首页> 外文期刊>Development >Involvement of the sonic hedgehog, patched 1 and bmp2 genes in patterning of the zebrafish dermal fin rays.
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Involvement of the sonic hedgehog, patched 1 and bmp2 genes in patterning of the zebrafish dermal fin rays.

机译:声刺猬,修补1和bmp2基因参与斑马鱼真皮鳍射线的图案。

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The signaling molecule encoded by Sonic hedgehog (shh) participates in the patterning of several embryonic structures including limbs. During early fin development in zebrafish, a subset of cells in the posterior margin of pectoral fin buds express shh. We have shown that regulation of shh in pectoral fin buds is consistent with a role in mediating the activity of a structure analogous to the zone of polarizing activity (ZPA) (Akimenko and Ekker (1995) Dev. Biol. 170, 243-247). During growth of the bony rays of both paired and unpaired fins, and during fin regeneration, there does not seem to be a region equivalent to the ZPA and one would predict that shh would play a different role, if any, during these processes specific to fish fins. We have examined the expression of shh in the developing fins of 4-week old larvae and in regenerating fins of adults. A subset of cells in the basal layer of the epidermis in close proximity to the newly formed dermal bone structures of the fin rays, the lepidotrichia, express shh, and ptc1 which is thought to encode the receptor of the SHH signal. The expression domain of ptc1 is broader than that of shh and adjacent blastemal cells releasing the dermal bone matrix also express ptc1. Further observations indicate that the bmp2 gene, in addition to being expressed in the same cells of the basal layer of the epidermis as shh, is also expressed in a subset of the ptc1-expressing cells of the blastema. Amputations of caudal fins immediately after the first branching point of the lepidotrichia, and global administration of all-trans-retinoic acid, two procedures known to cause fusion of adjacent rays, result in a transient decrease in the expression of shh, ptc1 and bmp2. The effects of retinoic acid on shh expression occur within minutes after the onset of treatment suggesting direct regulation of shh by retinoic acid. These observations suggest a role for shh, ptc1 and bmp2 in patterning of the dermoskeleton of developing and regenerating teleost fins.
机译:由Sonic刺猬(shh)编码的信号分子参与包括肢体在内的几种胚胎结构的模式化。在斑马鱼的早期鳍发育过程中,胸鳍芽后缘的一部分细胞表达嘘声。我们已经表明,在胸鳍芽中调节嘘与在介导类似于极化活性区(ZPA)的结构的活性中的作用是一致的(Akimenko和Ekker(1995)Dev。Biol。170,243-247)。 。在成对和不成对的鳍的骨射线生长期间以及在鳍的再生过程中,似乎没有一个与ZPA相等的区域,并且人们可以预测,在这些特定于这些过程的过程中,shh将起不同的作用。鱼鳍。我们已经检查了shh在4周龄幼虫的发育鳍和成年成鳍中的表达。表皮基底层中的细胞子集与新形成的鳍鳍的真皮骨结构(鳞翅目)非常接近,shh和ptc1被认为可以编码SHH信号的受体。 ptc1的表达结构域比shh的表达域宽,释放真皮骨基质的相邻胚细胞也表达ptc1。进一步的观察表明,bmp2基因除了在表皮基底层的相同细胞中与shh相同表达外,还在母细胞的ptc1表达细胞的子集中表达。在鳞翅目鱼类的第一个分支点后立即截断尾鳍,并全程施用全反式视黄酸,这两种已知可引起相邻射线融合的方法,导致shh,ptc1和bmp2的表达瞬时降低。视黄酸对shh表达的影响发生在治疗开始后的几分钟内,这表明视黄酸直接调节shh。这些观察结果表明shh,ptc1和bmp2在发育和再生硬骨鱼鳍的真皮骨骼的模式中起作用。

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