• 제목/요약/키워드: resistance breeding

검색결과 691건 처리시간 0.024초

Identification of a Rice Gene (Bph 1) Conferring Resistance to Brown Planthopper (Nilaparvata lugens Stal) Using STS Markers

  • Kim, Suk-Man;Sohn, Jae-Keun
    • Molecules and Cells
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    • 제20권1호
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    • pp.30-34
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    • 2005
  • This study was carried out to identify a high-resolution marker for a gene conferring resistance to brown planthopper (BPH) biotype 1, using japonica type resistant lines. Bulked segregant analyses were conducted using 520 RAPD primers to identify RAPD fragments linked to the BPH resistance gene. Eleven RAPDs were shown to be polymorphic amplicons between resistant and susceptible progeny. One of these primers, OPE 18, which amplified a 923 bp band tightly linked to resistance, was converted into a sequence-tagged-site (STS) marker. The STS marker, BpE18-3, was easily detectable as a dominant band with tight linkage (3.9cM) to Bph1. It promises to be useful as a marker for assisted selection of resistant progeny in backcross breeding programs to introgress the resistance gene into elite japonica cultivars.

연초 (Nicotiana tabacum L.) 감자바이러스Y 저항성 품종육성 I. 황색종 품종 McNair30의 감자바이러스Y 저항성유전 (BREEDING TOBACCO (NICOTIANA TABACUM L.) RESISTANT TO POTATO VIRUS Y IN KOREA I. INHERITANCE OF RESISTANCE TO POTATO VIRUS Y OF FLUE-CURED TOBACCO VARIETY MCNAIR 30)

  • 정윤화;정석훈;금완수;최상주;이승철
    • 한국연초학회지
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    • 제6권2호
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    • pp.185-189
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    • 1984
  • To classify the inheritance of resistance to potato virus Y, crosses between susceptible flue-cured tobacco variety NC 95 and resistant variety McNair 30 were conducted. The parents, $F_1$ plants, $F_2$ populations, and haploid plants derived from anthers of $F_1$ plants were screened for a resistance of two potato virus Y strains (PVY-VB and PVY-VN) isolated in Korea. The Chi-square values for the $F_3$ populations and haploids of $F_1$ fitted 1 :3 and 1 :1 ratios of resistant to susceptible for two strains, respectively. Therefore, it was found that the resistance of McNair 30 for the potato virus Y was controlled by a single recessive gene. Moreover the resistance to two strains screened was inherited dependently.

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Greenhouse Method for Assessing Spot Blotch Resistance in Barley

  • Arabi, Mohammad Imad Eddin;Jawhar, Mohammad
    • The Plant Pathology Journal
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    • 제26권4호
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    • pp.421-423
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    • 2010
  • New sources of barley (Hordeum vulgare L.) resistant to spot blotch, caused by Cochliobolus sativus, are needed to provide effective resistance because of the rapid change pathotype patterns of C. sativus in fields. The purposes of our study were to develop a method to screen barley for resistance to spot blotch disease and then use this methodology to screen barley genotypes for resistance to the major virulent pathotype Pt4 in barley populations in Syria. A transparent tape method, in which a conidial suspension of C. sativus was dropped onto transparent tape and placed, treated-side down, on the second leaf surface of barley plants. Disease symptoms of fungus were easily detected on the leaves covered by the transparent tape after 48h of inoculation. The transparent tape method was repeatable and the disease scores obtained were correlated (r = 0.91, P = 0.001) with those obtained by the seedling assay. This method may be beneficial in various plant pathology breeding programs.

고추 재래품종에 더뎅이병(반점세균병) 저항성을 도입하기 위한 여교잡 이후 세대에서의 선발 (Selection in the Generations after Backcrosses of the Crosses for Incorporation of Resistance to Bacterial Spot into Korean Local Cultivars of Pepper)

  • 김병수;김점순;임양숙
    • 한국식물병리학회지
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    • 제12권4호
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    • pp.437-444
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    • 1996
  • 경북지역 재래종에 더뎅이병 저항성을 도입하기 위하여 작성한 칼미초$\times$PI271322, 수비초$\times$PI271322 조합의 BC\ulcornerF\ulcorner와 BC\ulcornerF\ulcorner세대로부터 BC\ulcornerF\ulcorner와 BC\ulcornerF\ulcorner세대까지 선발과 자식을 실시하였다. 이 결과 각 재래종의 원예적 특성에 PI271322에 들어있는 과민반응형 저항성 유전자 Bs\ulcorner와 비과민형의 일반저항성을 함께 가지는 계통이 육성되었다.

