Herman R K, Kari C K
Cell. 1985 Mar;40(3):509-14. doi: 10.1016/0092-8674(85)90199-0.
We have generated C. elegans animals that carry a duplication as a free chromosome fragment bearing an ace-1+ gene in an otherwise homozygous ace-1 ace-2 genetic background. The single ace-1+ gene in these animals is responsible for coordinated animal movement and acetylcholinesterase activity in the regions of the nerve ring and ventral and dorsal nerve cords, as judged by histochemical assay. We have used other genes on the free duplication whose cell-specific expressions have already been elucidated to identify particular genetic mosaics produced by spontaneous somatic loss of the duplication. The analysis of these mosaics has led us to conclude that the synthesis of acetylcholinesterase by muscle cells is primarily responsible for the coordinated movement conferred by the ace-1+ gene.
我们已经培育出了秀丽隐杆线虫,这些线虫在纯合的ace-1 ace-2基因背景下,携带一个作为游离染色体片段的重复序列,该片段带有ace-1+基因。通过组织化学分析判断,这些线虫中的单个ace-1+基因负责神经环以及腹侧和背侧神经索区域的动物协调运动和乙酰胆碱酯酶活性。我们利用游离重复序列上其他细胞特异性表达已明确的基因,来鉴定由重复序列的自发体细胞丢失产生的特定遗传嵌合体。对这些嵌合体的分析使我们得出结论,肌肉细胞合成乙酰胆碱酯酶是ace-1+基因赋予协调运动的主要原因。