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整合最小转基因表达盒的转基因能源甘蔗植株的生成

Generation of transgenic energy cane plants with integration of minimal transgene expression cassette.

作者信息

Fouad Walid M, Hao Wu, Xiong Yuan, Steeves Cody, Sandhu Surinder K, Altpeter Fredy

机构信息

Agronomy Department, Plant Molecular and Cellular Biology Program, Genetics Institute, University of Florida, Gainesville, FL. USA.

出版信息

Curr Pharm Biotechnol. 2015;16(5):407-13.

Abstract

Lignocellulosic biomass has the potential to serve as feedstock and direct replacement for petrochemicals in the fuel, chemical, pharmaceutical and material industries. Energy cane has been identified by the U.S. Department of Energy (DOE) as prime lignocellulosic feedstock as it produces record biomass yields and is able to grow on low-value land with reduced inputs. Molecular improvement of energy cane is an essential step toward the development of a high-value crop and may contribute to improved biomass conversion to value added products. Such improvements require a development of an efficient regeneration and transformation system for the vegetatively propagated energy cane varieties. In this report, an efficient biolistic gene delivery protocol for energy canes (genotype L 79-1002 and Ho 00-961) has been established with immature leaf rolls as explants. Embryonic calli, developed approximately 6 weeks after culture initiation and was used as target for biolistic transfer of a minimum expression cassette of P-ubi::nptII::35S polyA derived from plasmid pJFNPTII. Putative transgenic clones of callus were obtained after selection on callus induction medium supplemented with 30 mg l(-1) geneticin. Regeneration was carried out on NB medium, which is modified from MS supplemented with 1.86 mg l(-1) naphthaleneacetic acid (NAA) and 0.1mg l(-1), 6- benzylaminopurine (BAP) and 20mg l(-1) paromomycin. Shoots growing on selection media were transferred to hormone free medium with 20 mg l(-1) paromomycin. Putative transgenic lines were first analyzed by PCR. Transgene integration was confirmed by Southern blot analysis. ELISA (Enzyme-Linked Immunosorbent Assay) and Immunochromathography assays confirmed transgene expression.

摘要

木质纤维素生物质有潜力作为原料,并在燃料、化工、制药和材料行业直接替代石化产品。美国能源部(DOE)已将能源甘蔗确定为优质木质纤维素原料,因为它能产出创纪录的生物质产量,且能在低价值土地上以较少投入生长。能源甘蔗的分子改良是培育高价值作物的关键一步,可能有助于提高生物质转化为增值产品的效率。这种改良需要为无性繁殖的能源甘蔗品种开发一种高效的再生和转化系统。在本报告中,以未成熟叶卷为外植体,建立了一种针对能源甘蔗(基因型L 79 - 1002和Ho 00 - 961)的高效生物枪法基因传递方案。培养开始约6周后形成的胚性愈伤组织被用作生物枪法转移源自质粒pJFNPTII的P - ubi::nptII::35S polyA最小表达盒的靶标。在添加30 mg l(-1)遗传霉素的愈伤组织诱导培养基上筛选后,获得了愈伤组织的推定转基因克隆。在NB培养基上进行再生,NB培养基是在MS培养基基础上改良的,添加了1.86 mg l(-1)萘乙酸(NAA)、0.1mg l(-1) 6 - 苄基腺嘌呤(BAP)和20mg l(-1)巴龙霉素。在选择培养基上生长的芽被转移到含有20 mg l(-1)巴龙霉素的无激素培养基上。首先通过PCR分析推定转基因株系。通过Southern杂交分析确认转基因整合。酶联免疫吸附测定(ELISA)和免疫层析测定证实了转基因表达。

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