반수체 육성은 육종연한을 단축시키기 위해 유용한 도구이다. 본 연구는 밀 품종 조기 육성을 위한 반수체 육종 시스템을 개발하기 위해 반수체 육성시 식물생장조절제 처리가 배 배양에 미...
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https://www.riss.kr/link?id=A100201101
2011
Korean
523
KCI등재
학술저널
50-55(6쪽)
3
0
상세조회0
다운로드국문 초록 (Abstract)
반수체 육성은 육종연한을 단축시키기 위해 유용한 도구이다. 본 연구는 밀 품종 조기 육성을 위한 반수체 육종 시스템을 개발하기 위해 반수체 육성시 식물생장조절제 처리가 배 배양에 미...
반수체 육성은 육종연한을 단축시키기 위해 유용한 도구이다. 본 연구는 밀 품종 조기 육성을 위한 반수체 육종 시스템을 개발하기 위해 반수체 육성시 식물생장조절제 처리가 배 배양에 미치는 영향에 대해서 조사한 것이다. 밀 이삭의 제웅 작업을 수행하고 옥수수와 원연교잡한 후 종자결실은 2,4-D 및 2,4,5-T 150 mg/L, dicamba 50 mg/L 처리에서 가장 좋았으며, 배형성은 2,4-D 및 2,4,5-T 100 mg/L, dicamba 50
다국어 초록 (Multilingual Abstract)
The introduction of doubled haploid (DH) approach into breeding programs has reduced the times and population sizes required for the production of pure lines. We carried out the experiment for development on effective method of producing haploid in wh...
The introduction of doubled haploid (DH) approach into breeding programs has reduced the times and population sizes required for the production of pure lines. We carried out the experiment for development on effective method of producing haploid in wheat. Emasculated spikelets of wheat were pollinated with maize pollen and cultured in the solution containing 40 g/L sucrose and 2,4-D, NAA, 2,4,5-T and dicamba 24 h after pollination, and then incubated until embryo rescue. Fourteen to sixteen days after pollination, the embryos are excised and cultured in half-strength MS basal medium supplemented with 20 g/L sucrose and 1 mg/L NAA. The type of plant growth regulators was found to be most significant in production of haploid plants. The application of synthetic auxins to pollinated florets, stimulates haploid embryo development to a stage where the embryos can be rescued onto nutrient media. The percentage of seeded florets was significantly affected by 100 mg/L 2,4-D, 150 mg/L 2,4,5-T and 50 mg/L dicamba. The percentage of embryos formed was significantly increased by treatment with 2,4-D and 2,4,5-T at 100 mg/L, and dicamba at 50 mg/L, but the treatments with 150 mg/L 2,4-D inhibited embryo development and plant regeneration. The optimum application time of plant growth regulators was 24 hrs after pollination.
참고문헌 (Reference)
1 정영근, "옥수수 화분을 이용한 밀 반수체 육종의 실용화 연구" 4 : 440-472, 2008
2 박태일, "보리 생육환경 및 전처리 방법별 약배양 효율" 한국육종학회 40 (40): 31-38, 2008
3 박광근, "밀과 옥수수 속간교잡을 이용한 밀 반수체 육성" (1) : 129-130, 2000
4 박철수, "내한 내수발아성 제면용 밀 신품종 “수강밀”" 한국육종학회 41 (41): 44-50, 2009
5 Laurie DA, "Wheat x maize hybridization" 28 : 313-316, 1986
6 Laurie DA, "The production of haploid wheat plants from wheat × maize crosses" 76 : 393-397, 1988
7 Bernier G, "The physiology of flowering. Vol 2" CRC Press 1-231, 1981
8 Campbell AW, "The importance of light intensity for pollen tube growth and embryo survival in wheat x maize crosses" 87 : 517-522, 2001
9 Inagaki M, "Technical advances in wheat haploid production using ultra-wide crosses" 4 : 51-62, 1997
10 Neeraj K, "Studies on pollen germination, pollen tube growth and seed set in reciprocal wheat-barley crosses" 74 : 28-32, 1992
1 정영근, "옥수수 화분을 이용한 밀 반수체 육종의 실용화 연구" 4 : 440-472, 2008
2 박태일, "보리 생육환경 및 전처리 방법별 약배양 효율" 한국육종학회 40 (40): 31-38, 2008
3 박광근, "밀과 옥수수 속간교잡을 이용한 밀 반수체 육성" (1) : 129-130, 2000
4 박철수, "내한 내수발아성 제면용 밀 신품종 “수강밀”" 한국육종학회 41 (41): 44-50, 2009
5 Laurie DA, "Wheat x maize hybridization" 28 : 313-316, 1986
6 Laurie DA, "The production of haploid wheat plants from wheat × maize crosses" 76 : 393-397, 1988
7 Bernier G, "The physiology of flowering. Vol 2" CRC Press 1-231, 1981
