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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Comparison of photobioreactors and optimal light regime for rapid vegetative propagation of transgenic Undaria pinnatifida gametophytes
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Comparison of photobioreactors and optimal light regime for rapid vegetative propagation of transgenic Undaria pinnatifida gametophytes

机译:光生物反应器和最佳光照方案的比较,用于转基因裙带菜非配子体快速营养繁殖

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摘要

BACKGROUND: Previously, tachyplesin gene (tac) has been successfully transferred into Undaria pinnatifida gametophytes using the method of microprojectile bombardment transformation. The objectives of this study were to compare and evaluate the performance of bubble-column and airlift bioreactors to determine a preferred configuration of bioreactor for vegetative propagation of transgenic U. pinnatifida gametophytes, and to then investigate the influence of light on vegetative propagation of these gametophytes, including incident light intensity, photoperiod and light quality to resolve the problems of rapid vegetative propagation within the selected bioreactor. RESULTS: Experimental results showed that final dry cell density in the airlift bioreactor was 12.7% higher than that in the bubble-column bioreactor under the optimal aeration rate of 1.2 L air min-1 L-1 culture. And a maximum final dry cell density of 2830 mgL-1 was obtainedwithin the airlift bioreactor using blue light at 40 μmolm-2 s-1 with a light/dark cycle of 14/10 (h).Polymerase chain reaction (PCR) analysis indicated that genes (bar and tac) were not lost during rapid vegetative propagation within the airlift bioreactor. CONCLUSION: The airlift bioreactor was shown to be much more suitable for rapid vegetative propagation of transgenic U.pinnatifida gametophytes than the bubble-column bioreactor in the laboratory. The use of blue light allows improvement of vegetative propagation of transgenic U. pinnatifida gametophytes.
机译:背景:以前,速动素基因(tac)已成功地通过微粒轰击转化的方法转移到了裙带菜配子体中。这项研究的目的是比较和评估气泡柱和空运生物反应器的性能,以确定转基因美国pinnatifida配子体营养繁殖的生物反应器的优选配置,然后研究光对这些配子体营养繁殖的影响。包括入射光强度,光周期和光质量,以解决所选生物反应器内营养快速繁殖的问题。结果:实验结果表明,在最佳充气速率为1.2 L air min-1 L-1的条件下,气举生物反应器的最终干细胞密度比气泡柱生物反应器的最终干细胞密度高12.7%。在空运生物反应器中使用40μmolm-2s-1的蓝光在空运生物反应器中获得的最大最终干细胞密度为2830 mgL-1,明暗循环为14/10(h)。聚合酶链反应(PCR)分析表明在空运生物反应器内快速营养繁殖期间,基因(bar和tac)没有丢失。结论:在实验室中,空运生物反应器被证明比转鼓生物反应器更适合于转基因梭菌的配子体快速营养繁殖。蓝光的使用可以改善转基因美国pinnatifida配子体的营养繁殖。

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