• 제목/요약/키워드: soybean breeding

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Genetic diversity, structure analysis and relationship in soybean mutants as revealed by TRAP marker

  • Kim, Dong-Gun;Lyu, Jae-Il;Lee, Min-Kyu;Kim, Jung Min;Hong, Min Jeong;Kim, Jin-Baek;Bae, Chang-Hyu;Kwon, Soon-Jae
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2018년도 추계학술대회
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    • pp.43-43
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    • 2018
  • Mutation breeding by radiation is useful for improving various crop species. Up to now, a total of 170 soybean mutant varieties have been released in the world, which is the second most registered varieties after rice. Despite the economic importance of soybean, there have been no TRAP marker system studies on genetic relationships between/among mutant lines. To develop a strategy of Mutant Diversity Pool (MDP) conservation, a study on the genetic diversity of 210 soybean mutant lines (8 cultivars and 202 mutants) was performed through a TRAP analysis. Sixteen primer combinations amplified a total of 551 fragments. The highest (84.00%) and lowest (32.35%) polymorphism levels were obtained with primers MIR157B + Ga5 and B14G14B + Ga3, respectively. The mean PIC values 0.15 varied among the primer combination ranging from 0.07 in B14G14B + Sal2 to 0.23 in MIR157B + Sa4. Phylogenetic, principal component analysis (PCA) and structure analysis indicated that the 210 lines belong to four groups based on the 16 combination TRAP markers. AMOVA showed 21.0% and 79.0% variations among and within the population, respectively. Overall, the genetic similarity of each cultivar and its mutants were higher than within other mutant populations. Our results suggest that the TRAP marker system may be useful for assessing the genetic diversity among soybean mutants and help to improve our knowledge of soybean mutation breeding.

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대두 내병충성 품종육성에 관한 연구 제2보 대두씨스트 선충(Heterodera glycines I.)에 대한 대두품종의 저갱성 (Studies on Breeding for Disease and Insect Resistant Soybean Variety II. Resistance to Soybean Cyst Nematode (Heterodera glycines I.) by Soybean Variety)

  • 박문수
    • 한국작물학회지
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    • 제26권4호
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    • pp.324-331
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    • 1981
  • 대두 씨스트 선충포에 있어서 대두 품종별 선충저항성정도를 검정하여 내선충성 대두 품종육성시 기초자료로 삼고져 본 시험을 실시하였던 바 그 결과를 요약하면 다음과 같다. 1. 지표품종에 대한 평균 종실중 감소율은 저항성 품종은 38\sim44%, 감수성 품종은 6972%로 차리가 뚜렷하였으며 전중 및 협수도 같은 경향이었다. 2. 공시된 품종중 저항성정도가 $\ulcorner$최강$\lrcorner$인 품종은 5, $\ulcorner$$\lrcorner$에 속하는 것이 8품종으로써 이를은 모두 중ㆍ만생종이었다. 저항성 품종으로 유망시 되는 것으로는 울산, 강림, pickett 71, Forrest, Bedford 등이었다. 3. 선충포에 있어서 종실중, 전중 및 협수의 감소율을 조생종을 62\sim75%, 중생종은 39\sim65%, 만생종은 29\sim36%로써 생육일수가 짧은 품종일수록 저항성이 약하게 나타났다. 이 원인으로서는 선충의 분포범위와 대두 뿌리의 발생심도 및 발생량, 가해시기와 대두의 개화기 및 회복가능기간이 밀접히 관여하고 있는 것으로 고찰되었다. 4. 내선충성 품종선파을 위한 유의 상관 형질은 전중, 협수, 100입중, 주전장이었으며 특히 전종과 협수는 모두 +0.9 이상의 고도의 상관계수를 보였다.

