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昆虫体节中的模式稳定性:II. 节间区域。

Pattern stability in the insect segment : II. The intersegmental region.

作者信息

Nübler-Jung Katharina

机构信息

Biologisches Institut I (Zoologie) der Albert-Ludwigs-Universität, Albertstraße 21a, D-7800, Freiburg i.Br., Germany.

出版信息

Wilehm Roux Arch Dev Biol. 1979 Sep;186(3):211-233. doi: 10.1007/BF00848590.

DOI:10.1007/BF00848590
PMID:28304945
Abstract
  1. InDysdercus the abdominal segments are isolated from each other by an intersegmental region which can be distinguished on the basis of morphological and physiological criteria. 2. The intersegmental region (ISR) consists of the visible segment border and narrow strips of cells anterior and posterior to it. 3. The anterior strip (w-ISR) is white and merges with the white segment region (wS) in front of it, and the posterior strip (r-ISR) is red and merges posteriorly with the red segment region (rS). The wS and the rS meet in the middle of the segment; together they form the segment proper. 4. Grafts from the ISR have been transplanted to various positions within a segment. The reactions of graft and host, respectively, can be distinguished in combinations involving a colour mutant and/or individuals of different sexes. 5. The results show that cells of the r-ISR and the w-ISR each have some adhesiveness towards those tissues which they border in situ, and less adhesiveness towards other tissues. That is, the w-ISR is adhesive towards the r-ISR and wS and is usually rejected by tissue of the rS, whereas the r-ISR is adhesive towards tissue of the w-ISR and rS, but is rejected by tissue of the wS. 6. The role which the ISR plays as a barrier between adjacent segments can essentially be interpreted on the basis of differences in cell adhesiveness. 7. Besides these adhesiveness properties the two parts of the ISR show a long-range influence on polarity and pigment synthesis in surrounding segment tissue. 8. The adhesiveness properties of the r-ISR and w-ISR can explain why the segment boundary forms such a straight line and why the ISR tends to grow between tissues from non-contiguous segment levels. This property can explain the hitherto not understood healing capacity of the ISR which even after wounding prevents cellular interactions between adjacent segments so effectively.
摘要
  1. 在红蝽中,腹节由节间区域彼此分隔开,该节间区域可根据形态学和生理学标准加以区分。2. 节间区域(ISR)由可见的节边界及其前后的狭窄细胞带组成。3. 前部细胞带(w-ISR)呈白色,与前方的白色节区域(wS)融合,而后部细胞带(r-ISR)呈红色,向后与红色节区域(rS)融合。wS和rS在节的中部相遇;它们共同构成节本身。4. 已将来自ISR的移植物移植到节内的不同位置。在涉及颜色突变体和/或不同性别的个体的组合中,可以分别区分移植物和宿主的反应。5. 结果表明,r-ISR和w-ISR的细胞对它们在原位相邻的组织都有一定的粘附性,而对其他组织的粘附性较小。也就是说,w-ISR对r-ISR和wS有粘附性,通常会被rS组织排斥,而r-ISR对w-ISR和rS组织有粘附性,但会被wS组织排斥。6. ISR作为相邻节之间屏障所起的作用基本上可以根据细胞粘附性的差异来解释。7. 除了这些粘附特性外,ISR的两个部分对周围节组织的极性和色素合成还表现出远距离影响。8. r-ISR和w-ISR的粘附特性可以解释为什么节边界形成这样一条直线,以及为什么ISR倾向于在来自非连续节水平的组织之间生长。这一特性可以解释迄今为止尚未理解的ISR的愈合能力,即即使受伤后,它也能如此有效地阻止相邻节之间的细胞相互作用。

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本文引用的文献

1
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Wilhelm Roux Arch Entwickl Mech Org. 1962 Jan;154(1):56-102. doi: 10.1007/BF00577777.
2
Pattern stability in the insect segment : I. Pattern reconstitution by intercalary regeneration and cell sorting inDysdercus intermedius Dist.昆虫体节中的模式稳定性:I. 中间红蝽(Dysdercus intermedius Dist.)居间再生和细胞分选实现模式重建
Wilehm Roux Arch Dev Biol. 1977 Mar;183(1):17-40. doi: 10.1007/BF00849032.
3
[Intercalary regeneration and segmental gradients in the extremities ofLeucophaea-larvae (Blattaria) : I. Femur and tibia].
昆虫表皮:超细胞组织极性的紊乱并不妨碍细胞极性的表达。
Rouxs Arch Dev Biol. 1987 Jul;196(5):286-289. doi: 10.1007/BF00395951.
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Measurement with an elastimeter of the stiffness of epithelial vesicles from pupal moth eye.使用弹性测量仪测量蛾蛹眼上皮囊泡的硬度。
Rouxs Arch Dev Biol. 1986 Feb;195(2):133-136. doi: 10.1007/BF00456110.
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Extra tarsal joints and abnormal cuticular polarities in various mutants ofDrosophila melanogaster.黑腹果蝇各种突变体中的额外跗关节和异常表皮极性。
Rouxs Arch Dev Biol. 1986 Apr;195(3):145-157. doi: 10.1007/BF02439432.
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Wilhelm Roux Arch Entwickl Mech Org. 1970 Dec;165(4):303-341. doi: 10.1007/BF00573677.
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[Intercalary regeneration and segmental gradients in the extremities of Leucophaea (Blattaria) larvae. II. Coxa and tarsus].[德国蜚蠊(蜚蠊目)幼虫肢体的间插再生与节段梯度。II. 基节和跗节]
Dev Biol. 1970 Nov;23(3):355-79. doi: 10.1016/0012-1606(70)90104-1.
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Does differential adhesion govern self-assembly processes in histogenesis? Equilibrium configurations and the emergence of a hierarchy among populations of embryonic cells.差异黏附是否控制组织发生中的自组装过程?平衡构型与胚胎细胞群体中层次结构的出现。
J Exp Zool. 1970 Apr;173(4):395-433. doi: 10.1002/jez.1401730406.
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Diffusion in embryogenesis.胚胎发生中的扩散
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The development of patterns in the integument of insects.昆虫体表图案的发育。
Adv Morphog. 1967;6:33-88. doi: 10.1016/b978-1-4831-9953-5.50006-8.
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A clonal analysis of segment development in Oncopeltus (Hemiptera).红蝽(半翅目)体节发育的克隆分析
J Embryol Exp Morphol. 1973 Dec;30(3):681-99.