• Title/Summary/Keyword: 이질3배체

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Proposal of Gene Transfer Scheme from Diploid (Avena strigosa) to Cultivar Hexaploid (A. sativa) in Oats (연맥의 2배체에서 6배체로의 유전자의 이전에 의한 연구)

  • Chae, Y.A.;Lee, J.I.
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.27 no.3
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    • pp.243-246
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    • 1982
  • A proposal of gene transfer scheme from diploid to hexaploid in oats was described. The main idea of this scheme are (1) use Avena magna which has two genomes partially in common with two genomes of the hexaploid Avena sativa or a common genome and the rest genomes partially commonn, and which lead to more regular pairing between them rather than AABB genome type to get 6x-amphiploid as a bridge between ploidy level. Cross between Avena strigosa and Avena magna is compatible and further give 42% seed set, (2) extract tetraploid derivatives which have in corporated desired genes from Avena strigasa to Avena magna, (3) Synthetic petaploid provide 2n=21 chromosome number in female gametes, which lead to complete pairing or nearly so in progenies with Avena sativa, (4) eventually homozygous lines will be produced by selfing the heterozygous (regarding to$A^{As}$ genome) at final step.

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Overcoming F1 Sterility of Intersectional OA Lily Hybrids by Somatic Chromosome Doubling and Production of Subsequent Progeny (체세포 염색체 배가법을 이용한 백합 OA 종간 잡종의 불임극복과 후대획득)

  • Chung, Mi-Young;Chung, Jae-Dong;Jee, Sun-Ok;Tuyl J. M. Van;Lim, Ki-Byung
    • Journal of Plant Biotechnology
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    • v.31 no.2
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    • pp.103-108
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    • 2004
  • This study was carried out to develop the efficient methods for the subsequent progeny of intersectional hybrid between Oriental and Asiatic lily hybrids. The pollen fertility and germination ability of 3 different allotetraploids (OAOA) after somatic chromosome doubling was ranged from 0 to 80 percent on artificial pollen germination medium. The number of BC$_1$ progeny using allotetraploid of F$_1$ OA-hybrid as male and female parent was different. The efficiency of BC$_1$ progeny production was increased when F$_1$OA-hybrids was used as male rather than as female parent. And in back crosses of F$_1$ OA-hybrids with the Asiatic and Oriental hybrids, Asiatic hybrids showed higher efficiency on BC$_1$ progeny production. The ploidy level between 2x or 4x Asiatic hybrid and allotetraploid F$_1$ OA-hybrid was determined and showed higher progeny production in 2x-4x crosses rather than 4x-4x.

Shorten heading date of M. sacchariflorus and M. sinensis and single crossing method to breed Miscanthus × giganteus cultivar for bioenergy production (바이오에너지용 이질3배체 억새(Miscanthus × giganteus) 품종육성을 위한 물억새(M. sacchariflorus)와 참억새(M. sinensis) 출수기 단축과 단교배 방법)

  • Moon, Youn-Ho;Kim, Kwang-Soo;Cha, Young-Lok;Lee, Ji-Eun;Kwon, Da-Eun;Kang, Yong-Ku
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2018.10a
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    • pp.51-51
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    • 2018
  • 본 연구는 바이오에너지용 이질3배체 억새(Miscanthus ${\times}$ giganteus) 품종육성 위한 교배재료인 물억새(M. sacchariflrous)와 참억새(M. sinensis) 출수기 단축과 단교배 방법을 개발하기 위해 수행하였다. 물억새와 참억새를 12시간 일장, 자연일장 조건에서 재배하여 출수기 단축에 미치는 단일효과를 조사하였다. 출수기에 일중 화분 발아시간, 절단한 화분친 이삭 활력 유지 및 격리방법 등 단교배 방법을 구명하여 이를 활용한 억새의 자가 수정 여부를 조사하고 시험교배를 실시하였다. 참억새와 물억새 모두 12시간 일장의 단일 조건에서 재배한 것이 자연일장에 재배한 것에 비해 출수 소요일수가 18~27일 정도 단축되었다. 화분 발아는 물억새에서 오전 6시에 왕성하였으나 시간이 경과할수록 발아율이 낮아져 오전 8시에는 10% 이하만 발아하였다. 참억새 화분은 오전 6시에는 발아하지 않았으나 오전 7시에 50% 이상이 발아하였고 8시에는 물억새와 같이 10% 이하였다. 화분친 참억새 이삭을 절단, 절화 보존액에 꽂아 백색 부직포로 격리하였을 때 절화 보존액량이 많을수록 활력 유지 일수가 증가하여 150 mL에서 물억새, 참억새 모두 7일간 개화 및 화분 비산을 지속하였다. 이 때 화분 발아율은 참억새와 물억새 모두 4일까지 40%를 유지하였다. 참억새와 물억새는 자가수정율이 ~ 2.5%로 낮고, 자연교잡 임실율은 출수기가 빠른 유전자원에서 54.4%까지 높았다. 상기 단교잡 방법을 적용한 물억새 4배체와 참억새 2배체간 14조합 시험교배로 437립의 종자를 얻었다. 본 연구의 억새 종간 단교배 방법은 우수한 종자친과 화분친으로 교배종자를 얻을 수 있어 향후 바이오매스 수량이 많으면서, 종자가 맺히지 않은 이질 3배체 품종육성에 활용할 수 있을 것으로 판단된다.