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Overexpression of a Chromatin Architecture-Controlling ATPG7 has Positive Effect on Yield Components in Transgenic Soybean

  • Kim, Hye Jeong;Cho, Hyun Suk;Pak, Jun Hun;Kim, Kook Jin;Lee, Dong Hee;Chung, Young-Soo
    • Plant Breeding and Biotechnology
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    • 제5권3호
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    • pp.237-242
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    • 2017
  • AT-hook proteins of plant have shown to be involved in growth and development through the modification of chromatin architecture to co-regulate transcription of genes. Recently, many genes encoding AT-hook protein have been identified and their involvement in senescence delay is investigated. In this study, soybean transgenic plants overexpressing chromatin architecture-controlling ATPG7 gene was produced by Agrobacterium-mediated transformation and investigated for the positive effect on the important agronomic traits mainly focusing on yield-related components. A total of 27 transgenic soybean plants were produced from about 400 explants. $T_1$ seeds were harvested from all transgenic plants. In the analysis of genomic DNAs from soybean transformants, ATPG7 and Bar fragments were amplified as expected, 975 bp and 408 bp in size, respectively. And also exact gene expression was confirmed by reverse transcriptase-PCR (RT-PCR) from transgenic line #6, #7 and #8. In a field evaluation of yield components of ATPG7 transgenic plants ($T_3$), higher plant height, more of pod number and greater average total seed weight were observed with statistical significance. The results of this study indicate that the introduction of ATPG7 gene in soybean may have the positive effect on yield components.

Soybean Seeds Damaged by Riptortus Clavatus (Thunberg) Reduce Seed Vigor and Quality of Bean Sprout Produce

  • Oh, Young-Jin;Cho, Sang-Kyun;Kim, Young-Jin;Kim, Kyong-Ho;Paik, Chae-Hoon;Kim, Tae-Soo;Kim, Jung-Gon;Cho, Youngkoo
    • 한국육종학회지
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    • 제42권5호
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    • pp.439-447
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    • 2010
  • Riptortus clavatus, one of the many insects in major crops, damages pods and seeds, which reduces seed vigor and viability in soybeans. This study was conducted to examine the effect of diversely damaged seeds by R. clavatus on seed germination and seedling emergence and to determine the association of damaged seed with quality and yield of soybean sprouts. All seeds damaged by R. clavatus significantly (P<0.05) reduced seed vigor as measured by the rates of seed germination, germination speed, and seedling emergence. Mean seed germination rate of non-damaged seeds in sprout-soybean varieties was 97.8%, whereas the rates of seeds damaged at different levels, 31-50% and 51-80%, were 23.0 and 5.4%, respectively. The rates of seedling rot and abnormal, incomplete germination significantly (P<0.05) increased as the amount of seeds damaged by R. clavatus increased to 5, 10 and 15% against the total seeds for sprout production. Yield of soybean sprouts from seeds damaged at different levels decreased up to 13% as compared to that in normal seeds. In customer preferences on soybean sprout produce, 84% of customers participated in survey preferred to purchase sprouts from seeds with 5% of damaged seeds, but sprouts produced from seeds with 15% of damaged seeds were intended to purchase only by 22% of the customers. Areas of the seed damaged by R. clavatus were readily infected by pathogens as the seed germinated, resulted in deteriorated quality and reduced yield of sprout produce.