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Genomic Tools and Their Implications for Vegetable Breeding

  • Phan, Ngan Thi;Sim, Sung-Chur
    • 원예과학기술지
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    • 제35권2호
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    • pp.149-164
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    • 2017
  • Next generation sequencing (NGS) technologies have led to the rapid accumulation of genome sequences through whole-genome sequencing and re-sequencing of crop species. Genomic resources provide the opportunity for a new revolution in plant breeding by facilitating the dissection of complex traits. Among vegetable crops, reference genomes have been sequenced and assembled for several species in the Solanaceae and Cucurbitaceae families, including tomato, pepper, cucumber, watermelon, and melon. These reference genomes have been leveraged for re-sequencing of diverse germplasm collections to explore genome-wide sequence variations, especially single nucleotide polymorphisms (SNPs). The use of genome-wide SNPs and high-throughput genotyping methods has led to the development of new strategies for dissecting complex quantitative traits, such as genome-wide association study (GWAS). In addition, the use of multi-parent populations, including nested association mapping (NAM) and multiparent advanced generation intercross (MAGIC) populations, has helped increase the accuracy of quantitative trait loci (QTL) detection. Consequently, a number of QTL have been discovered for agronomically important traits, such as disease resistance and fruit traits, with high mapping resolution. The molecular markers for these QTL represent a useful resource for enhancing selection efficiency via marker-assisted selection (MAS) in vegetable breeding programs. In this review, we discuss current genomic resources and marker-trait association analysis to facilitate genome-assisted breeding in vegetable species in the Solanaceae and Cucurbitaceae families.

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.

흰가루병에 강하고 다수성인 장미 적색 품종 '해도지' 육성 (Breeding of New Rose Cultivar 'Haedoji' with Red Color Flower, Resistance to the Powderly Mildew and High Productivity)

  • 기광연;황인택;조경철;나택상;김정근;이야성;신해룡;최경주;이재신;한태호
    • 한국육종학회지
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    • 제40권2호
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    • pp.164-167
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    • 2008
  • 절화장미 '해도지' 품종은 전라남도농업기술원에서 육성한 적색 스탠다드 신품종으로 절화수명이 우수한 'Vital'을 모본으로, 화색이 선명한 적색 'Cardinal'를 부본으로 하여 2003년에 인공교배 하였다. 화형과 화색이 예쁘고 꽃잎수가 적합한 2계통을 2004년 1차 선발 하였다. 2005년부터 2007년까지 특성 및 생산력검정을 실시하여 적색이며 묘 양성이 쉽고 줄기가 곧으며 비교적 흰가루병에 강한 특성을 가지고 있으며 수량성도 우수한 '해도지' 품종을 육성하였다. 육성된 품종은 스탠다드 중형계 품종으로 꽃크기가 9.2 cm, 절화장이 62 cm, 절화수명이 9.5일로 줄기가 곧고 흰가루병에 강하고 절화수명이 우수하며 절화수량은 3년 동안의 검정결과 167본/$m^2$/년으로 대비품종 '티아모' (164본/$m^2$/년)에 비해 2% 증가하였다.

"금오3호"의 벼 잎도열병 저항성 특성 및 저항성 연관 마커 탐색 (Disease Reaction of a Japonica Rice, Keumo3, and Detection of a Linked DNA Marker to Leaf Blast Resistance)

  • 이종희;곽도연;박동수;노재환;강종래;김춘송;전명기;여운상;이기환;신문식;오병근;황흥구
    • 한국육종학회지
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    • 제40권4호
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    • pp.408-413
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    • 2008
  • 벼 조생종 품종 금오3호의 잎도열병 저항성 및 도열병 저항성 연관마커 zt56591과의 관계를 분석한 결과, '03~'07년까지 5년간 전국 14개 지역 잎도열병 밭못자리 검정의 평균 발병정도는 금오3호가 1.6으로 진부벼 3.6, 금오벼 5.3 및 일품벼 6.4에 비해 낮았다. 저항성(0-3) 12개소, 중도 저항성(4-6) 2개소이며, 감수성(7-9)을 보인 곳은 없었다. 도열병 내구저항성에서 병반 면적율이 0.1~5.0%사이로 지속적인 저항성을 보였으며, 29개 균주에 저항성반응을 보였고, 1개 균주에 대해서는 이병성 반응을 보였다. 도열병 저항성과 연관된 DNA marker를 이용하여 분석한 결과 '금오3호'는 도열병 광범위 저항성 유전자로 알려진 Pizt와 연관된 마커 zt56591에 저항성 밴드 패턴을 나타내었다. 또한, 아끼다고마찌/금오3호 RIL집단에서 Pizt 연관마커와 잎도열병 저항성과의 관계를 분석한 결과 조환가가 1.1%로 밀접히 연관되어 있어 '금오3호'와 교배된 후대집단에서 zt56591마커를 이용한 MAS선발도 가능할 것으로 판단되었다.

