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The chromosome field

机译:染色体场

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Knobs are well defined cytological markers consisting of large chromomeres. They are observed at pachytene and at prophase of mitosis. A total of 264 knobs has been identified in 15 species and varieties belonging to four unrelated families. The distribution of knobs is so regular that four regions can be distinguished within the arm frame: (1) Forbidden region (near the kinetochore) where no knobs have been found. (2) Permitted region where they occur with a frequency of 27.7%. (3) Favoured region where they increase in number along the arm length. (4) Optimal region (telomere zone) where 72.3% of the knobs are found.In some species, the knobs appear in every chromosome and in every arm of the complement. This means that their location is not directly related to the particular genetic constitution of each chromosome or arm. The location of knobs is also independent of the species or the family.It is postulated that the occurrence of knobs on chromosomes is dependent on three factors: (i) a DNA segment with knob-formation capacity, (ii) a molecular message from the telomere which favours their location in its close vicinity and (iii) a kinetochore molecular message with suppressing effect that spreads along the arm. There is a tendency for knobs not to appear in very short arms. A distance between telomere and kinetochore of less than 15 μm does not favour their appearance.
机译:旋钮是由大型染色体组成的定义明确的细胞学标记。在粗线虫和有丝分裂的前期观察到它们。在属于四个无关家族的15个物种和变种中,共鉴定出264个旋钮。旋钮的分布非常规则,可以在手臂框架内区分出四个区域:(1)禁止找到旋钮的禁区(靠近动粒)。 (2)出现频率为27.7%的允许区域。 (3)沿手臂长度增加的偏爱区域。 (4)最佳区域(端粒区),其中有72.3%的纽结存在于某些物种中,纽结出现在补体的每个染色体和每个臂中。这意味着它们的位置与每个染色体或臂的特定遗传结构没有直接关系。纽结的位置也与物种或科系无关。据推测,纽结在染色体上的发生取决于三个因素:(i)具有纽结形成能力的DNA片段,(ii)来自纽结的分子信息端粒有利于它们在其附近的位置,以及(iii)具有抑制作用的动粒分子信息,其沿着手臂传播。旋钮在短臂中不会出现的趋势。端粒和动粒之间的距离小于15μm不利于其外观。

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