The development of new soybean strain with ti and cgy1 recessive allele

  • Choi, Sang Woo;Park, Jun Hyun;Chung, Jong Il
    • Journal of Plant Biotechnology
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    • 제45권4호
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    • pp.328-332
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    • 2018
  • Soybean [Glycine max (L.) Merr.] seed is an important dietary source of protein, oil, carbohydrate, isoflavone and other various nutrients for humans and animals. However, there are anti-nutritional factors in the raw mature soybeans. Kunitz trypsin inhibitor (KTI) protein and stachyose are the main anti-nutritional factors in soybean seed. The ${\alpha}^{\prime}$-subunit of ${\beta}$-conglycinin protein exhibit poor nutritional and food processing properties. The genetic removal of the KTI and ${\alpha}^{\prime}$-subunit proteins will improve the nutritional value of the soybean seed. The objective of this research was to develop a new soybean strain with KTI and ${\alpha}^{\prime}$-subunit protein free ($titicgy_1cgy_1$ genotype) and proper agronomic traits. A breeding population was developed from the cross of the Bl-1 and 15G1 parents. A total of 168 $F_2$ seeds from the cross of the BL-1 and 15G1 parents were obtained. The segregation ratios of 9: 3: 3: 1 ($104Ti\_Cgy_{1\_}:\;30Ti\_cgy_1cgy_1:\;21cgy_1cgy_1Ti\_:\;13titicgy_1cgy_1$) between the Ti and $Cgy_1$ genes in the $F_2$ seeds were observed (${\chi}^2=5.12$, P=0.5-0.10). Two $F_4$ plant strains with proper agronomical traits and $titicgy_1cgy_1$ genotype (free of both KTI and ${\alpha}^{\prime}$-subunit protein) were selected and harvested. 2 strains (S1 and S2) had yellow seed coats and hilum. The plant height of the S1 strain was 65 centimeters. The 100-seed weight was 29.2 g. The plant height of the S2 strain was 66 centimeters and 100-seed weight was 26.2 g. The two strains selected in this research will be used to improve the new cultivar that will be free of the KTI and ${\alpha}^{\prime}$-subunit proteins.

양질대두 품종 육성을 위한 고함황 단백질 및 lipoxygenase 저활성도 품종의 탐색과 그의 유전 및 선발효과 2. Lipoxygenase 저활성도 품종의 탐색과 그 유전 및 선발효과 연구 (Studies on Search for Varieties of Higher Sulfur Containing Protein with Lower Lipoxygenase Activity and Their Inheritance and Selection Efficiency for Breeding of Good Quality Soybean Cultivar 2. Variation of Lipoxygenase Activity and its Inheritance with Selection Efficiency)

  • 이홍석;박의호;구자환
    • 한국작물학회지
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    • 제39권2호
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    • pp.180-186
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    • 1994
  • 콩의 lipoxygenase 활성이 낮은 품종의 육성을 위한 유전육종학적 기초연구의 일환으로 서울대학교 농학과에서 유지해오고 있는 품종 및 계통과 국내 수집계통 등 507점을 공시재료로 하여 lipoxygenase 활성의 변이, 그리고 잡종초기세대를 통한 lipoxygenase 활성의 유전 및 선발효과를 조사한 결과는 다음과 같다. 공시품종 및 계통들의 lipoxygenase 활성은 50~670 unit (unit : $\Delta$0.001/min /mg, 234nm) 의 범위(507품종 및 계통)였으며 평균 350unit로 나타났다. 수집지역과 종실색 구분에 의한 각 그룹별 lipoxygenase 활성의 평균간 차이가 없었으며 성열이 이른 계통의 집단이 lipoxygenase 활성평균이 낮았다. Lipoxygenase 활성은 양적인 유전현상을 나타냈으며 활성을 높게하는 유전자의 상가적 효과가 우성효과보다 큰 것으로 나타났고 활성을 높게하는 유전자와 낮게하는 유전자의 분포비율은 비슷한 것으로 추정되었다. 추정된 협의의 유전력과 광의의 유전력은 0.78($H_n$), 0.86($H_b$)이었고, 선발효율은 고, 저 양 방향으로의 조기세대 선발에 의해 원집단에 비해 높은 방향의 선발에서 29.7~44.7%증가하였고 낮은 방향의 선발에서 21.8~27.3% 저하되었으며 모든 경우에 유의하게 선발효과가 있었다.

