• Title/Summary/Keyword: Diploid gametes

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Production of Tetraploid Embryos with Induction of Diploid Gametes in Chicken (닭에서 2배수성 배우자 생성에 의한 4배수성 생명체의 생산)

  • 여정수;정경진;정익정;정선부
    • Korean Journal of Poultry Science
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    • v.17 no.1
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    • pp.1-6
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    • 1990
  • For the production of tetraploid embryos in chicken through induction of diploid gametes. The experiment was found results as follows; 1. Induction of diploid sperm was observed 11% from embryos of normal females and males at 12 days after injection of 0.37mg per 2kg body weight for three days. 2. 3 among 109 embryos from crosses of diploid gametes induced by TEM were found as tetraploid. 3. Genetic structures of tetraploid embryos were indentified as normal 4 pairs chromosomes without certain variation.

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Significance of Unreduced ( 2n ) Gametes in Plant Breeding (식물육종에 있어서 비환원 ( 2n ) 배우자의 중요성)

  • Rim, Yong-Woo
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.17 no.1
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    • pp.1-10
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    • 1997
  • Unreduced (2n) gametes are meiotic products (pollen or egg) having a sporophytic (somatic) chromosome number, resulting from abnormalities during either microsporogenesis or megasporogenesis. They occur naturally at a low frequency in many plant species. Unreduced (2n) gametes in plants can be identified for four possible ways as follow i) pollen size and/or shape differences between haploid (n) and diploid (2n) pollen, ii) ploidy analysis (chromosome number) of progeny or meiotic analysis (presence of dyads andlor triads at the microspore stage), iii) progeny performance and fertility and iv) dosage of isozyme and DNA markers. Unreduced (2n) gametes can be an effective breeding tool in synthesizing new cultivars, providing a unique method to maximizing heterozygosity, i.e., transferring a large proportion of the non-additive genetic effects (intra- and inter- locus interactions) h m parent to offspring and can also be used to overcome infertility of interploidy crosses. Sexual polyploidization through 2n gametes has been a major route to the formation of naturally occurring polyploids. The three mechanisms of 2n pollen formation in potato have been discovered as follow: i) parallel spindles (ps) or tripolar spindles (ts), ii) premature cytokinesis (pc-I, pc-2) and iii) synaptic mutants (sy-2, sy-3, sy-4). Genetic analysis indicated that the mechanisms of 2n gamete formation were controlled by single recessive gene in potato, alfalfa, red clover, etc., and by two recessive genes in wheat. The use of 2n gametes which can efficiently transfer germplasm fiom wild relatives to cultivated species, especially fiom diploid to tetraploid could make a contribution to the improvement of germplasm base in breeding programs.

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Studies on 2n gametophyte Producing Diploid Potato Clones (2n 배우자 형성 2배체 감자의 육성연구)

  • 김혜영
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.30 no.4
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    • pp.455-459
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    • 1985
  • This study is to select good diploid clones and develope them into FDR clones. Seventeen diploid clones were selected by tuber plants from the imported diploid potato seeds and from the progenies of the crosses between them. The characteristics of the selected clones were reported. Fifteen clones were crossed among them or open pollinated or bulk pollinated, and 18 selections were made from the seed progenies of these pollinations. Male and female unreduced gametes were searched by crossing 2x, 4x and by microtechnique. Only one clone, D6-21 was found to produce unreduced male gamete with the rate of 27-30% by FDR. Unreduced female gamete has not been found among these diploids.

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Chromosome number of myoga ginger (Zingiber mioga: Zingiberaceae) in Korea

  • IKEDA, Hiroshi;NAM, Bo-Mi;YAMAMOTO, Nobuko;FUNAKOSHI, Hidenobu;TAKANO, Atsuko;IM, Hyoung-Tak
    • Korean Journal of Plant Taxonomy
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    • v.51 no.1
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    • pp.100-102
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    • 2021
  • The chromosome number of myoga ginger (Zingiber mioga (Thunb.) Roscoe: Zingiberaceae) has been reported as 2n = 22 for Chinese plants and 2n = 55 for Japanese plants. We checked the chromosome number of Z. mioga in plants collected in Jeollabuk-do and Jeollanam-do, Korea, and counted 2n = 44, the first report of this number for the species. As the basic chromosome number of Z. mioga is thought to be x = 11, Z. mioga plants in China, Korea, and Japan appear to be diploids, tetraploids, and pentaploids, respectively. In finding the tetraploid race of Z. mioga in Korea, we can hypothesize that the pentaploid race in Japan is derived through the fertilization of reduced gametes of the diploid race and unreduced gametes of the tetraploid race.