8 Campbell AW, "The importance of light intensity for pollen tube growth and embryo survival in wheat x maize crosses" 87 : 517-522, 2001
9 Inagaki M, "Technical advances in wheat haploid production using ultra-wide crosses" 4 : 51-62, 1997
10 Neeraj K, "Studies on pollen germination, pollen tube growth and seed set in reciprocal wheat-barley crosses" 74 : 28-32, 1992
11 Kisana NS, "Production of doubled haploids by anther culture and wheat X maize method in a wheat breeding programme" 110 : 96-102, 1993
12 Niroula RK, "Overview of wheat X maize system of crosses for dihaploid induction in wheat" 7 (7): 1037-1045, 2009
13 Patel M, "Optimization of culture conditions for improved plant regeneration efficiency from wheat microspore culture" 140 : 197-204, 2004
14 Kaushik N, "Influence of age of the embryo and method of hormone application on haploid embryo formation in wheat x maize crosses" 2004
15 Ahmad J, "Improvements in wheat x maize crossing system of doubled haploid production in bread wheat" University of Agriculture 2004
16 Matzk F, "Improved techniques for haploid production in wheat using chromosome elimination" 113 : 125-129, 1994
17 Brazauskas G, "Improved approaches in wheat × maize crossing for wheat doubled haploid production" 4 : 15-18, 2005
18 Laurie DA, "High frequencies of fertilization and haploid seedling production in crosses between commercial hexaploid wheat varieties and maize" 106 : 182-189, 1991
19 Almouslem AB, "Haploid durum wheat production via hybridization with maize" 38 : 1080-1087, 1998
20 Ushiyama T, "Effects of various phytohormones on haploid wheat production in wheat x maize croses" 10 (10): 36-41, 2007
21 Suenaga K, "Doubled haploid system using the intergeneric crosses between wheat (Triticum aestivum) and maize (Zea mays)" 9 : 83-139, 1994
22 Liang GH, "Direct generation of wheat haploid via anther culture" 27 : 336-340, 1987
23 García-llamas C, "Differences among auxin treatments on haploid production in durum wheat×maize crosses" 23 (23): 46-49, 2004
24 Knox RE, "Dicamba and growth condition effects on doubled haploid production in durum wheat crossed with maize" 119 (119): 289-298, 2000
25 Pienaar RV, "A reliable protocol for doubled haploid accelerated wheat breeding" 85 : 49-51, 1997
26 Beom-Young Son, "A New Corn Hybrid Cultivar, “Gangdaok” for Silage" 한국육종학회 38 (38): 147-148, 2006
27 농림수산식품부, "2009년 농림수산식품통계연보" 208-, 2009
Population Structure of Mungbean Accessions Collected from South and West Asia using SSR markers
Genetic Diversity Estimation of the Rice Mutant Lines Induced by Sodium Azide
Distribution of Fatty Acids in Newly Developed Tissues of Soybean Seedlings
학술지 이력
연월일 | 이력구분 | 이력상세 | 등재구분 |
---|---|---|---|
2025 | 평가예정 | 재인증평가 신청대상 (재인증) | |
2022-01-01 | 평가 | 등재학술지 선정 (계속평가) | |
2021-12-01 | 평가 | 등재후보로 하락 (재인증) | |
2018-01-01 | 평가 | 등재학술지 유지 (등재유지) | |
2015-01-01 | 평가 | 등재학술지 선정 (계속평가) | |
2014-01-01 | 평가 | 등재후보학술지 유지 (계속평가) | |
2013-01-01 | 평가 | 등재후보 1차 PASS (등재후보1차) | |
2011-01-01 | 평가 | 등재 1차 FAIL (등재유지) | |
2009-01-01 | 평가 | 등재학술지 유지 (등재유지) | |
2008-04-07 | 학술지명변경 | 외국어명 : KOREAN JOURNAL OF BREEDING -> KOREAN JOURNAL OF BREEDING SCIENCE | |
2007-01-01 | 평가 | 등재 1차 FAIL (등재유지) | |
2005-01-01 | 평가 | 등재학술지 유지 (등재유지) | |
2002-01-01 | 평가 | 등재학술지 선정 (등재후보2차) | |
1999-07-01 | 평가 | 등재후보학술지 선정 (신규평가) |
학술지 인용정보
기준연도 | WOS-KCI 통합IF(2년) | KCIF(2년) | KCIF(3년) |
---|---|---|---|
2016 | 0.6 | 0.6 | 0.49 |
KCIF(4년) | KCIF(5년) | 중심성지수(3년) | 즉시성지수 |
0.45 | 0.41 | 0.952 | 0.07 |
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