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Agrobacterium 농도가 사과 형질전화 효율에 미치는 영향
성은수,차지은,김정희,박성환,유창연,송관정,Seong, Eun-Soo,Cha, Ji-Eun,Kim, Jeong-Hee,Park, Seong-Whan,Yu, Chang-Yeon,Song, Kwan-Jeong 한국식물생명공학회 2003 식물생명공학회지 Vol.30 No.3
This study was conducted to find optimum bacterial density for improving the efficiency of transformation mediated by Agrobacterium tumefaciens in apples. Regeneration(15%) and transformation frequency(10%) were increased in resuspension-culture density $A_{600}$ 1.3 from preculture density $A_{600}$ 0.7 of Agrobacterium tumefaciens in ′Fuji′. In ′Gala′, 20% regeneration and 16% transformation frequency were observed at optimum bacterial density $A_{600}$ 0.7 form preculture density $A_{600}$ 1.3. ′Mclntosh as well as "Gala" were 25%regeneration and 10% transformation frequency. Hence a frequency optimum condition of bacterial density for the efficient transformation of apple could be depend on apple genotypes.
Agrobacterium을 이용한 고추의 Transient Expression 시스템
성은수,정영희,최도일,Seong, Eun-Soo,Joung, Young-Hee,Choi, Doil 한국식물생명공학회 2004 식물생명공학회지 Vol.31 No.3
Agrobacterium을 이용한 GUS 유전자를 효과적으로 발현시키기 위하여 수행되어진 실험 결과를 요약하면 다음과 같다. 박테이라 농도별 실험을 수행한 결과 균의 전처리 배양 농도 O $D_{600nm}$ 0.3일때 원심분리한 후 얻어진 균을 희석한 후의 최종 농도는 O $D_{600nm}$ 0.8로 맞춘 실험 처리구에서 GUS 유전자 발현율이55%로 가장 높게 나타났다. 병원성 유도 배지 내에 Acetosyringone (AS)이 첨가되지 않은 경우 GUS 유전자가 발현된 고추 잎을 얻을 수 없었으나, 200$\mu$M을 첨가했을 때 90%의 가장 높은 GUS 유전자 발현율을 나타내어 많은 수의 GUS spots을 관찰할 수 있었다. Agrobacterium에 의한 고추 잎의 감염 정도를 조사한 바 Agrobacterium으로 감염시킨지 3일째부터는 박테리아 에한 감염 정도가 심해져서 GUS 유전자 발현 정도가 약해지므로 Agrobacterium으로 감염시킨지 2일째 되었을 때 GUS 유전자 발현이 가장 강하게 나타난 것을 확인하였다. 이 같은 결과는 박테리아에 의한 감염이 일어난지 3일째 부터는 식물체의 감염부위 고사를 일으키는 것과 관련된 것으로 보인다. We established a transient gene expression system in chili pepper leaves based on Agrobacterium-mediated transformation of GUS gene. For the best GUS transient expression, two step culture system was adopted. When the Agrobacterium tumefaciens cell density of pre-culture was $A_{600nm}$ 0.3, the cells were harvested and diluted to $A_{600nm}$ 0.8 with virulence induction medium after cell harvested. The addition of acetosyringone (200 $\mu$M) in virulence induction step was a key factor for successful transient expression. Additionally, Younger leaves showed more effective transient expression than older leaves. Temporally, the strongest intensity of GUS expression was detected at 2 days after infiltration. These results demonstrate that Agrobacterium-mediated transient expression can be used for a simple in vivo assays of plant promoters, transcription factors and furthermore provide efficient protocol for chili pepper transformation.
성은수(Eun Soo Seong),유지혜(Ji Hye Yoo),김희영(Hee Young Kim),최혜림(Hye Lim Choi),서지원(Ji Won Seo),황명하(Myeong Ha Hwang),김명조(Myong Jo Kim),유창연(Chang Yeon Yu) 한국약용작물학회 2019 한국약용작물학회지 Vol.27 No.6
Background: Oplopanax elatus is widely distributed at high altitudes (about 1,100 m) in China, Russia and Korea. It is hard to propagate, breed, and difficult to grow. Hence, it has been designated as a rare and endangered medicinal plant. A study was conducted to establish a system for large scale seedling production of Oplopanax elatus in vitro and to find the ideal environment for its seedling growth. Methods and Results: In this study, the explants produced under in vitro conditions during our previous study were grouped into three categories (under 10 ㎜, 10 ㎜ - 30 ㎜ and above 30 ㎜) based on plant height and were transferred to the growth-chamber and greenhouse for two weeks in each setting for acclimatization. The plantlet category of above 30 ㎜ showed good performance, and was further evaluated under three acclimatization methods as follows: three different growth media (commercial soil, commercial soil + perlite, commercial soil + sand), four shading levels (0%, 50%, 70%, 90%) and four altitude levels (157 m, 218 m, 601 m, 870 m) in Gangwon province of South Korea. As results, O. elatus seedlings showed better growth characteristics at 870 m of altitude, 70% shading level and in the commercial soil compared to other treatments. Conclusions: The regenerated seedlings of Oplopanax elatus obtained through plant tissue culture would be advantageous for use in large scale seedling production systems paired with a good acclimation method. For obtaining optimal results, it is recommended that seedling be acclimatized in a high altitude environment.