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首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >Genetic transformation of hop (Humulus lupulus L. cv. Tettnanger) by particle bombardment and plant regeneration using a temporary immersion system
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Genetic transformation of hop (Humulus lupulus L. cv. Tettnanger) by particle bombardment and plant regeneration using a temporary immersion system

机译:利用临时浸没系统通过粒子轰击和植物再生对啤酒花(Humulus lupulus L. cv。Tettnanger)进行遗传转化

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摘要

The efficiency of micropropagation of double-node shoots of hop (Humulus lupulus L. cv. Tettnanger) was evaluated using semi-solid and liquid culture medium in RITAA (R) temporary immersion bioreactors. The highest fresh and dry weight of shoots, average number of shoots, and multiplication rate were obtained using the RITAA (R) system, whereas the longest shoots were obtained on semi-solid medium. Moreover, shoot length was affected significantly by the inoculum density of double-node shoots in RITAA (R) vessels. In addition, the RITAA (R) bioreactors were suitable for shoot induction from organogenic calli. The percentage of shoot induction and the shoot fresh and dry weights were significantly higher in the RITAA (R) system than in semi-solid medium. The age of organogenic calli and inoculum density significantly affected the induction of shoots from organogenic calli. The optimum conditions for DNA delivery into hop organogenic calli using the biolistic particle delivery system were also determined. Organogenic calli were bombarded with the plasmid pSR5-2 (gusA and nptII) varying helium pressure (900, 1,100, or 1,350 psi) and target distance (6, 9, or 12 cm). The highest gusA transient activity was obtained using a pressure of 900 psi and a target distance of 6 cm. For stable genetic transformation, 3-wk-old organogenic calli were bombarded with the plasmid pCAMBIA1303 (gusA, mgfp5, and hpt) using these optimum conditions. Stable gusA expression was observed in organogenic calli and shoots after 4 wk of culture on selection medium containing 2.5 mg l(-1) hygromycin. The presence of the mgfp5 gene in the hop genome was confirmed by PCR.
机译:在RITAA(R)临时浸入式生物反应器中,使用半固态和液态培养基评估啤酒花双节点芽的微繁殖效率(Humulus lupulus L. cv。Tettnanger)。使用RITAA(R)系统可获得最高的鲜嫩茎干重,平均芽数和繁殖率,而最长茎则在半固体培养基上获得。此外,芽长受RITAA(R)容器中双节芽的接种密度显着影响。另外,RITAA(R)生物反应器适用于从器官发生的愈伤组织诱导芽。与半固体培养基相比,RITAA(R)系统中的芽诱导百分率以及鲜重和干重均显着更高。器官发生性愈伤组织的年龄和接种密度显着影响了器官发生性愈伤组织的芽诱导。还确定了使用生物弹颗粒递送系统将DNA递送至啤酒花器官发生愈伤组织的最佳条件。用改变氦气压力(900、1,100或1,350 psi)和目标距离(6、9或12 cm)的质粒pSR5-2(gusA和nptII)轰击器官发生的愈伤组织。使用900 psi的压力和6 cm的目标距离可获得最高的gusA瞬态活性。为了稳定的遗传转化,在这些最佳条件下,用质粒pCAMBIA1303(gusA,mgfp5和hpt)轰击了3周龄的器官发生愈伤组织。在含有2.5 mg l(-1)潮霉素的选择培养基上培养4周后,在器官发生性愈伤组织和芽中观察到稳定的gusA表达。通过PCR确认啤酒花基因组中mgfp5基因的存在。

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