• 제목/요약/키워드: Specific plant species

검색결과 658건 처리시간 0.038초

Platform of Hot Pepper Defense Genomics: Isolation of Pathogen Responsive Genes in Hot Pepper (Capsicum annuum L.) Non-Host Resistance Against Soybean Pustule Pathogen (Xanthomonas axonopodis pv. glycines)

  • Lee, Sang-Hyeob;Park, Do-Il
    • The Plant Pathology Journal
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    • 제20권1호
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    • pp.46-51
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    • 2004
  • Host resistance is usually parasite-specific and is restricted to a particular pathogen races, and commonly is expressed against specific pathogen genotypes. In contrast, resistance shown by an entire plant species to a species of pathogen is known as non-host resistance. Therefore, non-host resistance is the more common and broad form of disease resistance exhibited by plants. As a first step to understand the mechanism of non-host plant defense, expressed sequence tags (EST) were generated from a hot pepper leaf cDNA library constructed from combined leaves collected at different time points after inoculation with non-host soybean pustule pathogen (Xanthomonas axonopodis pv. Glycines; Xag). To increase gene diversity, ESTs were also generated from cDNA libraries constructed from anthers and flower buds. Among a total of 10,061 ESTs, 8,525 were of sufficient quality to analyze further. Clustering analysis revealed that 55 % of all ESTs (4685) occurred only once. BLASTX analysis revealed that 74% of the ESTs had significant sequence similarity to known proteins present in the NCBI nr database. In addition, 1,265 ESTs were tentatively identified as being full-length cDNAs. Functional classification of the ESTs derived from pathogen-infected pepper leaves revealed that about 25% were disease- or defense-related genes. Furthermore, 323 (7%) ESTs were tentatively identified as being unique to hot pepper. This study represents the first analysis of sequence data from the hot pepper plant species. Although we focused on genes related to the plant defense response, our data will be useful for future comparative studies.

Molecular identification of Allium ochotense and Allium microdictyon using multiplex-PCR based on single nucleotide polymorphisms

  • Kim, Yong-Bog;Ramekar, Rahul Vasudeo;Choi, Seong-Jin;Choi, Byoung-Gon;Kim, Se-Won;Moon, Youn-Ki;Noh, Hee-Sun;Lee, Ju-Kyong;Hong, Jin-Sung;Park, Nam-Il;Choi, Ik-Young;Choi, Seon-Kang;Park, Kyong-Cheul
    • Horticulture, Environment, and Biotechnology : HEB
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    • 제59권6호
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    • pp.865-873
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    • 2018
  • Allium ochotense and Allium microdictyon are commonly known as 'Mountain garlic' and are popular, economically important species in many countries such as Korea, China, and Mongolia. Their leaves are used as culinary side dishes and in traditional medicines. In Korea, these two species are at risk of extinction due to damage to their natural habitat and thus, conservation and breeding programs are needed. However, their identification relies mostly on morphological data, which is limited and until recently, led to classifying these two species under A. victorialis. In the present study, a simple and reliable method of molecular identification was developed to distinguish A. ochotense from A. microdictyon that targets four barcoding regions: the internal transcribed spacer (ITS), the maturase K gene (matK), the chloroplast psbA-trnH intergenic region, and the ribulose-bisphosphate carboxylase large subunit gene (rbcL). Single nucleotide polymorphisms (SNPs) were found in ITS and matK regions, and species-specific primers were designed based solely on the SNP at position 680 of the ITS region that could differentiate A. ochotense from A. microdictyon. Using these primers in amplification refractory mutation system (ARMS)-PCR, A. ochotense, and A. microdictyon could be simultaneously and efficiently distinguished. This study is the first to report a simple, rapid, and efficient method for discriminating A. ochotense and A. microdictyon, indicating the utility of species-specific markers in the development of conservation and breeding programs.

국내 식물검역대상 Phytophthora pinifolia의 PCR 검출을 위한 종 특이적 마커 개발 (Species-specific Marker of Phytophthora pinifolia for Plant Quarantine in Korea)