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Genetic Diversity and Relationship in Soybean MDP (Mutant Diversity Pool) Revealed by TRAP and TE-TRAP Markers

  • Kim, Dong-Gun;Bae, Chang-Hyu;Kwon, Soon-Jae
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2019년도 춘계학술대회
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    • pp.32-32
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    • 2019
  • Mutation breeding is the useful tool to improve agronomic traits in various crop species. Soybean is most important crop and is rich in protein and oil contents. Despite of the importance as economic value and various genetic resource of soybean, there have been limited studies of genetic relationship among mutant resources through radiation breeding. In this study, the agronomical phenotype for selecting various genetic resources was evaluated in 528 soybean mutant lines. As a result, 210 soybean mutants with their original cultivars were selected with various traits. We named 210 selected lines as Mutant Diversity Pool (MDP). The genetic diversity and the relationship of the MDP were investigated using TRAP and TE-TRAP markers. In TRAP analysis, sixteen primer combination (PC)s were used and a total of 551 fragments were amplified. The highest (84.00%) and the lowest (32.35%) polymorphism levels were showed in PC MIR157B+Ga5 and B14G14B+Ga3, respectively. The mean of PIC values was 0.15 ranging from 0.07 in B14G14B+Sa12 to 0.23 in MIR157B+Sa4. Phylogenetic and population structure analysis indicated that the 210 MDP lines dispersed to four groups among the wild types and their mutants. The highest genetic diversity among populations was observed between lines Paldal and 523-7 (Fst=0.409), whereas the lowest genetic diversity was between population KAS360-22 and 94seori (Fst=0.065). AMOVA showed 11.583 (21.0%) and 43.532 (79.0%) variations in inter and intra mutant population, respectively. Overall, the genetic similarity of each intra mutant populations was closer than that of inter mutant population. A total of 408 fragments were amplified in the 210 MDP using twelve PCs of TE-TRAP markers that were obtained from a combination of three TIR sequence of transposable elements (MITE-stowaway; M-s, MITE-tourist; M-t, PONG). The highest (77.42%) and the lowest (56.00%) polymorphism levels were showed in PONG+Sa4 and PONG+Sa12, respectively. The mean of PIC values was 0.15 ranging from 0.09 in M-s+Sa4 and M-s+Ga5 to 0.21 in M-t+Ga5. AMOVA of M-s showed 2.209 (20%) and 8.957 (80%) variations in inter and intra mutant population, respectively. AMOVA of M-t showed 2.766 (18%) and 12.385 (82%) variations in inter and intra mutant population, respectively. AMOVA of PONG showed 3.151 (29%) and 7.646 (71%) variations in inter and intra mutant population, respectively. According to our study, the PONG had higher inter mutant population and lower intra mutant population. This mean was that for aspect of radiation sensitivity, M-s and M-t showed higher mobility than that of PONG. Our results suggest that the TRAP and the TE-TRAP markers may be useful for assessing the genetic diversity and relationship among soybean MDP and help to improve our knowledge of soybean mutation/radiation breeding.

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Molecular and Biological Characterization of an Isolate of Cucumber mosaic virus from Glycine soja by Generating its Infectious Full-genome cDNA Clones

  • Phan, Mi Sa Vo;Seo, Jang-Kyun;Choi, Hong-Soo;Lee, Su-Heon;Kim, Kook-Hyung
    • The Plant Pathology Journal
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    • 제30권2호
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    • pp.159-167
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    • 2014
  • Molecular and biological characteristics of an isolate of Cucumber mosaic virus (CMV) from Glycine soja (wild soybean), named as CMV-209, was examined in this study. Comparison of nucleotide sequences and phylogenetic analyses of CMV-209 with the other CMV strains revealed that CMV-209 belonged to CMV subgroup I. However, CMV-209 showed some genetic distance from the CMV strains assigned to subgroup IA or subgroup IB. Infectious full-genome cDNA clones of CMV-209 were generated under the control of the Cauliflower mosaic virus 35S promoter. Infectivity of the CMV-209 clones was evaluated in Nicotiana benthamiana and various legume species. Our assays revealed that CMV-209 could systemically infect Glycine soja (wild soybean) and Pisum sativum (pea) as well as N. benthamiana, but not the other legume species.