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1992 Fiscal Year Final Research Report Summary

Transformation of sweet potato and expression of the transferred genes

Research Project

Project/Area Number 03660004
Research Category

Grant-in-Aid for General Scientific Research (C)

Allocation TypeSingle-year Grants
Research Field Breeding science
Research InstitutionMie University

Principal Investigator

KAKEDA Katsuyuki  Mie university Faculty Of Bioresources,Assistant, 生物資源学部, 助手 (50221867)

Co-Investigator(Kenkyū-buntansha) HATTORI Tsukaho  Mie University Center For Molecular Biology and Genetics Associate Professor, 遺伝子実験施設, 助教授 (10164865)
Project Period (FY) 1991 – 1992
KeywordsSweet potato / Ipomoea / Transgenic plant / Gene transfer / Molecular genetics
Research Abstract

To develop an efficient method in obtaining transgenic plants of sweet potato, Agrobacterium-mediated transformation and regeneration from calli and leaf disks were carried out. Six sweet potato cultivars and a wild diploid species (I.leucantha), and an A.tumefaciens strain, EHA101 were used. This bacterial strain has a GUS expression vector which contains a kanamycin resistant (npt-II) and a hygromycin resistant (hpt) genes.
Shoot apexes, petioles and stems were excised and coincubated with A.tumefaciens for 20 min. They were transferred to a callus induction medium containing antibiotics. After one or two months, transformed calli expressig a GUS gene were induced, but no plantlet was regenerated from these calli. In the following experiment, an embryogenic callus was induced from a shoot apex with 2,4-D. A high frequency of plant regeneration was observed from this callus. By three days coincubation of the calli with A.tumefaciens, antibiotic resistant calli were obtained and adventitious embryos were formed in some of the calli. However, no plant regeneration was observed from the adventitious embryos.
Plant regeneration system without callus induction was newly developed with leaf disks in two sweet potato cultivars, Jewel and Tainou No.10. Regenerated plants were obtained directly from leaf disks with NAA or obtained by transferring adventitious roots formed from leaf disks onto the medium without hormones. After a coculture with A.tumefaciens for 5 days, transformed roots were regenerated on the medium with antibiotics. However, the growth of these roots stopped in 1 to 2 cm long and no plant was regenerated from these roots.
Further research is needed on the improvement of regeneration frequency from transformed cells and tissues to obtain transgenic plants of sweet potato.

  • Research Products

    (4 results)

All Other

All Publications (4 results)

  • [Publications] 神山 康夫: "サツマイモ野生種におけるS-糖タンパク質遺伝子の探索 1.Brassica S・遺伝子プライマーを用いたPCR産物の解析" 育種学雑誌. 42(別1. 216-217 (1992)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] 神山 康夫: "ヒルガオ科植物の自家不和合性" 組織培養. 18. 448-452 (1992)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] KOWYAMA, Y.: "Detect on of S-glycoprotein coding genes in a wild species of sweet potato, 1. Analysis of PCR products amplified with primers correspond ng to the cDNA sequence of Brassica S-gene." Japan. J. Breed.Vol.42(Suppl.1). 216-217 (1992)

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] KOWYAMA, Y.: "Self-incompatibility of the Convolvulaceae" The Tissue Culture,. Vol.18. 448-452 (1992)

    • Description
      「研究成果報告書概要(欧文)」より

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Published: 1994-03-24  

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