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Effects of Delayed Harvesting of Miscanthus spp. Risen in the Previous Year on its Current Year'S Yield and Growth Characteristics (전년도 생육 억새의 늦은 수확이 당년 생육특성과 수량에 미치는 영향)

  • Moon, Youn-Ho;Lee, Ji-Eun;Yu, Gyeong-Dan;Cha, Young-Lok;An, Gi Hong;Ahn, Joung Woong;Song, Yeon-Sang;Lee, Kyeong-Bo
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.61 no.3
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    • pp.215-221
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    • 2016
  • This study examined the effects of delayed harvest of Miscanthus on its biomass yield and growth characteristics. The trial was conducted at a 5-year-old demonstration field, using Miscanthus sacchariflorus cv. Geodae 1 and Miscanthus ${\times}$ giganteus. Harvesting was carried out using a mower, baler, and bale picker driven by a 5-ton tractor. Harvesting dates were the $1^{st}$, $10^{th}$, and $17^{th}$ of April, which respectively corresponded with the first, mid, and last emerging dates of new shoots. The sequential changes in stem number due to delayed harvesting were investigated on April $29^{th}$, May $27^{th}$, July $22^{nd}$, and October $30^{th}$, which corresponded to the juvenile, mid, luxuriant, and senescence stem stages, respectively. Soil penetration resistance, biomass yield, and growth characteristics were investigated on October $30^{th}$. There was no difference in soil penetration resistance at a depth of 10 cm, but it increased at a depth of 20 cm in proportion to the delayed harvesting time. The sequential change in stem number due to delayed harvesting was greater in M. sacchariflorus cv. Geodae 1 than in M. ${\times}$ giganteus. In M. sacchariflorus cv. Geodae 1, which was harvested on the last emerging date of new shoots, the stem number was $169/m^2$ in the mid stage but decreased to $70/m^2$ in the luxuriant stage. The diameter of newly developed rhizomes, stem height, and biomass yield decreased in the two Miscanthus species due to delayed harvesting. The ratio of Miscanthus headings, which is a critical characteristic for landscape use, also decreased due to delayed harvesting. Heading of M. sacchariflorus cv. Geodae 1 was not observed in plots harvested on the mid and last emerging dates of new shoots.

Single Crossing Condition of Miscanthus sacchariflorus and Miscanthus sinensis to Breed Miscanthus x giganteus Cultivar (이질3배체 억새(Miscanthus x giganteus) 품종육성을 위한 물억새(M. sacchariflorus)와 참억새(M. sinensis) 단교배 조건구명)

