• 제목/요약/키워드: Chloroplast genome

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감자 근연야생종 Solanum cardiophyllum의 엽록체 전장유전체 구명 및 이를 이용한 S. cardiophyllum 특이적 분자마커의 개발 (Chloroplast genome sequence and PCR-based markers for S. cardiophyllum)

  • 박태호
    • Journal of Plant Biotechnology
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    • 제50권
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    • pp.45-55
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    • 2023
  • 멕시코 유래의 2배체 감자 근연야생종 Solanum cardiophyllum은 감자역병, 감자바이러스Y, 콜로라도감자잎벌레 등과 같은 병원균 및 해충에 대한 저항성을 가지고 있어 감자의 신품종 육성에 이용되고 있다. 재배종 감자에 이러한 형질을 도입하기 위해서는 전통적인 교잡육종에 의해 이루어질 수 있으나, 재배종 감자와 근연야생종과의 서로 다른 EBN에 따라 제한적이며, S. tuberosum과 S. cardiophyllum 간에도 생리적 불화합성이 존재한다. 따라서, 이러한 생리적 장벽의 극복을 위해 체세포융합에 의한 체세포잡종 계통을 육성하고 이를 감자 신품종 육성에 활용할 수 있는데, 분자 마커는 적절한 체세포잡종 계통 선발에 필요하다. 이에, 본 연구에서는 S. cardiophyllum의 전체 엽록체 유전체 정보를 구명하고 8개의 다른 Solanum 종의 전체 엽록체 유전체 정보와 비교하여 S. cardiophyllum 특이적인 분자마커를 개발하였다. S. cardiophyllum의 전체 엽록체 유전체의 길이는 155,570 bp였으며, 그 구조와 유전자 구성은 다른 Solanum 종들과 매우 유사하였고 가지과에 속해 다른 32개의 종들과의 계통수 분석을 통해 예상했던 바와 같이 다른 Solanum 종과 같은 그룹에 속해 있고 S. bulbocastanum과의 가장 근접한 유연관계를 확인하였다. S. cardiophyllum의 전체 엽록체 유전체와 8개 다른 Solanum 종의 전체 엽록체 유전체의 다중 정렬 결과로 총 13개의 S. cardiophyllum 특이적인 SNP 영역을 확인하였으며, 이 정보를 이용하여 4개의 PCR 기반 분자마커를 개발하였다. 본 연구의 결과는 S. cardiophyllum의 진화적 측면에서의 연구와 S. cardiophyllum를 이용한 감자 신품종 육성을 위한 연구에 기여를 할 수 있을 것이다.

The complete plastid genome of Scopolia parviflora (Dunn.) Nakai (Solanaceae)

  • Park, Jin Hee;Lee, Jungho
    • 식물분류학회지
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    • 제46권1호
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    • pp.60-64
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    • 2016
  • Scopolia parviflora of the family Solanaceae is an endemic species of Korea and a traditional Korean medicinal plant. The plastid genome was sequenced by next-generation sequencing (NGS) method. The characterized cp genome is 156,193 bp in size; the large single-copy (LSC) region is 86,364 bp, the inverted repeat (IR) is 25,905 bp, and the small single copy (SSC) region is 18,019 bp. The overall GC content of the plastid genome amounts to 37.61%. The cp genome contains 113 genes and 21 introns, including 80 proteincoding genes, four RNA genes, 30 tRNA genes, 20 group II introns, and one group I intron. A phylogenetic analysis showed that Scopolia parviflora was closely related to Hyoscyamus niger.

A cDNA Clone for the 5' Exon of Chloroplast ATP Synthase Subunit I Gene (atpF) from Broccoli (Brassica oleracea L. var. Italica) and Its Expression Pattern

  • Choo Bong Hong
    • Journal of Plant Biology
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    • 제38권2호
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    • pp.137-141
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    • 1995
  • We isolated a cDNA clone, BLSC1, encoding 5' exon of ATP synthase CF0 subunit I from broccoli. BLSC1 is 285 nucleotides long which consists of a 5' noncoding region of 34 nucleotides, a 5' exon of 145 nucleotides and an intron of 106 nucleotides. The 5' exon codes for 48 amino acids which reveals mostly hydrophobic. The amino acid sequence deduced from BLSC1 shares 83%, 83% and 91% identities with the genes coding for atpF from wheat, rice and spinach, respectively. Genomic Southern blot analysis for BLSC1 showed a typically strong signal for a gene located in the chloroplast genome. Northern blot analysis identified three major classes of transcripts showing strong positive signals in the leaves, but only trace amounts of the transcripts were identified in the other organs like stems, flowr buds and roots.

