Bauman J G, Wiegant J, Van Duijn P, Lubsen N H, Sondermeijer P J, Hennig W, Kubli E
Chromosoma. 1981;84(1):1-18. doi: 10.1007/BF00293359.
Fluorochrome-labeled RNA allows the rapid detection of in situ hybrids without the need for long exposure times as in the autoradiographical hybridisation methods. Resolution is high because of the high resolving power of fluorescence microscopy. The application of a previously reported method for the hybrido-cytochemical detection of DNA sequences to polytene chromosomes of Drosophilia is described. The specificity and sensitivity of the method are demonstrated by the hybridisation with polytene chromosomes of 1) rhodamine-labeled 5S RNA, to the 5S rRNA sites of D. melanogaster (56F) and D. hydei (23B), 2) rhodamine-labeled RNA complementary to a plasmid containing histone genes, to the 39DE region of D. melanogaster, 3) rhodamine-labeled D. melanogaster tRNA species (Gly-3 and Arg-2), to their respective loci in D. melanogaster, 4) rhodamine-labeled RNA complementary to the insert of plasmid 232.1 containing part of a D. melanogaster heat shock gene from locus 87C, to D. hydei heat shock locus 2-32A. In the latter instance it was possible to demonstrate the labeling of a double band which escaped unambiguous detection by autoradiography in the radioactive cytochemical hybridisation procedure because of the low topological resolution of autoradiograms. The sensitivity of the fluorochrome-labeled RNA method is compared with the radioactive methods which use 3H- or 125 I-labeled RNAs. The factors governing the sensitivity and the number of bound fluorochrome molecules to be expected are discussed.
荧光染料标记的RNA可实现原位杂交的快速检测,无需像放射自显影杂交方法那样长时间曝光。由于荧光显微镜的高分辨率,分辨率很高。本文描述了一种先前报道的用于DNA序列杂交细胞化学检测的方法在果蝇多线染色体上的应用。通过与以下多线染色体杂交证明了该方法的特异性和敏感性:1)若丹明标记的5S RNA与黑腹果蝇(56F)和海德氏果蝇(23B)的5S rRNA位点杂交;2)若丹明标记的与含有组蛋白基因的质粒互补的RNA与黑腹果蝇的39DE区域杂交;3)若丹明标记的黑腹果蝇tRNA种类(Gly-3和Arg-2)与其在黑腹果蝇中的各自位点杂交;4)若丹明标记的与含有来自87C位点的部分黑腹果蝇热休克基因的质粒232.1插入片段互补的RNA与海德氏果蝇热休克位点2-32A杂交。在后一种情况下,能够证明一条双带的标记,由于放射自显影片的拓扑分辨率低,在放射性细胞化学杂交过程中通过放射自显影无法明确检测到该双带。将荧光染料标记的RNA方法的灵敏度与使用3H或125I标记RNA的放射性方法进行了比较。讨论了影响灵敏度的因素以及预期的结合荧光染料分子数量。