DeLong L, Casson L P, Meyer B J
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.
Genetics. 1987 Dec;117(4):657-70. doi: 10.1093/genetics/117.4.657.
Caenorhabditis elegans compensates for the difference in X chromosome gene dose between males (XO) and hermaphrodites (XX) through a mechanism that equalizes the levels of X-specific mRNA transcripts between the two sexes. We have devised a sensitive and quantitative genetic assay to measure perturbations in X chromosome gene expression caused by mutations that affect this process of dosage compensation. The assay is based on quantitating the precocious alae phenotype caused by a mutation that reduces but does not eliminate the function of the X-linked gene lin-14. We demonstrate that in diploid animals the lin-14 gene is dosage compensated, implying that the normal dosage compensation mechanism in C. elegans lacks the capacity to compensate completely for the additional X chromosome in triplo-X animals. Using the lin-14 assay we compare the effects of mutations in the genes dpy-21, dpy-26, dpy-27, dpy-28, and dpy-22 on X-linked gene expression. Additionally, in the case of dpy-21 we correlate the change in phenotypic expression of lin-14 with a corresponding change in the lin-14 mRNA transcript level.
秀丽隐杆线虫通过一种机制来补偿雄性(XO)和雌雄同体(XX)之间X染色体基因剂量的差异,该机制使两性之间X特异性mRNA转录本的水平相等。我们设计了一种灵敏且定量的遗传测定法,以测量由影响这种剂量补偿过程的突变所引起的X染色体基因表达的扰动。该测定法基于对由一个降低但未消除X连锁基因lin-14功能的突变所导致的早熟翅表型进行定量。我们证明在二倍体动物中lin-14基因是剂量补偿的,这意味着秀丽隐杆线虫中正常的剂量补偿机制缺乏完全补偿三倍体X动物中额外X染色体的能力。使用lin-14测定法,我们比较了基因dpy-21、dpy-26、dpy-27、dpy-28和dpy-22中的突变对X连锁基因表达的影响。此外,对于dpy-21,我们将lin-14表型表达的变化与lin-14 mRNA转录本水平的相应变化相关联。