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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic Analysis of Isometric Growth Control Mechanisms in the Zebrafish Caudal Fin
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Genetic Analysis of Isometric Growth Control Mechanisms in the Zebrafish Caudal Fin

机译:斑马鱼尾鳍等距生长控制机制的遗传分析

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The body and fins of the zebrafish grow rapidly as juveniles and slower as they reach maturation. Throughout their lives, the fins grow isometrically with respect to the body. Growth of individual fin rays is achieved by the distal addition of bony segments. We have investigated the genetic control of mechanisms that initiate new segments or control size of newly initiated segments. We find that both segment initiation and segment length are regulated during fin growth in wild-type fish. We examined the growth properties of lof and sof fin length mutants for effects on the number and length of fin ray segments. Fins of lof mutants continue to grow rapidly even after wild-type fin growth slows, resulting in positive allometric growth and additional fin ray segments. We suggest that lof mutants bypass mechanisms that limit segment initiation. Isometric growth is retained in sof mutants, resulting in shorter fins one-half the length of wild-type fins. The primary defect in sof mutants is that fin ray segments are shorter than wild-type segments, although segment number is also diminished. Double mutants for sof ; lof reveal that segment length and segment number are controlled in different pathways. Our findings suggest that the lof gene product regulates segment initiation and the sof gene product regulates segment length.
机译:斑马鱼的身体和鳍随着幼鱼的生长而迅速生长,而随着它们的成熟而生长较慢。鳍在其整个生命中都相对于身体等轴测生长。单个鳍鳍的生长是通过向远端增加骨节来实现的。我们已经研究了启动新片段的机制的遗传控制或新启动片段的控制大小。我们发现在野生型鱼的鳍生长过程中,节段的起始和节段的长度都受到调节。我们检查了lof和sof鳍长度突变体的生长特性,以了解对鳍射线段的数量和长度的影响。即使野生型鳍的生长减慢,lof突变体的鳍仍继续快速生长,从而导致正向异形生长和其他鳍射线片段。我们建议lof突变体绕过限制片段起始的机制。 sof突变体保留了等距生长,从而导致较短的鳍片长为野生型鳍片长度的一半。 sof突变体的主要缺陷是鳍片段比野生型段短,尽管段数也减少了。 sof的双重突变体; lof揭示了片段长度和片段数量在不同途径中受到控制。我们的发现表明,lof基因产物调节片段的起始,而sof基因产物调节片段的长度。

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