• 제목/요약/키워드: supernodulating mutant

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다량 뿌리혹 형성 콩 계통의 도입 개발 및 생육특성구명 1. 돌연변이유기에 의한 콩 초다뿌리혹형성 계통선발 (Introduction, Development, and Characterization of Supernodulating Soybean Mutant. 1. Mutagenesis of Soybean and Selection of Supernodulating Soybean Mutant)

  • 이홍석;채영암;박의호;김용욱;윤광일;이석하
    • 한국작물학회지
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    • 제42권2호
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    • pp.247-253
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    • 1997
  • 콩에서 돌연변이를 효율적으로 유기시킬 수 있는 적정 EMS농도를 결정하기 위하여, 황금콩, 장엽콩, 검정콩 001에 30, 50, 70mM EMS세 수준으로 처리 한 다음 M$_1$종자의 포장발아율과 M$_2$ 세대의 돌연변이체 출현빈도율을 조사하였으며 다량 뿌리혹형성 변이체 선발을 위하여 신팔달콩002 종자 약 18,000립에 30mM EMS를 처리하여 M$_2$세대에서 선발하고, 선발된 변이체의 뿌리혹 형성능력을 미국 초다뿌리혹형성 nts계통과 비교한 결과는 다음과 같다. 1. M$_1$종자의 포장출현율은 검정콩 001가 황금콩과 장엽콩보다 높은 경향이었으며, 세 품종 모두 EMS처리 농도가 증가함에 따라 포장출현율이 낮았다. 2. M$_2$세대에서 돌연변이개체는 엽록소 결핍개체가 가장 많이 출현하였는데, 그외에도 생장점괴사, 엽이상, 엽수변이체, 단경 등 다양한 변이양상을 보였다. 3. 30mM EMS처리가 포장발아율도 높고, 돌연변이개체 출현율도 50, 70mM에 비하여 양호한 편으로 판단되었다. 4. 신팔달콩 002로부터 30mM EMS처리에 의하여 M$_2$세대에서 뿌리혹 형성 nts계통보다도 많은 뿌리혹이 형성되었으며, 뿌리혹형성도 일찍 시작되었다.

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Gene Duplications Revealed during the Process of SNP Discovery in Soybean[Glycine max(L.) Merr.]

  • Cai, Chun Mei;Van, Kyu-Jung;Lee, Suk-Ha
    • Journal of Crop Science and Biotechnology
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    • 제10권4호
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    • pp.237-242
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    • 2007
  • Genome duplication(i.e. polyploidy) is a common phenomenon in the evolution of plants. The objective of this study was to achieve a comprehensive understanding of genome duplication for SNP discovery by Thymine/Adenine(TA) cloning for confirmation. Primer pairs were designed from 793 EST contigs expressed in the roots of a supernodulating soybean mutant and screened between 'Pureunkong' and 'Jinpumkong 2' by direct sequencing. Almost 27% of the primer sets were failed to obtain sequence data due to multiple bands on agarose gel or poor quality sequence data from a single band. TA cloning was able to identify duplicate genes and the paralogous sequences were coincident with the nonspecific peaks in direct sequencing. Our study confirmed that heterogeneous products by the co-amplification of a gene family member were the main cause of obtaining multiple bands or poor quality sequence data in direct sequencing. Counts of amplified bands on agarose gel and peaks of sequencing trace suggested that almost 27% of nonrepetitive soybean sequences were present in as many as four copies with an average of 2.33 duplications per segment. Copy numbers would be underestimated because of the presence of long intron between primer binding sites or mutation on priming site. Also, the copy numbers were not accurately estimated due to deletion or tandem duplication in the entire soybean genome.

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