  • 김나래;최유리;서문원;송정영;김홍기
    • 한국균학회지
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    • 제44권2호
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    • pp.103-107
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    • 2016
  • 본 연구는 국내 주요 식물검역관리 대상 Phytophthora pinifolia를 대상으로 신속하고 정확한 병원균 종동정 및 검출을 위해 Ypt1 유전자 염기서열을 활용하여 제작된 종 특이적 분석용 분자마커와 다양한 PCR 기법을 활용하여 병원균들에 대한 다양한 검출기술의 표준화 및 최적 검출 시스템 구축을 통하여 실제 검역검역 현장에서 활용 가능한 병원균 존재여부의 신속, 정확한 판별기법을 개발하고자 수행하였다. Ypt1 영역의 염기서열을 기초로 선발된 종 특이적 primer는 1~10 pg의 검출민감도를 가지며 193 bp의 종 특이적 PCR 증폭산물을 형성시켰다. 또한 선발된 종 특이적 primer의 종 특이성을 확인하기 위하여 국내 식물검역대상에 포함된 Phytophthora속 종들과 주요 식물병원균들을 대상으로 conventional PCR과 real-time PCR을 수행한 결과 목표로 한 P. pinifolia DNA에서만 특이적 PCR 증폭산물을 확인할 수 있었다. 선발된 종 특이적 primer에 대한 PCR의 검출 민감도를 확인했을 때 conventional PCR의 검출민감도는 1~10 pg이었다.

당귀 종판별을 위한 엽록체 기반 SSR 마커 개발 (Development of Chloroplast DNA-Based Simple Sequence Repeat Markers for Angelica Species Differentiation)

  • 박상익;김세림;길진수;이이;김호방;이정호;김성철;정찬식;엄유리
    • 한국약용작물학회지
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    • 제24권4호
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    • pp.317-322
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    • 2016
  • Background: In the herbal medicine market, Angelica gigas, Angelica sinensis, and Angelica acutiloba are all called "Danggui" and used confusingly. We aimed to assess the genetic diversity and relationships among 14 Angelica species collected from different global seed companies. Toward this aim we developed DNA markers to differentiate the Angelica species. Methods and Results: A total of 14 Angelica species, A. gigas, A. acutiloba, A. sinensis, A. pachycarpa, A. hendersonii, A. arguta, A. keiskei, A. atropurpurea, A. dahurica, A. genuflexa, A. tenuissima, A. archangelica, A. taiwaniana, and A. hispanica were collected. The genetic diversity of all 14 species was analyzed by using five chloroplast DNA-based simple sequence repeat (SSR) markers and employing the DNA fragment analysis method. Each primer amplified 3 - 12 bands, with an average of 6.6 bands. Based on the genetic diversity analysis, these species were classified into specific species groups. The cluster dendrogram showed that the similarity coefficients ranged from 0.77 to 1.00. Conclusions: These findings could be used for further research on cultivar development by using molecular breeding techniques and for conservation of the genetic diversity of Angelica species. The analysis of polymorphic SSRs could provide an important experimental tool for examining a range of issues in plant genetics.

문수산.옥석산 일대의 식물상 (Vascular Plants of Mt. Munsu and Mt. Okseok)

  • 김혜진;윤충원
    • 환경생물
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    • 제27권2호
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    • pp.164-175
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    • 2009
  • 문수산 옥석산 일대의 식물상을 조사한 결과 관속식물문은 35목 95과 332속 600종 93변종 5품종으로 총 698분류군으로 나타났다. 희귀식물은 12과 14속 14종 2변종 16분류군으로 확인되었으며, 멸종위기식물은 1과 1속 1종 1분류군으로 노랑무늬붓꽃이 나타났고, 특산식물은 23과 34속 39종 5변종의 총 44분류군으로 나타났다. 또한 식물구계학적 특정식물은 I등급 식물이 34과 47속 49종 2변종 51분류군, II등급 식물이 21과 30속 29종 4변종 33분류군, III등급 식물이 19과 21속 27종 1변종 28분류군, IV등급 식물이 11과 12속 11종 1변종 12분류군, V등급 식물이 1과 1속 1종 1분류군으로 총 125분류군이었다. 그러나 조사지역에서 발견된 약모밀(Houttuynia cordata)은 식재된 것으로 판단되었다. 귀화식물은 9과 22속 26종 1변종 27분류군이 확인되었으며, 귀화율은 3.9%로 나타났다.

A New Genus, Parkiana Cho, gen. nov. (Lepidoptera: Lecithoceridae) from Madagascar, with Descriptions of Two New Species

  • Cho, Soowon;Koo, Jun-Mo;Agassiz, David J.L.
    • Animal Systematics, Evolution and Diversity
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    • 제36권2호
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    • pp.107-112
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    • 2020
  • A new genus Parkiana Cho, gen. nov., belonging to Torodorinae of Lecithoceridae, is described from Madagascar, with two new species: P. matutinalis Cho & Agassiz, sp. nov. and P. andasibensis Cho & Agassiz, sp. nov. Although superficially similar to Thubdora Park, 2018, some of their morphological characters, such as wing venation, are unique and the species of the genus are grouped apart from Thubdora in a preliminary phylogenetic analysis based on COI barcode sequences. In addition to the specific descriptions, adults and genitalia for the two new species are illustrated.

