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Energy integration between the solitary polyps of the clonal coral Lobophyllia corymbosa

机译:克隆珊瑚灰单胞菌孤立息肉之间的能量整合

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摘要

Clonal integration in the coral Lobophyllia corymbosa was studied from two perspectives: transfer of carbon among clonemates and allorecognition. This coral forms colonies in the early post-metamorphic stages. In later ontogeny, the tissues interconnecting polyps die, transforming the colony into a clone of solitary polyps. These polyps continue to live in close proximity but without tissue continuity. Isolated polyps labeled with radioactive carbon in the light showed oriented transfer of assimilates towards adjacent, injured polyps. No significant transfer of carbon was observed towards intact, isogeneic polyps or allogeneic polyps. Grafting of coral tissues resulted in intra-clonal fusion, but only when polyps were previously sectioned. Allogeneic sectioned grafts were always rejected. Intact polyps were unresponsive towards isogeneic and allogeneic counterparts when grafted. Our results show that isolated Lobophyllia polyps not only recognize their clonemates as such, but also help them when necessary, although no tissue continuity exists between them.
机译:从两个角度研究了珊瑚灰单胞菌中的克隆整合:克隆体之间的碳转移和同种异体认知。这种珊瑚在变质后的早期形成菌落。在后来的个体发育中,息肉相互连接的组织死亡,将菌落转变成孤立的息肉克隆。这些息肉继续生活在附近,但没有组织连续性。在光下用放射性碳标记的孤立息肉显示同化物向邻近的受伤息肉定向转移。没有观察到向完整的同基因息肉或同种异体息肉的碳的显着转移。珊瑚组织的嫁接导致克隆内融合,但前提是先前已将息肉切成薄片。异体切片的移植物总是被拒绝。当移植时,完整的息肉对同基因和同种异体没有反应。我们的研究结果表明,分离出的叶绿体息肉不仅可以识别其克隆体,而且在必要时可以帮助其,尽管它们之间不存在组织连续性。

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