  • Moon, Youn-Ho;Kim, Kwang-Soo;Lee, Ji-Eun;Kwon, Da-Eun;Kang, Yong-Ku;Cha, Young-Lok
    • Korean Journal of Plant Resources
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    • v.32 no.5
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    • pp.509-518
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    • 2019
  • This study was conducted to investigate single crossing condition of M. sacchariflrous and M. sinensis for breeding of M. ${\times}$ giganteus cultivar. Compared with natural day length condition, cultivation in short day length condition shorten days to heading to 18~27 days in both species. Pollen germination ratio of were 75.8% at 6 o'clock in M. sacchariflorus and 51.9% at 7 o'clock in M. sinensis but decreased to below 10% at 8 o'clock in both species. When cut ears immerged in 150 mL of cut-flowers conservation solution and isolated with covering of white non-woven fabric, flowering and pollen dispersal were persisted for 7 days, and the ratio of pollen germination were above 40% for 4 days. The ratio of self-fertilization of both species were below 2.5%, but open pollenation ratio were above 50%. We obtained 437 seeds with experimental single cross of 14 combinations between tetraploid M. sacchariflorus and diploid M. siensis by application of developed single crossing methods. In the single cross, numbers of seed set were different by mother plants. Thus, the newly investigated single crossing condition will be used to breed M. ${\times}$ giganteous cultivar which is sterile and has superior characteristics of biomass yield.

Production of doubled haploid population derived from the microspore culture of rapeseed (Brassica napus L.) F1 generation and analysis of fatty acid composition (유채 잡종 1세대의 소포자 배양에 의한 배가반수체 집단 선발 및 지방산 조성 분석)

  • Lee, Ji Eun;Park, Ju Hyun;Kim, Kwang Soo;An, Da Hee;Cha, Young Lok
    • Journal of Plant Biotechnology
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    • v.49 no.1
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    • pp.74-81
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    • 2022
  • Brassica napus, an oil crop that produces rapeseed oil, is an allotetraploid (AACC, 2n = 38) produced by natural hybridization between B. rapa and B. oleracea. In this study, microspore was cultured using the F1 developed from a cross between 'EMS26' line with high oleic acid content and 'J8634-B-30' lines. The flower bud size showing the nuclear development at the late uninucleate and binucleate stage with high embryogenesis rate was 2.6 ~ 3.5 mm. Microspores were cultured using only this size and after then most microspore embryo developed into secondary embryos and then regeneration plants obtained from the developed multilobe. The analysis of the ploidy of the plants revealed that 66.7% and 27.8% of the total lines were tetraploids and octoploids, respectively. The sizes of stomatal cells in tetraploids, octoploids, and diploids were 25.5, 35.6, and 19.9 ㎛, respectively, indicating that ploidy level was positively correlated with cell size. Furthermore, 62 tetraploid doubled haploid (DH) lines were selected. The average oleic acid (C18:1) and linolenic acid (C18:3) concentrations of DH were 72.3% and 6.2%, respectively. Oleic acid and linolenic acid concentrations exceeded the two parental values in 5 and 14 DH lines, respectively, suggesting that these two fatty acids had transgressive segregation. Therefore, the DH population can be utilized for the biosynthesis of unsaturated fatty acids in rapeseed and related genes. It can also be used as a breeding material for varieties with high oleic acid concentrations.

Effents of Plant Explant Position of Miscanthus and Medium Supplements on Callus Induction (억새(Miscanthus spp.) 식물재료와 배지 첨가물질이 캘러스 형성에 미치는 영향)

  • Kim, Kwang-Soo;Kwon, Da-Eun;Lee, Ji-Eun;Cha, Young-Lok;Moon, Youn-Ho;Song, Yeon-Sang;Kang, Yong-Ku
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2018.04a
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    • pp.54-54
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    • 2018
  • 억새(Miscanthus spp.)는 우리나라 등 동아시아가 원산이며 바이오매스량이 많아 바이오에너지 원료작물로서 잠재성이 크기 때문에 2세대 바이오에탄올 생산 원료로 주목을 받고 있고, 축산깔개 및 토양개량제 등으로도 이용되고 있다. 미국과 유럽 등에서는 생태계 교란 방지를 위해 4배체 물억새(M. sacchariflorus)와 2배체 참억새(M. sinensis)의 종간 교잡 이질 3배체인 불임성 억새(M. x giganteous)을 주로 재배하고 있으나, 단일 유전형의 품종으로 병해충과 자연재해에 취약하여 다양한 억새 품종의 개발이 시급한 실정이다. 본 연구는 억새를 재료로 하여 반수체 및 배수체 확보를 통한 배수성 별 특성 평가와 함께 기내배양을 통해 탈분화 및 재분화 시스템을 구축하여 억새의 육종 효율을 높이기 위해서 실시하였다. 억새 종자로부터 캘러스의 유도는 MS배지와 N6배지에 1mg/L 2.4-D를 첨가하였을 때 비배발생 캘러스(nonembryogenic callus)가 유도되었고, N6배지에 3~5 mg/L 2,4-D를 첨가하였을 때 배발생 캘러스(embryogenic callus)가 발생하였다. MS배지보다는 N6배지에서 캘러스 유도율이 높았으며, 식물생장조절제로 2,4-D와 BA 조합처리 보다 2,4-D 단용 처리하였을 때 캘러스 유도율이 더 높았다. 억새 종에 따른 캘러스 유도율은 물억새가 25.2~49.3%, 참억새는 30.3~52.0%였고 거대억새는 62.6~81.1%로 나타났다. 억새 신초 및 줄기로부터의 캘러스 유도율은 물억새가 4.4~17.2%, 참억새는 1.8~7.7%, 거대억새는 15.3~19.9%로 나타나 종자에 비해 매우 낮았다. 미성숙화기로부터의 캘러스 유도는 억새 종에 따른 차이가 없었으며, 3mg/L 2,4-D 첨가 배지에서 캘러스 유도율이 비교적 낮았고(60~80%), 1mg/L와 5mg/L의 2,4-D가 첨가된 배지에서 캘러스 유도율이 높게(90~95%) 나타났다.

