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Highly efficient mesophyll protoplast isolation and PEG-mediated transient gene expression for rapid and large-scale gene characterization in cassava (Manihot esculenta Crantz)

机译:高效叶肉原生质体分离和PEG介导的瞬时基因表达,可快速,大规模地表征木薯(Manihot esculenta Crantz)

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BackgroundCassava ( Manihot esculenta Crantz) is a major crop extensively cultivated in the tropics as both an important source of calories and a promising source for biofuel production. Although stable gene expression have been used for transgenic breeding and gene function study, a quick, easy and large-scale transformation platform has been in urgent need for gene functional characterization, especially after the cassava full genome was sequenced. MethodsFully expanded leaves from in vitro plantlets of Manihot esculenta were used to optimize the concentrations of cellulase R-10 and macerozyme R-10 for obtaining protoplasts with the highest yield and viability. Then, the optimum conditions (PEG4000 concentration and transfection time) were determined for cassava protoplast transient gene expression. In addition, the reliability of the established protocol was confirmed for subcellular protein localization. ResultsIn this work we optimized the main influencing factors and developed an efficient mesophyll protoplast isolation and PEG-mediated transient gene expression in cassava. The suitable enzyme digestion system was established with the combination of 1.6% cellulase R-10 and 0.8% macerozyme R-10 for 16?h of digestion in the dark at 25?°C, resulting in the high yield (4.4?×?107 protoplasts/g FW) and vitality (92.6%) of mesophyll protoplasts. The maximum transfection efficiency (70.8%) was obtained with the incubation of the protoplasts/vector DNA mixture with 25% PEG4000 for 10?min. We validated the applicability of the system for studying the subcellular localization of MeSTP7 (an H+/monosaccharide cotransporter) with our transient expression protocol and a heterologous Arabidopsis transient gene expression system. ConclusionWe optimized the main influencing factors and developed an efficient mesophyll protoplast isolation and transient gene expression in cassava, which will facilitate large-scale characterization of genes and pathways in cassava.
机译:背景木薯(Manihot esculenta Crantz)是热带地区广泛种植的一种主要农作物,既是卡路里的重要来源,又是生物燃料生产的有希望的来源。尽管稳定的基因表达已用于转基因育种和基因功能研究,但急需快速,简便且大规模的转化平台来进行基因功能表征,尤其是在对木薯全基因组进行测序后。方法采用Manihot esculenta离体苗的全膨化叶片,优化纤维素酶R-10和Macrozyme R-10的浓度,以获得最高产量和活力的原生质体。然后,确定了木薯原生质体瞬时基因表达的最佳条件(PEG4000浓度和转染时间)。此外,已建立的协议的可靠性被证实可用于亚细胞蛋白定位。结果在这项工作中,我们优化了主要影响因素,并开发了有效的叶肉原生质体分离和PEG介导的木薯瞬时基因表达。通过在1.6°C的纤维素酶R-10和0.8%的微酶R-10的组合下在25°C的黑暗环境中消化16?h,可以建立合适的酶消化系统,从而获得高产量(4.4?×?10) 7 原生质体/ g FW)和叶肉原生质体的活力(92.6%)。将原生质体/载体DNA混合物与25%PEG4000孵育10分钟,可获得最高转染效率(70.8%)。我们使用瞬时表达方案和异源拟南芥瞬时基因表达系统验证了该系统对研究MeSTP7(H + /单糖共转运蛋白)的亚细胞定位的适用性。结论我们优化了主要影响因素并开发了有效的木薯叶肉原生质分离和瞬时基因表达方法,这将有助于木薯基因和途径的大规模表征。

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