Fontana P G, Vickery V R
Chromosoma. 1975;50(4):371-91. doi: 10.1007/BF00327075.
Additional samples from a discrete population of the pygmy grasshopper Tettigidea lateralis, at the periphery of the species range, have shown that the frequency of the B-chromosomes has remained stable over a two year period (30-35%), and that there is not significant difference for this metric in the two sexes. The intensity of the preferential movement of the B with the X at male first meiotic division has also remained constant in time and homogenous in different individuals. Hence it is possible that this distortional effect plays a role in the equilibrium frequency of the B in the population. The B's may possess special adaptive properties under ecologically marginal conditions, since in a number of more 'central' demes they occur at much lowere frequencies (7-9%). -Unique morphological and/or behavioral variants of the standard B were encountered in addition to distinct cases of spontaneous fragmentation of A elements. The meiotic behavior and chromatic expression of these centric fragments provide evidence on the possible origin and evolution of supernumeraries. A modified. Giemsa staining technique has been used to identify regions of centromeric (C-) hererochromatin in mitotic and meiotic chromosomes. The C-banding pattern of the X and the allocyclically similar B is compared. It suggested that the B may have originated from the X by deletion of centromeric heterochromatin. This may have affected the centromere "strength" of the nascent B leading to its preferential movement with the X at anaphase I.
在侏儒蚱蜢Tettigidea lateralis物种分布范围边缘的一个离散种群中采集的额外样本显示,B染色体的频率在两年时间内保持稳定(30 - 35%),并且在两性中该指标没有显著差异。在雄性第一次减数分裂时,B染色体与X染色体优先移动的强度在时间上也保持恒定,并且在不同个体中是均匀的。因此,这种扭曲效应可能在该种群中B染色体的平衡频率中起作用。在一些生态边缘条件下,B染色体可能具有特殊的适应特性,因为在许多更“中心”的种群中,它们出现的频率要低得多(7 - 9%)。除了A染色体元件的明显自发断裂情况外,还遇到了标准B染色体独特的形态和/或行为变异。这些着丝粒片段的减数分裂行为和染色质表达为B染色体的可能起源和进化提供了证据。一种改良的吉姆萨染色技术已被用于识别有丝分裂和减数分裂染色体中的着丝粒(C -)异染色质区域。比较了X染色体和异周期相似的B染色体的C带模式。这表明B染色体可能是通过着丝粒异染色质的缺失从X染色体起源的。这可能影响了新生B染色体的着丝粒“强度”,导致其在后期I与X染色体优先移动。