首页> 美国卫生研究院文献>PLoS Clinical Trials >What Role Do Annelid Neoblasts Play? A Comparison of the Regeneration Patterns in a Neoblast-Bearing and a Neoblast-Lacking Enchytraeid Oligochaete
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What Role Do Annelid Neoblasts Play? A Comparison of the Regeneration Patterns in a Neoblast-Bearing and a Neoblast-Lacking Enchytraeid Oligochaete

机译:Annelid Neoblasts扮演什么角色?含新生胚芽和缺乏新生胚芽鞘寡聚寡糖的再生模式的比较

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摘要

The term ‘neoblast’ was originally coined for a particular type of cell that had been observed during annelid regeneration, but is now used to describe the pluripotent/totipotent stem cells that are indispensable for planarian regeneration. Despite having the same name, however, planarian and annelid neoblasts are morphologically and functionally distinct, and many annelid species that lack neoblasts can nonetheless substantially regenerate. To further elucidate the functions of the annelid neoblasts, a comparison was made between the regeneration patterns of two enchytraeid oligochaetes, Enchytraeus japonensis and Enchytraeus buchholzi, which possess and lack neoblasts, respectively. In E. japonensis, which can reproduce asexually by fragmentation and subsequent regeneration, neoblasts are present in all segments except for the eight anterior-most segments including the seven head-specific segments, and all body fragments containing neoblasts can regenerate a complete head and a complete tail, irrespective of the region of the body from which they were originally derived. In E. japonensis, therefore, no antero-posterior gradient of regeneration ability exists in the trunk region. However, when amputation was carried out within the head region, where neoblasts are absent, the number of regenerated segments was found to be dependent on the level of amputation along the body axis. In E. buchholzi, which reproduces only sexually and lacks neoblasts in all segments, complete heads were never regenerated and incomplete (hypomeric) heads could be regenerated only from the anterior region of the body. Such an antero-posterior gradient of regeneration ability was observed for both the anterior and posterior regeneration in the whole body of E. buchholzi. These results indicate that the presence of neoblasts correlates with the absence of an antero-posterior gradient of regeneration ability along the body axis, and suggest that the annelid neoblasts are more essential for efficient asexual reproduction than for the regeneration of missing body parts.
机译:“成神经细胞”一词最初是为在类神经细胞再生过程中观察到的特定类型的细胞创造的,但现在用于描述多能/全能干细胞,这对于涡虫的再生是必不可少的。尽管名称相同,但是涡虫和无核的成瘤细胞在形态和功能上是截然不同的,但是许多缺乏成神经细胞的无核种类仍可以大量再生。为了进一步阐明无环神经母细胞的功能,比较了分别具有和不具有新胚细胞的两种Enchytraeus jagoensis和Enchytraeus buchholzi的寡壳寡核苷酸的再生模式。在可以通过破碎和随后再生而无性繁殖的日本大肠埃希菌中,除八个最前面的区域(包括七个头部特定区域)外,所有区域都存在成骨细胞,而所有含有成骨细胞的身体片段都可以再生完整的头部和完整的尾巴,无论它们最初来自哪个身体区域。因此,在日本E.japonensis中,树干区域不存在再生能力的前后梯度。但是,当在没有成胚细胞的头部区域进行截肢时,发现再生节段的数量取决于沿体轴的截肢水平。在布希氏大肠杆菌中,仅在有性生殖的情况下,在所有节段中都没有新生胚,从没有再生出完整的头部,并且只能从身体的前部区域再生出不完整的(低聚)头部。在布氏大肠杆菌的整个体内的前后再生均观察到这种再生能力的前后梯度。这些结果表明,成神经细胞的存在与沿体轴的再生能力的前后不存在梯度有关,并且表明与有效缺失的身体再生相比,无核成细胞对于有效的无性繁殖更为重要。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Maroko Myohara;

  • 作者单位
  • 年(卷),期 2009(7),5
  • 年度 2009
  • 页码 e37319
  • 总页数 10
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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