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Molecular markers based on chloroplast and nuclear ribosomal DNA regions which distinguish Korean-specific ecotypes of the medicinal plant Cudrania tricuspidata Bureau

  • Lee, Soo Jin;Shin, Yong-Wook;Kim, Yun-Hee;Lee, Shin-Woo
    • Journal of Plant Biotechnology
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    • 제44권3호
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    • pp.235-242
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    • 2017
  • Cudrania tricuspidata Bureau is a widely-used, medicinal, perennial and woody plant. Obtaining information about the genetic diversity of plant populations is highly important with regard toconservation and germplasm utilization. Although C. tricuspidata is an important medicinal plant species registered in South Korea, no molecular markers are currently available to distinguish Korean-specific ecotypes from other ecotypes from different countries. In this study, we developed single nucleotide polymorphism (SNP) markers derived from the chloroplast and nuclear genomic sequences, which serve to to identify distinct Korean-specific ecotypes of C. tricuspidata via amplification refractory mutation system (ARMS)-PCR and high resolution melting (HRM) curve analyses. We performed molecular authentication of twelve C. tricuspidata ecotypes from different regions using DNA sequences in the maturaseK (MatK) chloroplast intergenic region and nuclear ribosomal DNA internal transcribed spacer (ITS) regions. The SNP markers developed in this study are useful for rapidly identifying specific C. tricuspidata ecotypes from different regions.

잣나무 엽록체 Simple Sequence Repeat 표지자 개발 및 특성 분석 (Development and Characterization of Chloroplast Simple Sequence Repeat markers in Pinus koraiensis)

  • 이제완;백승훈;홍경낙;홍용표;이석우;안지영
    • 한국산림과학회지
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    • 제104권4호
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    • pp.549-557
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    • 2015
  • 본 연구에서는 잣나무 엽록체 DNA의 전체 염기서열을 기반으로 엽록체 SSR(chloroplast simple sequence repeat) 영역을 특이적으로 증폭하는 primer를 개발하고 그 특성을 분석하였다. 잣나무 엽록체 DNA에서 총 30개의 SSR 영역을 탐색하였으며, 이들 영역을 증폭하기 위한 30개의 primer를 제작하였다. 모든 primer가 잣나무를 대상으로 PCR 증폭이 가능하였다. 근연종에 대한 primer의 종간 전환률은 잣나무와 동일한 아속(Subgenus Strobus)에 속하는 눈잣나무(100%)와 섬잣나무(97%)에서 가장 높게 나타났다. 반면 소나무아속(Subgenus Pinus)에 속하는 소나무와 구주소나무에서의 종간 전환률은 73%로 비교적 낮게 나타났다. 점봉산 잣나무 집단을 대상으로 조사한 결과 13개의 유전자좌에서 다형성이 관찰되었으며, 평균 haploid 다양도(H)는 0.512로 계산되었다. 다형적 유전자좌로부터 조합된 haplotype의 수(N)는 25개로 확인되었고, haplotype 다양도($H_e$)는 0.992로 매우 높게 나타났다. 집단내 독특하게 관찰되는 haplotype은 22개(88%)로 전체 28개체 중에서 22개체(79%)를 식별하였다. 본 연구에서 개발한 cpSSR primer는 높은 종간 전환률을 나타냄에 따라 소나무속의 근연종, 특히 잣나무아속 수종에 활용 가능성이 높고, 잣나무 유전변이 분석을 위한 충분한 다형성을 제공하는 유용한 표지자로 판단된다.

PCR-based markers developed by comparison of complete chloroplast genome sequences discriminate Solanum chacoense from other Solanum species

  • Kim, Soojung;Park, Tae-Ho
    • Journal of Plant Biotechnology
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    • 제46권2호
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    • pp.79-87
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    • 2019
  • One of wild diploid Solanum species, Solanum chacoense, is one of the excellent resources for potato breeding because it is resistant to several important pathogens, but the species is not sexually compatible with potato (S. tuberosum) causing the limitation of sexual hybridization between S. tuberosum and S. chacoense. Therefore, diverse traits regarding resistance from the species can be introgressed into potato via somatic hybridization. After cell fusion, the identification of fusion products is crucial with molecular markers. In this study, S. chacoense specific markers were developed by comparing the chloroplast genome (cpDNA) sequence of S. chacoense obtained by NGS (next-generation sequencing) technology with those of five other Solanum species. A full length of the cpDNA sequence is 155,532 bp and its structure is similar to other Solanum species. Phylogenetic analysis resulted that S. chacoense is most closely located with S. commersonii. Sequence alignment with cpDNA sequences of six other Solanum species identified two InDels and 37 SNPs specific sequences in S. chacoense. Based on these InDels and SNPs regions, four markers for distingushing S. chacoense from other Solanum species were developed. These results obtained in this research could help breeders select breeding lines and facilitate breeding using S. chacoense in potato breeding.

