Ennis T J
Can J Genet Cytol. 1976 Mar;18(1):85-91. doi: 10.1139/g76-012.
Chromosome replication has been analysed in four species of Chilocorus. In C. ORBUS Csy., C. tricyclus Smith, and C. hexacyclus Smith, centric regions of all chromosomes are last to replicate, preceded in order by heterochromatic arms and euchromatic arms. In C. stigma Say, very late replication of centric regions can be detected only in otherwise wholly euchromatic chromosomes (= monophasics); in chromosomes with one arm heterochromatic ( = disphasics), these arms are last to replicate. Based on pachytene bivalent morphology and chromosome banding patterns, and supported by autoradiographic data, models are presented for the general organisation of Chilocorus chromosomes. All chromosomes in the first three species are subdivided into euchromatic arm, centric heterochromatin, and either a second euchromatic are (monophasics) or a heterochromatic arm (diphasics). Chilocorus stigma diphasics apparently lack distinct centric organisation, and are therefore divided into euchromatic and heterochromatic arms only.
已对四种红瓢虫属物种的染色体复制进行了分析。在圆斑弯叶毛瓢虫、三突花瓢虫和六斑月瓢虫中,所有染色体的着丝粒区域最后复制,其次序是异染色质臂和常染色质臂。在红点唇瓢虫中,仅在其他方面完全为常染色质的染色体(=单相染色体)中才能检测到着丝粒区域的极晚复制;在具有一条异染色质臂的染色体(=双相染色体)中,这些臂最后复制。基于粗线期二价体形态和染色体带型,并得到放射自显影数据的支持,提出了红瓢虫属染色体的一般组织模式。前三个物种的所有染色体都可细分为常染色质臂、着丝粒异染色质以及第二条常染色质臂(单相染色体)或异染色质臂(双相染色体)。红点唇瓢虫的双相染色体显然缺乏明显的着丝粒组织,因此仅分为常染色质臂和异染色质臂。