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群体水螅异体识别的个体发育及早期形成的嵌合体的命运。

The ontogeny of allorecognition in a colonial hydroid and the fate of early established chimeras.

作者信息

Fuchs Marc-Aurel, Mokady Ofer, Frank Uri

机构信息

Institute of Zoology, University of Heidelberg, Germany.

出版信息

Int J Dev Biol. 2002 Aug;46(5):699-704.

Abstract

Colonies of the marine hydroid, Hydractinia, are able to discriminate between their own tissues and those belonging to unrelated conspecifics. We have studied the ontogeny of this allorecognition system by a series of allogeneic transplantations along a developmental gradient, including two-cell-stage embryos, 8 h morulae, planula larvae and metamorphosed polyps. Allograft acceptance of incompatible tissue was observed in all embryonic and larval stages, whereas metamorphosed polyps rejected incompatible transplanted allografts. Most of the chimeras established at the two-cell-stage, although composed of two allogeneic, incompatible entities with mismatching allorecognition loci, developed normally and remained stable through metamorphosis. The results of post metamorphic transplantation assays among the chimeras and the naive ramets, suggested that both incompatible genotypes were still represented in the chimera despite the onset of alloimmune maturation. The naive colonies always rejected each other. Chimeras established from later embryonic and larval stages did not develop into adult chimeric entities, but rather separated immediately post metamorphosis. We thus show that (1) allorecognition in this species matures during metamorphosis and (2) genetically incompatible entities may coexist in one immunologically mature, chimeric soma, provided that they were grafted early enough in ontogeny.

摘要

海洋水螅体Hydractinia的群体能够区分自身组织与属于无关同种个体的组织。我们通过一系列沿发育梯度的同种异体移植研究了这种异体识别系统的个体发育,包括两细胞期胚胎、8小时桑葚胚、浮浪幼虫和变态后的息肉。在所有胚胎和幼虫阶段均观察到对不相容组织的同种异体移植接受,而变态后的息肉则排斥不相容的移植同种异体移植物。在两细胞期建立的大多数嵌合体,尽管由两个具有不匹配异体识别位点的同种异体、不相容实体组成,但发育正常并在变态过程中保持稳定。在嵌合体和未处理的分株之间进行的变态后移植试验结果表明,尽管异体免疫成熟开始,但两种不相容的基因型在嵌合体中仍然存在。未处理的群体总是相互排斥。从后期胚胎和幼虫阶段建立的嵌合体没有发育成成年嵌合实体,而是在变态后立即分离。因此,我们表明:(1)该物种的异体识别在变态过程中成熟;(2)只要在个体发育早期进行移植,遗传上不相容的实体可能共存于一个免疫成熟的嵌合体中。

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