Maximova S, Miller C, Antúnez de Mayolo G, Pishak S, Young A, Guiltinan M J
Department of Horticulture, College of Agricultural Sciences, The Pennsylvania State University, 103 Tyson Building, University Park, PA 16802-4200, USA.
Plant Cell Rep. 2003 Jun;21(9):872-83. doi: 10.1007/s00299-003-0596-7. Epub 2003 Apr 3.
We describe a protocol for Agrobacterium-mediated genetic transformation of Theobroma cacao L. using cotyledonary explants from primary somatic embryos (SEs) and A. tumefaciens strain AGL1. Transgenic plants carrying the visible marker, gene green fluorescent protein ( EGFP), the selectable marker gene neomycin phosphotransferase II ( NPTII), the class I chitinase gene from cacao ( Chi), and tobacco nuclear matrix attachment regions (MARs) in different combinations were successfully produced via regeneration of secondary SEs. The presence of the Chi gene or MARs did not influence the number of transgenic plants produced compared to the marker genes alone. However, the inclusion of MARs contributed to increased mean GFP expression in the population of transgenics. Additionally, the presence of MARs reduced the occurrence of gene silencing and stabilized high levels of GFP expression in lines of transgenic plants multiplied via reiterative somatic embryogenesis. Ninety-four transgenic plants were acclimated in a greenhouse and grown to maturity. Detailed growth analysis indicated that there were no differences in various growth parameters between transgenic and non-transgenic SE-derived plants. Seeds produced from two genetic crosses with one of the transgenic lines were analyzed for EGFP expression-a near-perfect 1:1 segregation was observed, indicating that this line resulted from the insertion of a single locus of T-DNA.
我们描述了一种利用来自初级体细胞胚(SEs)的子叶外植体和根癌农杆菌AGL1菌株进行农杆菌介导的可可遗传转化的方案。通过次级SEs的再生,成功培育出了携带可见标记基因绿色荧光蛋白(EGFP)、选择标记基因新霉素磷酸转移酶II(NPTII)、可可的I类几丁质酶基因(Chi)以及不同组合的烟草核基质附着区(MARs)的转基因植物。与仅含有标记基因相比,Chi基因或MARs的存在并不影响转基因植物的产生数量。然而,MARs的加入使得转基因群体中的平均GFP表达量有所增加。此外,MARs的存在减少了基因沉默的发生,并稳定了通过反复体细胞胚胎发生繁殖的转基因植物系中高水平的GFP表达。94株转基因植物在温室中驯化并生长至成熟。详细的生长分析表明,转基因和非转基因SE衍生植物在各种生长参数上没有差异。对与其中一个转基因系进行的两个遗传杂交产生的种子进行了EGFP表达分析,观察到近乎完美的1:1分离,表明该系是由单个T-DNA位点插入产生的。