인삼에 이용할 수 있는 vector system의 개발연구의 일환으로 우선 Agrobacterium spp.를 인삼의 잎, 줄기 및 뿌리에 접종하여 crown gall tumor의 형성 및 탈분화 그리고 Agrobacterium spp.의 opine화합물의 이용정도등을 조사하였던 바 그 결과를 요약하면 다음과 같다. 1. Agrobacterium tumefaciens C58은 인삼의 모든 부위에서 crown gall tumor를 형성하였으나 secondary tumor나 teratoma는 형성하지 못했다. 2. Wild type Agrobacterium tumefaciens Y101, Y104, Y109는 crown gall tumor를 형성하였으며, tumor의 형태, 크기 그리고 생장 정도는 strain별로 차이가 있었다. 3. Agrobacterium tumefaciens Y194는 특히 amorphic tumor를 형성하였다. 4. 줄기에서 형성된 tumor조직에서 callus를 유기하고자 phytohormone free배지 및 2,4-D 첨가 배지에 접종한 결과 전혀 callus가 형성되지 않았다. 5. 뿌리에서 형성된 callus가 형성되긴 하였으나 출현빈도가 극히 낮았으며, 정상 조직과는 달리 2,4-D의 효과가 미미하였다. 6. Agrobacterium spp.에 의한 opone화합물의 이용능력을 조사한 결과, Agrobacterium tumefacciens Y104, Y110 과 C58은 nopaline type이었고 Y109는 octopine type이었으며, Y101은 nopaline과 octopine 어느것도 이용하지 못하였다.
인삼에 이용할 수 있는 vector system의 개발연구의 일환으로 우선 Agrobacterium spp.를 인삼의 잎, 줄기 및 뿌리에 접종하여 crown gall tumor의 형성 및 탈분화 그리고 Agrobacterium spp.의 opine화합물의 이용정도등을 조사하였던 바 그 결과를 요약하면 다음과 같다. 1. Agrobacterium tumefaciens C58은 인삼의 모든 부위에서 crown gall tumor를 형성하였으나 secondary tumor나 teratoma는 형성하지 못했다. 2. Wild type Agrobacterium tumefaciens Y101, Y104, Y109는 crown gall tumor를 형성하였으며, tumor의 형태, 크기 그리고 생장 정도는 strain별로 차이가 있었다. 3. Agrobacterium tumefaciens Y194는 특히 amorphic tumor를 형성하였다. 4. 줄기에서 형성된 tumor조직에서 callus를 유기하고자 phytohormone free배지 및 2,4-D 첨가 배지에 접종한 결과 전혀 callus가 형성되지 않았다. 5. 뿌리에서 형성된 callus가 형성되긴 하였으나 출현빈도가 극히 낮았으며, 정상 조직과는 달리 2,4-D의 효과가 미미하였다. 6. Agrobacterium spp.에 의한 opone화합물의 이용능력을 조사한 결과, Agrobacterium tumefacciens Y104, Y110 과 C58은 nopaline type이었고 Y109는 octopine type이었으며, Y101은 nopaline과 octopine 어느것도 이용하지 못하였다.
These studies were carried out to obtain the basic information about transformation of ginseng plant by potential vector system, utilization of opine compound by Agrobacterium sap. , and initiation of crown gall tumor callus. Crown gall tumors were induced from stem of Panax ginseng C.A. Meyer by in...
These studies were carried out to obtain the basic information about transformation of ginseng plant by potential vector system, utilization of opine compound by Agrobacterium sap. , and initiation of crown gall tumor callus. Crown gall tumors were induced from stem of Panax ginseng C.A. Meyer by infection of Agrobacterium tumefaciens. Therefore, it was clarified that transformation of ginseng by Ti plasmid was possible. The crown gall tumors induced by Agrobacterium tumefaciens isolated. from the soil were different in a shape, size, and growth rate. Especially, infection of ginseng by Agrobacterium tumefaciens Y104 led to the amorphic tumor, Tumor tissue derived from stem crown gall could not be continuously cultured on the medium which did not contain phytohormone, and did not form the callus even on the medium supplemented with 2,4-D. On the other hand, the root crown gall tumors formed the calli but the formation rate of callus was quite low. As for the utilization of octopine and nopaline, it was found that 3 strains of Agrobacterium app., Y104, Y110 and C58, utilized nopaline only, Y109 utilized octopine, and Y101 failed to utilize either compound.
These studies were carried out to obtain the basic information about transformation of ginseng plant by potential vector system, utilization of opine compound by Agrobacterium sap. , and initiation of crown gall tumor callus. Crown gall tumors were induced from stem of Panax ginseng C.A. Meyer by infection of Agrobacterium tumefaciens. Therefore, it was clarified that transformation of ginseng by Ti plasmid was possible. The crown gall tumors induced by Agrobacterium tumefaciens isolated. from the soil were different in a shape, size, and growth rate. Especially, infection of ginseng by Agrobacterium tumefaciens Y104 led to the amorphic tumor, Tumor tissue derived from stem crown gall could not be continuously cultured on the medium which did not contain phytohormone, and did not form the callus even on the medium supplemented with 2,4-D. On the other hand, the root crown gall tumors formed the calli but the formation rate of callus was quite low. As for the utilization of octopine and nopaline, it was found that 3 strains of Agrobacterium app., Y104, Y110 and C58, utilized nopaline only, Y109 utilized octopine, and Y101 failed to utilize either compound.
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