López-Ochoa L A, Apolinar-Hernández M M, Peña-Ramírez Y J
Centro de Investigación Científica de Yucatán AC, Mérida, Yucatán, México.
El Colegio de la Frontera Sur, Ciudad Industrial Lerma, Campeche, Campeche, México
Genet Mol Res. 2015 Feb 20;14(1):1469-78. doi: 10.4238/2015.February.20.2.
The forest tree Spanish cedar (Cedrela odorata L.) is well-known for its high-value timber; however, this species is attacked by the shoot borer (Hypsipyla grandella) during its early years of development, resulting in branched stems and making the plants useless for high-quality wood production. The generation of resistant varieties expressing entomotoxic proteins may be an alternative to pesticide treatments. The use of plastid transformation rather than nuclear transformation should be used because it reduces the risk of transgene dissemination by pollen. Chloroplast transformation vectors require an expression cassette flanked by homologous plastid sequences to drive plastome recombination. Thus, C. odorata plastome sequences are a prerequisite. The rrn16-rrn23 plastome region was selected, cloned, and characterized. When the sequence identity among the rrn16-rrn23 regions from C. odorata and Nicotiana tabacum was compared, 3 inDels of 240, 104, and 39 bp were found that might severely affect transformation efficiency. Using this region, a new transformation vector was developed using pUC19 as a backbone by inserting the rrn16-trnI and trnA-rrn23 sequences from C. odorata and adding 2 independent expression cassettes into the trnI-trnA intergenic region, conferring spectinomycin resistance, the ability to express the gfp reporter gene, and a site that can be used to express any other gene of interest.
林木西班牙雪松(Cedrela odorata L.)以其高价值木材而闻名;然而,该物种在其发育早期会受到蛀梢蛾(Hypsipyla grandella)的侵害,导致茎干分叉,使植株无法用于高质量木材生产。培育表达昆虫毒性蛋白的抗性品种可能是替代农药处理的一种方法。应采用质体转化而非核转化,因为这可降低花粉传播转基因的风险。叶绿体转化载体需要一个由同源质体序列侧翼的表达盒来驱动质体基因组重组。因此,西班牙雪松树质体基因组序列是一个先决条件。选择、克隆并表征了rrn16 - rrn23质体基因组区域。当比较西班牙雪松和烟草rrn16 - rrn23区域之间的序列同一性时,发现了3个分别为240、104和39 bp的插入缺失,这可能会严重影响转化效率。利用该区域,以pUC19为骨架构建了一个新的转化载体,通过插入西班牙雪松的rrn16 - trnI和trnA - rrn23序列,并在trnI - trnA基因间隔区添加2个独立的表达盒,赋予壮观霉素抗性、表达gfp报告基因的能力以及一个可用于表达任何其他感兴趣基因的位点。