• 제목/요약/키워드: plastid marker

검색결과 7건 처리시간 0.014초

Improved plastid transformation efficiency in Scoparia dulcis L.

  • Kota, Srinivas;Hao, Qiang;Narra, Muralikrishna;Anumula, Vaishnavi;Rao, A.V;Hu, Zanmin;Abbagani, Sadanandam
    • Journal of Plant Biotechnology
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    • 제46권4호
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    • pp.323-330
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    • 2019
  • The high expression level of industrial and metabolically important proteins in plants can be achieved by plastid transformation. The CaIA vector, a Capsicum-specific vector harboring aadA (spectinomycin resistance), is a selectable marker controlled by the PsbA promoter, and the terminator is flanked by the trnA and trnI regions of the inverted repeat (IR) region of the plastid. The CaIA vector can introduce foreign genes into the IR region of the plastid genome. The biolistic method was used for chloroplast transformation in Scoparia dulcis with leaf explants followed by antibiotic selection on regeneration medium. Transplastomes were successfully screened, and the transformation efficiency of 3 transgenic lines from 25 bombarded leaf explants was determined. Transplastomic lines were evaluated by PCR and Southern blotting for the confirmation of aadA insertion and its integration into the chloroplast genome. Seeds collected from transplastomes were analyzed on spectinomycin medium with wild types to determine genetic stability. The increased chloroplast transformation efficiency (3 transplastomic lines from 25 bombarded explants) would be useful for expressing therapeutically and industrially important genes in Scoparia dulcis L.

Phylogeography of the Lessonia variegata species complex (Phaeophyceae, Laminariales) in New Zealand

  • Zuccarello, Giuseppe C.;Martin, Peter
    • ALGAE
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    • 제31권2호
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    • pp.91-103
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    • 2016
  • A goal of phylogeography is to relate phylogenetic patterns to potential historic and contemporary geographic isolating events. Genetic breaks found in phylogeographic studies may denote boundaries between more generally applicable biogeographic regions. We investigated the distribution of Lessonia variegata, an important habitat forming alga, found on most rocky shores around New Zealand’s main islands, plus related species from surrounding waters. L. variegata has been shown to consist of four distinct cryptic species. Our aim was to compare the distribution of L. variegata with proposed bioregions; and to develop phylogeographic hypotheses to explain its present day distribution. Both a mitochondrial (atp8-sp) and plastid (RuBisCo spacer) marker, with different mutation rates, were used to gain information of the phylogenetic history of Lessonia. The data revealed high phylogeographic structuring and reciprocal endemism for all L. variegata cryptic species. One species (L. variegata / N) is confined to the northern part of the North Island of New Zealand; L. variegata / W is found at the southeast of the North Island and the northern South Island; L. variegata / K is endemic to the northeast South Island; and L. variegata / S is restricted to the southern part of the South Island. No overlapping areas of L. variegata species distribution were found. The data showed that genetic breaks in Lessonia do mostly correlate to bioregions, and highlight the importance of Cape Campbell at the northeast of the South Island and East Cape in the North Island, well known phylogeographic breaks, as a barrier between adjacent species.

Tissue Culture Studies of Anthranilate Synthase the Tryptophan Biosynthetic Control Enzyme

  • Widholm, Jack.M.
    • Journal of Plant Biotechnology
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    • 제2권2호
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    • pp.55-60
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    • 2000
  • Experiments initiated 30 years ago to obtain selectable markers have led to a series of studies of Trp biosynthesis and anthranilate synthase (AS) the control enzyme using largely plant tissue cultures since they have experimental properties that can be readily exploited. Enzymological and compound feeding studies provided evidence that AS is the control point in the Trp biosynthesis branch and that altering the AS feedback control by the selection of mutants resistant to the Trp analog 5-methyl-tryptophan (5MT) can lead to the overproduction of this important amino acid. Plants regenerated from these Trp overproducing lines of most species also had high free Trp levels but Nicotiana tabaum (tobacco) plants expressed the feedback altered AS only in cultured cells and not in the regenerated plants. further tests by transient and stable expression of the cloned promoter for the naturally occurring tobacco feedback-insensitive AS, denoted ASA2, confirmed the tissue culture specific nature of the expression control. The 5MT caused by the expression of a feedback-insensitive AS from tobacco has been used to select protoplast fusion hybrids with several species since the resistance is expressed dominantly. Recently the ASA2 gene has been used successfully as a selectable marker to select transformed Astragalus sinicus and Glycine max hairy roots induced by Agrobactetium rhizogenes. These results show that the ASA2y-subunit can interact with the y-subunit of another species to form active feedback-insensitive enzyme that may be useful for selecting transformed cells. Plastid DNA transformation of tobacco has also effectively expressed ASA2 in the compartment in which Trp biosynthesis is localized in the cell.