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Current status of sweetpotato genomics research (고구마 유전체 연구현황 및 전망)

  • Yoon, Ung-Han;Jeong, Jae Cheol;Kwak, Sang-Soo;Yang, Jung-Wook;Kim, Tae-Ho;Lee, Hyeong-Un;Nam, Sang-Sik;Hahn, Jang-Ho
    • Journal of Plant Biotechnology
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    • v.42 no.3
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    • pp.161-167
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    • 2015
  • Sweetpotato [Ipomoea batatas (L.) Lam] grows well in harsh environmental conditions, and is cultivated as one of the top seven food crops in the world. Recently, sweetpotato is drawing interest from people as a healthy food because it is high in dietary fiber, vitamins, carotenoids and overall nutrition value. However, few studies have been conducted on sweetpotato genome sequencing in spite of its importance. This review is aimed at increasing the efficiency of sweetpotato genome sequencing research as well as establishing a base for gene utilization in order to control useful traits. Recently, animal and plant genome sequencing projects increased significantly. However, sweetpotato genome sequencing has not been performed due to polyploidy and heterogeneity problems in its genome. Meanwhile research on its transcriptome has been conducted actively. Recently, a draft of the diploid sweetpotato genome was reported in 2015 by Japanese researchers. In addition, the Korea-China-Japan Trilateral Research Association of Sweetpotato (TRAS) has conducted research on gene map construction and genome sequencing of the hexaploid sweetpotato Xushu 18 since 2014. The Bill & Melinda Gates Foundation launched the 'sweetpotato genomic sequencing to develop genomic tools for Sub-Sahara Africa breeding program'. The chloroplast genome sequence acquired during sweetpotato genome sequencing is used in evolutionary analyses. In this review, the trend of research in the sweetpotato genome sequencing was analyzed. Research trend analysis like this will provide researchers working toward sweetpotato productivity and nutrient improvement with information on the status of sweetpotato genome research. This will contribute to solving world food, energy and environmental problems.

Current Research Trends of Wheat Transformation and Biotechnology (밀 형질전환과 이를 활용한 최신 연구동향)

  • Sim, Jae-Ryeong;Kim, Sewon;Lee, Su-Bin;Kim, Beom-Gi;Lee, Saet Buyl;Lee, Jong-Yeol
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.65 no.4
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    • pp.386-398
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    • 2020
  • Wheat is one of the world's top three crops and is an important staple crop, accounting for 20% of the nutrient calories consumed by the world's population. However, due to its complex heterogeneous hexaploid chromosomes and vast genome of approximately 16 Gb, compared to those of other crops, molecular biology and biotechnology studies on wheat are lacking. In recent years, wheat genome analysis has been performed using the latest next-generation sequencing technology so that useful genes can be easily obtained, and wheat biotechnology research is accelerating in various fields. In this review, wheat transformation, an indispensable technique for developing new functional biotech wheat by revealing the function of wheat genes, is described in detail. In addition, the latest research results for overcoming plant diseases, abiotic stresses, and wheat-related diseases that are difficult to solve by classical breeding through wheat transformation and biotechnology are described.