Fertility Restoration of F1 OA Interspecific Hybrid by Spontaneous Meiotic Polyploidization and Analysis of Their Progenies (자발적 생식세포 염색체 배수화 기작에 의한 Oriental-Asiatic hybrid(OA) F1 종간잡종의 임성회복과 후대검정)

  • Chung, Mi-Young;Chung, Jae-Dong;Van Tuyl, Jaap M.;Lim, Ki-Byung
    • Korean Journal of Breeding Science
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    • v.41 no.3
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    • pp.213-219
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    • 2009
  • This study was carried out to establish breeding system for interspecific hybridization of Lilium using spontaneous meiotic polyploidization of $F_1$ OA hybrid and its progenies. Pollen viability and germination of $F_1$ OA interspecific hybrid showed variation by collection time, indicating that pollen grain in June, which was natural blooming season, had better viability and germination ability than in October. 2n-gametes from spontaneous meiotic polyploidization of OA hybrid were crossed with either diploid Asiatic or Oriental hybrid, and subsequent progenies crossed with Asiatic hybrid as female and OA hybrid as male showed the highest efficiency, where 2x-2x A$\times$OA produced 0.64 plants per cross combination, while 2x-2x, O$\times$OA and 2x-2x, OA$\times$A crosses produced 0.42 and 0.4 plant per ovary, and especially no progeny was obtained in 2x-2x, OA$\times$O cross combination. For the subsequent progeny production, a cross between diploid Asiatic hybrid as female and diploid OA hybrid as male was the best ploidy combination. Ploidy level of subsequent progeny derived from backcross with 2n-gametes of OA hybrid revealed that triploids from 2x-2x OA$\times$A, tetraploids from both 4x-2x, AA$\times$OA and OO$\times$OA, diploid from 2x-2x, O$\times$OA, and diploids or triploids from 2x-2x, A$\times$OA crosses were produced respectively.

Sexual Reproduction Genetic Algorithms: The Effects of Multi-Selection & Diploidy on Search Performances (유성생식 유전알고리즘 : 다중선택과 이배성이 탐색성능에 미치는 영향)

  • Ryu, K.B.;Choi, Y.J.;Kim, C.E.;Lee, H.S.;Jung, C.K.
    • Proceedings of the KIEE Conference
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    • 1995.07b
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    • pp.1006-1010
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    • 1995
  • This paper describes Sexual Reproduction Genetic Algorithm(SRGA) for function optimization. In SRGA, each individual utilize a diploid chromosome structure. Sex cells(gametes) are produced through artificial meiosis in which crossover and mutation occur. The proposed method has two selection operators, one, individual selection which selects the individual to fertilize, and the other, gamete selection which makes zygote for offspring production. We consider the effects of multi-selection and diploidy on search performance. SRGA improves local and global search(exploitation and exploration) and show optimum tracking performance in nonstationary environments. Gray coding is incorporated to transforming the search space and Genic uniform distribution method is proposed to alleviate the problem of premature convergence.

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Stem cells and reproduction

  • Lee, Yeonmi;Kang, Eunju
    • BMB Reports
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    • v.52 no.8
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    • pp.482-489
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    • 2019
  • Reproductive biotechnology has developed rapidly and is now able to overcome many birth difficulties due to infertility or the transmission of genetic diseases. Here we introduce the next generation of assisted reproductive technologies (ART), such as mitochondrial replacement technique (MRT) or genetic correction in eggs with micromanipulation. Further, we suggest that the transmission of genetic information from somatic cells to subsequent generations without gametes should be useful for people who suffer from infertility or genetic diseases. Pluripotent stem cells (PSCs) can be converted into germ cells such as sperm or oocytes in the laboratory. Notably, germ cells derived from nuclear transfer embryonic stem cells (NT-ESCs) or induced pluripotent stem cells (iPSCs) inherit the full parental genome. The most important issue in this technique is the generation of a haploid chromosome from diploid somatic cells. We hereby examine current science and limitations underpinning these important developments and provide recommendations for moving forward.

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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Frequency of Spontaneous Polyploids in Monoembryonic Jeju Native Citrus Species and Some Mandarin Cultivars (단배성 제주 재래귤 및 만다린잡종에서 자연 발생적인 배수체의 발생 빈도)

  • Chae, Chi-Won;Yun, Su-Hyun;Park, Jae-Ho;Kim, Min-Ju;Koh, Sang-Wook;Song, Kwan-Jeong;Lee, Dong-Hun
    • Journal of Life Science
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    • v.22 no.7
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    • pp.871-879
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    • 2012
  • Polyploids are a potentially important germplasm source in seedless citrus breeding program. Seedlessness is one of the most promising traits of commercial mandarin breeds that mandarin triploid hybrids possess permanently. The formation of new constant triploid hybrids can be recovered through diploid species hybridization from the fusion of divalent gametes at low frequencyor intra-and inter-ploidy crosses. However, extensive breeding work based on small $F_1$ hybrid seeds developed is impossible without a very effective aseptic methodology and ploidy event. In this study, in vitro embryo culture was employed to recover natural hybrids from monoembryonic diploid, open-pollinated mandarin. Flow cytometry was used to determine ploidy level. A total of 10,289 seeds were extracted from 792 fruits having approximately 13 seeds per fruit. Average frequency of small seeds developed was 7.1%, while the average frequency of small seeds per fruit were: 8.9% for 'Clementine' 10.2% for 'Harehime' 2.6% for 'Kamja' 3.1% for 'Pyunkyool' 2.8% for 'Sadookam' and 7.0% for 'Wilking' mandarin. Average size of a perfect seed was $49.52{\pm}0.07mm^2$ ('Clementine') while the small seed measured $7.95{\pm}0.04mm^2$ ('Clementine'), which was about 1/6 smaller than the perfect seed. In total, 731 small seeds were obtained and all of them contained only one embryo per seed. The efficiency of 'Clementine' was 14 times higher than 'Wilking' and more than 109 times higher than 'Pyunkyool'. The basic information on spontaneous polyploidy provides for the hybridization of constant triploids and increases the efficiency of conventional cross.