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Insights into evolution and speciation in the red alga Bostrychia: 15 years of research

  • Zuccarello, Giuseppe C.;West, John A.
    • ALGAE
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    • 제26권1호
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    • pp.21-32
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    • 2011
  • Studies of the red algal genus Bostrychia over the last 15 years have made it a model system for many evolutionary processes within red algal species. The combination of newly developed, or first employed methods, in red algal species studies has made Bostrychia a pioneer genus in intraspecific studies. Bostrychia was the first genus in which a mitochondrial marker was used for intraspecific red algal phylogeny, and the first for which a 3-genome phylogeny was undertaken. The genus was the first red alga used to genetically show maternal plastid and mitochondria inheritance, and also to show correlation between cryptic species (genetically divergent intraspecific lineages) and reproductive incompatibility. The chemotaxonomic use, and physiological function of osmolytes, has also been extensively studied in Bostrychia. Our continuous studies of Bostrychia also highlight important aspects in algal species studies. Our worldwide sampling, and resampling in certain areas, show that intensive sampling is needed to accurately assess the genetic diversity and therefore phylogeographic history of algal species, with increased sampling altering evolutionary hypotheses. Our studies have also shown that long-term morphological character stability (stasis) and character convergence can only be correctly assessed with wide geographic sampling of morphological species. While reproductive incompatibility of divergent lineages supports the biological species nature of these lineages, reproductive incompatibility is also seen between isolates with little genetic divergence. It seems that reproductive incompatibility may evolve quickly in red algae and the unique early stages of fertilization (e.g., gametes covered by walls, active movement of spermatium nuclei to the distant egg nucleus), also well investigated in Bostrychia,. may be key to our understanding of this process.

Taxonomic revision of the genus Herposiphonia (Rhodomelaceae, Rhodophyta) from Korea, with the description of three new species

  • Koh, Young Ho;Kim, Myung Sook
    • ALGAE
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    • 제33권1호
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    • pp.69-84
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    • 2018
  • We examined the species diversity of Herposiphonia on Korean coasts, based on a combination of morphology and molecular analyses of the mitochondrial COI-5P DNA barcode marker and plastid rbcL gene. We report the presence of eight species including three novel species: H. donghaensis sp. nov., H. jejuinsula sp. nov., H. sparsa sp. nov., H. caespitosa, H. fissidentoides, H. insidiosa, H. parca, and H. subdisticha. Specimens were separated into eight clades in both the COI-5P and rbcL gene analyses, with 1.3-19.6 and 6.6-15% interspecific sequence divergence, respectively. These eight species are also distinguishable by several morphological characteristics such as: branching pattern (d/i pattern in H. donghaensis sp. nov. and H. sparsa sp. nov.; d/d/d/i pattern in others), shape of determinate branch (ligulate in H. fissidentoides; terete in others), number of vegetative trichoblasts (1-2 in H. insidiosa and H. sparsa sp. nov.; 3-4 in H. caespitosa; absent in others), and number of segments and pericentral cells in determinate branches. About three novel species revealed by our analyses, H. donghaensis sp. nov. is newly discovered, and H. jejuinsula sp. nov. and H. sparsa sp. nov. were previously reported in Korea as H. nuda and H. secunda, respectively. Our results show that DNA barcoding and rbcL analyses are useful for delimiting species boundaries and discovering cryptic species diversity in the genus Herposiphonia.

