성;신은경;강현중
    • 한국환경농학회지
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    • 제39권3호
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    • pp.263-272
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    • 2020
  • BACKGROUND: This paper describes the successful discrimination of GM crops from the respective wild type (WT) controls using spectroscopy and chemometric analysis. Despite the many benefits that GM crops, their development has raised concerns, particularly about their potential negative effects on food production and the environment. From this point of view, the introduction of GM crops into the market requires the development of rapid and accurate identification technologies to ensure consumer safety. METHODS AND RESULTS: The development of a GM crop discrimination model using spectroscopy involved the pre-processing of the collected spectral information, the selection of a discriminant model, and the verification of errors. Examples of GM versus WT discrimination using spectroscopy are available for soybeans, tomatoes, corn, sugarcane, soybean oil, canola oil, rice, and wheat. Here, we found that not only discrimination but also cultivar grouping was possible. CONCLUSION: Since for the determination of GM crop there is no pre-defined pre-processing method or calibration model, it is extremely important to select the appropriate ones to increase the accuracy in a case-by-case basis.

SSR 마커를 이용한 고려인삼 품종 판별기술 개발 (Development of SSR Markers for Identification of Korean Ginseng (Panax ginseng C. A. Meyer) Cultivars)

  • 방경환;정종욱;김영창;이제완;조익현;서아연;김옥태;현동윤;김동휘;차선우
    • 한국약용작물학회지
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    • 제19권3호
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    • pp.185-190
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    • 2011
  • The principal objective of this study was to develop a discrimination method using SSR markers in Korean ginseng cultivars. Five cultivars--Chunpoong, Yunpoong, Gopoong, Sunpoong, and Kumpoong--were evaluated by nine markers out of 22 SSR markers. A total of 23 alleles were detected, ranging from 1 to 4, with an average of 2.6 alleles per locus, and an averages of gene diversity (GD) of 0.480. Nine markers were tested in order to distinguish among five Korean ginseng cultivars. Two markers out of nine SSR markers, GB-PG-065 and GB-PG-142, were selected as key markers for discrimination among Korean ginseng cultivars. Two genotypes were detected in GB-PG-065. Chunpoong and Kumpoong shared the same allele type, and Yunpoong, Gopoong, and Sunpoong shared another identical allele type. In the case of GB-PG-142, a specific allele type differentiated from those of other four cultivars was observed only in Sunpoong cultivar. Consequently, the SSR markers developed in this study may prove useful for the identification of Korean ginseng cultivars and the development of ginseng seed management systems, as well as tests to guarantee the purity of ginseng seeds.

SSR 마커를 이용한 한국산과 중국산 구기자의 품종 판별 (Cultivar Discrimination of Korean and Chinese Boxthorn (Lycium chinense Mill. and Lycium barbarum L.) using SSR Markers)

  • 정종욱;이기안;이석수;방경환;박충범;박용진
    • 한국약용작물학회지
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    • 제17권6호
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    • pp.445-451
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    • 2009
  • This study was undertaken to develop a technique of discrimination using SSR makers in boxthorn cultivars. Forty one boxthorn cultivars, which were collected from Korea and China, were evaluated by 10 SSR markers. Total of 61 alleles were detected, ranging from 3 to 13 with an average of 6.1 alleles per locus. The averages of gene diversity and PIC values were 0.482 and 0.428, with a range from 0.25 (GB-LCM-022 and GB-LCM-087) to 0.83 (GB-LCM-167) and from 0.24 (GB-LCM-022 and GB-LCM-087) to 0.81 (GB-LCM-167), respectively. Five markers out of 10 markers, GB-LCM-022, GB-LCM-075, GB-LCM-104, GB-LCM-167 and GB-LCM-217, were selected as key markers for discrimination in boxthorn cultivars. All of boxthorn cultivars were individually distinguished by the combination of five SSR markers.

