Institute of Evolutionary Genetics, Heinrich Heine University Duesseldorf, Duesseldorf, Germany.
Insect Mol Biol. 2013 Aug;22(4):399-410. doi: 10.1111/imb.12031. Epub 2013 May 14.
The honey bee, Apis mellifera, displays a rich behavioural repertoire, social organization and caste differentiation, and has an interesting mode of sex determination, but we still know little about its underlying genetic programs. We lack stable transgenic tools in honey bees that would allow genetic control of gene activity in stable transgenic lines. As an initial step towards a transgenic method, we identified promoter sequences in the honey bee that can drive constitutive, tissue-specific and cold shock-induced gene expression. We identified the promoter sequences of Am-actin5c, elp2l, Am-hsp83 and Am-hsp70 and showed that, except for the elp2l sequence, the identified sequences were able to drive reporter gene expression in Sf21 cells. We further demonstrated through electroporation experiments that the putative neuron-specific elp2l promoter sequence can direct gene expression in the honey bee brain. The identification of these promoter sequences is an important initial step in studying the function of genes with transgenic experiments in the honey bee, an organism with a rich set of interesting phenotypes.
蜜蜂(Apis mellifera)表现出丰富的行为表现、社会组织和等级分化,并且具有有趣的性别决定方式,但我们对其潜在的遗传程序仍然知之甚少。我们缺乏在蜜蜂中稳定的转基因工具,这些工具可以在稳定的转基因系中对基因活性进行遗传控制。作为向转基因方法迈出的第一步,我们鉴定了蜜蜂中的启动子序列,这些序列可以驱动组成型、组织特异性和冷休克诱导的基因表达。我们鉴定了 Am-actin5c、elp2l、Am-hsp83 和 Am-hsp70 的启动子序列,并且除了 elp2l 序列外,所鉴定的序列能够在 Sf21 细胞中驱动报告基因的表达。我们通过电穿孔实验进一步证明,推定的神经元特异性 elp2l 启动子序列可以指导蜜蜂大脑中的基因表达。这些启动子序列的鉴定是在蜜蜂中进行转基因实验研究具有丰富有趣表型的基因功能的重要初始步骤。