Solanum acaule 색소체 유전자형 선발을 위한 특이적 분자마커 개발 (PCR-based markers to select plastid genotypes of Solanum acaule)

  • 박태호
    • Journal of Plant Biotechnology
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    • 제49권3호
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    • pp.178-186
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    • 2022
  • 볼리비아 유래의 4배체 감자 야생종 중 하나인 Solanum acaule는 서리, 감자역병, 감자바이러스X, 감자바이러스Y, 감자잎말림바이러스, 감자걀쭉병, 선충 등에 대한 저항성과 같이 감자의 신품종 육성에 매우 유용한 형질들을 가지고 있어 감자 육종에 많이 이용되고 있다. 그러나 이러한 유용 형질들을 재배종 감자에 전통적인 교잡에 의해 도입하는 것은 야생종과 재배종 간의 서로 다른 EBN에 따라 매우 제한적이다. 따라서, 이러한 생리적 장벽을 극복하기 위해서는 체세포융합을 이용할 수 있는데, 육종에 활용할 적절한 체세포융합체를 선발하기 위해서는 적절한 분자마커의 개발이 필수적이다. 이에, 본 연구에서는 앞서 차세대 유전체 기술에 의해 완성되어 보고된 S. acaule의 엽록체 전장 유전체 정보를 기반으로 이를 다른 8개의 Solanum 종의 엽록체 전장 유전체 정보와 비교를 통해 S. acaule 특이적인 분자마커를 개발하였다. S. acaule의 엽록체 전장 유전체 총 길이는 155,570 bp였으며, 총 158개의 유전자로 구성되어 있었다. 전체적인 구조와 유전자의 구성은 다른 Solanum 종들과 매우 유사하였고 12종의 다른 가지과에 속해 있는 종과의 계통수 분석에서 다른 Solanum 종과 매우 가까운 유연관계를 가지는 것을 확인하였다. S. acaule의 엽록체 전장 유전체와 다른 7개 Solanum 종의 엽록체 전장 유전체 다중 정렬의 결과로 각각 4개와 79개의 S. acaule 특이적인 InDel 및 SNP 영역이 확인되었으며, 이 정보를 이용하여 각각 1개씩의 InDel 및 SNP 영역 유래의 PCR 기반의 분자마커를 개발하였다. 본 연구의 결과는 S. acaule의 진화적 측면에서의 연구와 S. acaule를 이용한 감자품종 육성 연구에 기여를 할 수 있을 것이다.

Solanum hjertingii 색소체 유전자형 선발을 위한 PCR 기반 분자마커 개발 (Development of PCR-based markers for selecting plastid genotypes of Solanum hjertingii)

  • 박태호
    • Journal of Plant Biotechnology
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    • 제50권
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    • pp.34-44
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    • 2023
  • 멕시코 유래의 4배체 감자 근연야생종 중 하나인 Solanum hjertingii는 괴경에서 발생하는 흑변현상에 강한 것으로 알려져 감자의 신품종 육성에 유용한 형질로 이용이 가능하다. 이러한 저항성은 생리적 장해인 효소적 갈변과 흑반을 감소시킬 수 있다. 하지만, S. hjertingii와 S. tuberosum은 생리적 장벽에 기인한 교잡종 생산이 제한적인 관계로 직접적인 교배육종보다는 체세포잡종을 육성하는 방법을 활용할 수 있다. 체세포잡종 계통이 육성이 되면 분자표지를 이용한 적절한 잡종 계통을 선발하는 것이 필요하여, 본 연구에서는 S. hjertingii의 전체 엽록체 유전체 정보를 이용하여 S. hjertingii 특이적인 PCR 기반의 분자마커를 개발하였다. S. hjertingii의 전체 엽록체 유전체는 155,545 bp였으며, 다른 Solanum 종들과 구조 및 유전자 구성이 매우 유사하였고, 가지과의 다른 15개의 종들과 계통수 분석에서 근연야생종 S. demissum, S. hougasii, S. stoloniferum과 매우 가까운 유연관계를 나타냈다. 또한, S. hjertingii의 전체 엽록체 유전체와 8개의 다른 Solanum 종의 전체 엽록체 유전체의 다중 정렬 결과로 S. hjertingii 특이적인 1개의 InDel 영역과 7개의 SNP 영역을 확인하였고, 이를 이용하여 1개의 InDel 및 4개의 SNP 기반 PCR마커를 개발하였다. 본 연구의 결과는 S. hjertingii의 진화적 측면에서의 연구와 S. hjertingii를 이용한 감자의 신품종 육성 연구에 기여를 할 수 있을 것이다.