matK 증폭용 primer 개발 및 염기서열 분석을 통한 정력자(葶藶子) 유전자 감별 (Molecular authentication of Lepidii seu Descurainiae Semen by the development of matK amplification primers and analysis of sequences)

  • 문병철;김욱진;양선규;박인규;여상민;노푸름
    • 대한본초학회지
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    • 제33권3호
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    • pp.25-35
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    • 2018
  • Objectives : Lepidii seu Descurainiae Semen has been frequently adulterated with the seeds of several inauthentic plant species. However, the accurate identification of these plant seeds is very difficult. To develop a reliable genetic authentication tool for Lepidii seu Descurainiae Semen, we analyzed matK sequence. Methods : To obtain the matK sequences of plant materials, genomic DNA was extracted from 24 samples and PCR amplification was carried out using matK-AF/matK-8R universal primer set and matK-LDSF/matK-LDSR primer set. For identifying species-specific nucleotides and phylogenetic analysis, matK regions were sequenced and comparatively analyzed by the ClustalW and Maximum Likelihood method. Results : We developed a new primer set to amplify matK region in Lepidii seu Descurainiae Semen and closely related plant samples. From the comparative analysis of matK sequences, we identified species-specific marker nucleotides for D. sophia, L. apetalum, L. latifolium, E. cheiranthoides, E. macilentum, and D. nemorosa, respectively. Furthermore, phylogenetic analysis revealed clear classification depending on the species. These results indicated that the matK sequence obtained a new primer set in this study was useful to identify Lepidii seu Descurainiae Semen in species level. Conclusions : We developed a primer set and identified species-specific marker nucleotides enough to distinguish authentic Lepidii seu Descurainiae Semen and adulterants at the species level based on the matK sequences. These genetic tool will be useful to prevent adulteration and to standardize the quality of Lepidii seu Descurainiae Semen.

Fibrolytic Rumen Bacteria: Their Ecology and Functions

  • Koike, Satoshi;Kobayashi, Yasuo
    • Asian-Australasian Journal of Animal Sciences
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    • 제22권1호
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    • pp.131-138
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    • 2009
  • Among rumen microbes, bacteria play important roles in the biological degradation of plant fiber due to their large biomass and high activity. To maximize the utilization of fiber components such as cellulose and hemicellulose by ruminant animals, the ecology and functions of rumen bacteria should be understood in detail. Recent genome sequencing analyses of representative fibrolytic bacterial species revealed that the number and variety of enzymes for plant fiber digestion clearly differ between Fibrobacter succinogenes and Ruminococcus flavefaciens. Therefore, the mechanism of plant fiber digestion is also thought to differ between these two species. Ecology of individual fibrolytic bacterial species has been investigated using pure cultures and electron microscopy. Recent advances in molecular biology techniques complement the disadvantages of conventional techniques and allow accurate evaluation of the ecology of specific bacteria in mixed culture, even in situ and in vivo. Molecular monitoring of fibrolytic bacterial species in the rumen indicated the predominance of F. succinogenes. Nutritive interactions between fibrolytic and non-fibrolytic bacteria are important in maintaining and promoting fibrolytic activity, mainly in terms of crossfeeding of metabolites. Recent 16S rDNA-based analyses suggest that presently recognized fibrolytic species such as F. succinogenes and two Ruminococcus species with fibrolytic activity may represent only a small proportion of the total fibrolytic population and that uncultured bacteria may be responsible for fiber digestion in the rumen. Therefore, characterization of these unidentified bacteria is important to fully understand the physiology and ecology of fiber digestion. To achieve this, a combination of conventional and modern techniques could be useful.

Bremia itoana (Oomycota, Peronosporales), a Specialized Downy Mildew Pathogen on an East Asian Plant, Crepidiastrum sonchifolium (Asteraceae)

  • Choi, Young-Joon;Park, Ji Hoon;Lee, Jeongran;Shin, Hyeon-Dong
    • Mycobiology
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    • 제46권4호
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    • pp.416-420
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    • 2018
  • Crepidiastrum sonchifolium, a flowering plant in the daisy family (Asteraceae), is native to East Asia. In Korea, this plant is a locally cultivated vegetable, and its market size is gradually growing. Since the plants with downy mildew infection were initially found at a private farm of Chuncheon city, the occurrences have continued in commercial farms of other regions, highlighting that this disease is spreading throughout Korea. The pathogen was attributed to a member of the genus Bremia that contains many specialized species, each of which displays a narrow host spectrum on Asteraceae. Based on morphological and molecular phylogenetic analyses, along with the high host specificity recently proven for Bremia species, the identity of the causal agent was confirmed as a so far undescribed species of Bremia. Here, we introduce Bremia itoana sp. nov., specific to C. sonchifolium.