해부형태적 특징과 SCAR Marker를 이용한 백출의 기원식물 판별 (Discrimination of Atractylodes Rhizome White Using Anatomical Characteristics and SCAR Markers)

  • 방경환;성정숙;박충헌;김동순;박춘근;유홍섭;박희운;성낙술
    • 한국약용작물학회지
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    • 제12권1호
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    • pp.53-59
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    • 2004
  • 국내 한약재 시장에서 유통되고 있는 백출 건재약재의 기원을 판별하고자 해부형태적 특징과 종 특이적인 SCAR 마커 (SAjR2, SAmR1)를 적용한 실험 결과는 다음과 같다. 해부형태적 특징으로 A. japonica에서는 주피에 코르크층이 매우 발달하여 있었고, 코르크층 내부 또는 아래에 석세포대가 연속적으로 발달하고 있었다. 유실은 A. japonica에서 뿌리횡단면에 전체적으로 다수 분포하여 잘 발달하고 있었으며 피충부분과 잘 발달된 방사조직 내에서도 목섬유다발이 다수 관찰됐다. 또한 유세포 내의 침상 결정물도 A. macrocephala보다 많이 함유하고 있었다. 이러한 특징들을 종합한 결과, 국내 유통 국산 및 수입 백출은 모두 A. japonica의 해부형태적 특징을 따르고 있어 A. japonica로 동정되었다. 한편 RAPD clone으로부터 개발된 A. japonica 특이적인 SAjR2를 이용하여 PCR 한 결과 모든 샘플에서 600bp 크기의 한국백출 특이적인 밴드가 형성되었으며, A. macrocephala 특이적인 SAmR1을 이 용한 결과에서는 작물시험장에서 재배중인 A. macrocephala에서만 1200 bp크기의 특이적인 밴드가 형성되어, 시중에서 유통되고 있는 한국백출과 중국백출은 모두 A. japonica로 동정되었다. 결론적으로 해부형태적 특성과 SCAR 마커는 A. japonica와 A. macrocephala 기원식물의 동정과 유통 건재 약재를 판별하기에 유용한 방법이었다.

Discrimination of Species Specific DNA Markers Using RAPD and AFLP Analysis between Atractylodes japonica Koidz. and Atractylodes macrocephala Koidz.

  • Bang, Kyong-Hwan;Park, Chun-Geon;Jin, Dong-Chun;Kim, Hong-Sig;Park, Hee-Woon;Park, Chung-Heon;Seong, Nak-Sul
    • 한국약용작물학회지
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    • 제11권4호
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    • pp.268-273
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    • 2003
  • To identify the variation of the RAPD patterns between two Atractylodes species, 52 kinds of random primers were applied to each eight of A japonica and A. macrocephala genomic DNA. Ten primers of 52 primers could be used to discriminate between the species and 18 polymorphisms among 67 scored DNA fragments (18 fragments are specific for A. japonica and A. macrocephala) were generated using these primers, 26.9% of which were polymorphic. RAPD data from the 10 primers was used for cluster analysis. The cluster analysis of RAPD markers showed that the two groups are genetically distinct. On the other hand, to identify the variation of the AFLP patterns and select the species specific AFLP markers, eight combinations of EcoRI/MseI primers were applied to the bulked A. japonica and A. macrocephala genomic DNA. Consequently, three combinations of EcoRI/MseI primers (EcoRI /Mse I ; AAC/CTA, AAC/CAA, AAG/CTA) used in this study revealed 176 reliable AFLP markers, 42.0% of which were polymorphic. 74 polymorphisms out of 176 scored DNA fragments were enough to clearly discriminate between two Atractylodes species.

Discrimination and Detection of Erwinia amylovora and Erwinia pyrifoliae with a Single Primer Set

  • Ham, Hyeonheui;Kim, Kyongnim;Yang, Suin;Kong, Hyun Gi;Lee, Mi-Hyun;Jin, Yong Ju;Park, Dong Suk
    • The Plant Pathology Journal
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    • 제38권3호
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    • pp.194-202
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    • 2022
  • Erwinia amylovora and Erwinia pyrifoliae cause fire blight and black-shoot blight, respectively, in apples and pears. E. pyrifoliae is less pathogenic and has a narrower host range than that of E. amylovora. Fire blight and black-shoot blight exhibit similar symptoms, making it difficult to distinguish one bacterial disease from the other. Molecular tools that differentiate fire blight from black-shoot blight could guide in the implementation of appropriate management strategies to control both diseases. In this study, a primer set was developed to detect and distinguish E. amylovora from E. pyrifoliae by conventional polymerase chain reaction (PCR). The primers produced amplicons of different sizes that were specific to each bacterial species. PCR products from E. amylovora and E. pyrifoliae cells at concentrations of 104 cfu/ml and 107 cfu/ml, respectively, were amplified, which demonstrated sufficient primer detection sensitivity. This primer set provides a simple molecular tool to distinguish between two types of bacterial diseases with similar symptoms.