Construction of an Industrial Brewing Yeast Strain to Manufacture Beer with Low Caloric Content and Improved Flavor

  • Wang, Jin-Jing;Wang, Zhao-Yue;Liu, Xi-Feng;Guo, Xue-Na;He, Xiu-Ping;Wense, Pierre Christian;Zhang, Bo-Run
    • Journal of Microbiology and Biotechnology
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    • 제20권4호
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    • pp.767-774
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    • 2010
  • In this study, the problems of high caloric content, increased maturation time, and off-flavors in commercial beer manufacture arising from residual sugar, diacetyl, and acetaldehyde levels were addressed. A recombinant industrial brewing yeast strain (TQ1) was generated from T1 [Lipomyces starkeyi dextranase gene (LSD1) introduced, ${\alpha}$-acetohydroxyacid synthase gene (ILV2) disrupted] by introducing Saccharomyces cerevisiae glucoamylase (SGA1) and a strong promoter (PGK1), while disrupting the gene coding alcohol dehydrogenase (ADH2). The highest glucoamylase activity for TQ1 was 93.26 U/ml compared with host strain T1 (12.36 U/ml) and wild-type industrial yeast strain YSF5 (10.39 U/ml), respectively. European Brewery Convention (EBC) tube fermentation tests comparing the fermentation broths of TQ1 with T1 and YSF5 showed that the real extracts were reduced by 15.79% and 22.47%; the main residual maltotriose concentrations were reduced by 13.75% and 18.82%; the caloric contents were reduced by 27.18 and 35.39 calories per 12 oz. Owing to the disruption of the ADH2 gene in TQ1, the off-flavor acetaldehyde concentrations in the fermentation broth were 9.43% and 13.28%, respectively, lower than that of T1 and YSF5. No heterologous DNA sequences or drug resistance genes were introduced into TQ1. Hence, the gene manipulations in this work properly solved the addressed problems in commercial beer manufacture.

작물 육종에서 분자유전자 지도의 이용 (Genome Mapping Technology And Its Application In Plant Breeding)

  • 은무영
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1995년도 제9회 식물생명공학 심포지움 식물육종과 분자생물학의 만남 The 9th Plant Biotechnology Symposium -Breeding and Molecular Biology-
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    • pp.57-86
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    • 1995
  • Molecular mapping of plant genomes has progressed rapidly since Bostein et al.(1980) introduced the idea of constructing linkage maps of human genome based on restriction fragment length polymorphism (RFLP) markers. In recent years, the development of protein and DNA markers has stimulated interest for the new approaches to plant improvement. While classical maps based on morphological mutant markers have provided important insights into the plant genetics and cytology, the molecular maps based on molecular markers have a number of inherent advatages over classical genetic maps for the applications in genetic studies and/or breeding schemes. Isozymes and DNA markers are numerous, discrete, non-deleterious, codominant, and almost entirely free of environmental and epistatic interactions. For these reasons, they are widely used in constructing detailed linkage maps in a number of plant species. Plant breeders improve crops by selecting plants with desirable phenotypes. However a plant's phenotyes is often under genetic control, positioning at different "quantitative trait loci" (QTLs) together with environmental effects. Molecular maps provide a possible way to determine the effect of the individual gene that combines to produce a quantitative trait because the segregation of a large number of markers can be followed in a single genetic cross. Using market-assisted selection, plants that contain several favorable genes for the trait and do not contain unfavourable segments can be obtained during early breeding processes. Providing molecular maps are available, valuable data relevant to the taxonomic relationships and chromosome evolution can be accumulated by comparative mapping and also the structural relationships between linkage map and physical map can be identified by cDNA sequencing. After constructing high density maps, it will be possible to clone genes, whose products are unknown, such as semidwarf and disease resistance genes. However, much attention has to be paid to level-up the basic knowledge of genetics, physiology, biochemistry, plant pathology, entomology, microbiology, and so on. It must also be kept in mind that scientists in various fields will have to make another take off by intensive cooperation together for early integration and utilization of these newly emerging high-techs in practical breeding. breeding.

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