Molecular systematics of Poaceae based on eight chloroplast markers, emphasizing the phylogenetic positions of Korean taxa

  • LEE, Jung-Hoon;KIM, Ki-Joong;KIM, Bo-Yun;KIM, Young-Dong
    • 식물분류학회지
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    • 제52권3호
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    • pp.127-143
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    • 2022
  • This study was conducted to clarify the phylogenetic position and relationships of Korean Poaceae taxa. A total of 438 taxa including 155 accessions of Korean Poaceae (representing 92% and 72% of Korean Poaceous genera and species, respectively) were employed for phylogeny reconstruction. Sequence data of eight chloroplast DNA markers were used for molecular phylogenetic analyses. The resulted phylogeny was mostly concordant with previous phylogenetic hypotheses, especially in terms of subfamilial and tribal relationships. Several taxa-specific indels were detected in the molecular phylogeny, including a 45 bp deletion in rps3 (PACMAD [Panicoideae, Arundinoideae, Chloridoideae, Micrairoideae, Aristidoideae, Danthonioideae] clade), a 15 bp deletion in ndhF (Oryzeae + Phyllorachideae), a 6 bp deletion in trnLF (Poeae s.l.), and two (17 bp and 378 bp) deletions in atpF-H (Pooideae). The Korean Poaceae members were classified into 23 tribes, representing eight subfamilies. The subfamilial and tribal classifications of the Korean taxa were generally congruent with a recently published system, whereas some subtribes and genera were found to be non-monophyletic. The taxa included in the PACMAD clade (especially Andropogoneae) showed very weak and uncertain phylogenetic relationships, presumably to be due to evolutionary radiation and polyploidization. The reconstructed phylogeny can be utilized to update the taxonomic positions of the newly examined grass accessions.

Comparative Chloroplast Analysis and Phylogenetic Relationships Among Corylopsis Siebold & Zucc. (Hamamelidaceae)

  • Tae-Hee Kim;Sang-Chul Kim;Young-Ho Ha;Hiroaki Setoguchi;Hyuk-Jin Kim
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2022년도 추계학술대회
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    • pp.55-55
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    • 2022
  • Corylopsis Siebold & Zucc. (Hamamelidaceae) is widely used for horticultural plant and comprise ca. 25 species in East Asia (1 species in Korea; 4 species in Japan; 20 species in China). Previous revisions have gone from 7 to more than 30 species, causing confusion in the nursery industry and public gardens. Due to morphological similarity within Corylopsis, molecular research is needed to distinguish it. In this study, the chloroplast genome of C. gotoana and C. pauciflora distributed in Japan was completed by using NGS (Next-Generation Sequencing) technique. The genome size of C. gotoana and C. pauciflora were 159,434 bp (large single-copy (LSC): 88,164 bp; small single-copy (SSC): 18,702 bp; inverted repeat regions (IRs): 26,284 bp) and 159,363 bp (LSC: 88,097 bp; SSC: 18,700 bp; IRs: 26,283 bp), respectively. In addition, we investigated the repeats, SNPs, and indels, and that could be used as DNA markers. Phylogenetic analysis demonstrated that C. pauciflora was sister to C. gotoana and C. spicata. The genus Corylopsis is a monophyletic group and Loropetalum is closely related to Corylopsis. The results of our study will provide the basic data necessary for the analysis of the species identification markers and genetic diversity within the genus Corylopsis in the future.

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Expression of Lily Chloroplastic Cu,Zn Superoxide Dismutase Enhances Resistance to Erwinia carotovora in Potatoes

  • Kim, Mi-Sun;Kim, Hyun-Soon;Kim, Yoon-Sik;Baek, Kwang-Hyun;Moon, Jae-Sun;Choi, Do-Il;Joung, Hyouk;Jeon, Jae-Heung
    • The Plant Pathology Journal
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    • 제23권4호
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    • pp.300-307
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    • 2007
  • Previously, a chloroplast-localized Cu,Zn superoxide dismutase (chCu,ZnSOD) was isolated from lily and the sense- and antisense- sequences of the lily chCu,ZnSOD were used to transform potato plants. Two selected lines, the sense- and anti-sense strand of transgenic plants, were further characterized for resistance to Erwinia carotovora, which is a severe pathogen affecting potato plants. Only the sense-strand transgenic potato, which contained less $O_2^{.-}$ and more $H_2O_2$ than wild-type and antisense-strand transgenic plants, showed increased resistance to E. carotovora. Additional studies using $O_2^{.-}$ or $H_2O_2$ scavengers in wild-type, sense-strand, and antisense-strand transgenic plants suggest that resistance to E. carotovora is induced by reduced $O_2^{.-}$ and is not influenced by $H_2O_2$. To the best of our knowledge, this report is the first study suggesting that resistance to E. carotovora is enhanced by reduced $O_2^{.-}$, and not by increased amounts of $H_2O_2$.

Cloning and characterization of the psbA Gene from Panax ginseng(Characterization of the psbA Gene from P. ginseng)

  • Lee, Won-Kyu;Tae, Gun-Sik
    • Journal of Photoscience
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    • 제10권3호
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    • pp.245-249
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    • 2003
  • The psbA gene of photo system II was cloned and characterized from the P. ginseng chloroplast. The psbA gene is composed of 1,062 nucleotides. The overall amino acid sequence shows 99% and 98% identities to dicots and monocots of higher plants, respectively. Southern blot analysis revealed that a single copy of the psbA gene existed in the chloroplast genome. Northern blot analysis of the in vivo accumulation of the psbA transcript, after being grown under the different intensities (5%, 10%, 20%, and 100%) of daylight, indicated that the steady-state level of the psbA transcript was not significantly affected by light intensity.

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