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锯缘青蟹蜕皮周期中角质层超微结构的变化

Cuticle Ultrastructure Changes in the Crab Scylla serrata Over the Molt Cycle.

作者信息

Pratoomchat Boonyarath, Sawangwong Pichan, Guedes Ricardo, Reis Md Maria de lurdes, Machado Jorge

机构信息

Department of Aquatic Science, Faculty of Science, Burapha University, Chonburi 20131 Thailand.

出版信息

J Exp Zool. 2002 Sep 1;293(4):414-26. doi: 10.1002/jez.90002.

Abstract

Morphological and chemical studies on the cuticle during the molt cycle of the crab Scylla serrata were performed in order to understand the layer formation. Cuticle ultrastructure was studied by scanning electron microscopy (SEM). Energy-dispersive, X-ray diffraction, and X-ray fluorescence analysis were used for identification of the elements and phases in the inner surface of the cuticle. In the first stage (A) of cuticle formation, a thin pellicle organized as an irregular fragmented structure is built. It is composed mainly of alpha-chitin/protein beta-keratin-like complexes where heterogeneous mineral nucleation occur. It is impregnated by ferric concretions, responsible for the brown colour of the carapace. At the beginning of the mineralization process, a spheroidal inorganic phase appears consisting of dicalcium phosphate dihydrate (DCPD) Ca/P=1.00, octacalcium phosphate (OCP) Ca/P=1.33 associated with hydromagnesite and bromapatite traces. During further cuticle development in the remaining A stage and in the beginning of the B stage, calcite and magnesian calcite are formed from the precursor calcium phosphate phase. The next development in the C stages is characterized by intense calcareous thickening consisting mainly of calcite and of magnesian calcite, which become the major mineral fraction of the cuticle. Organic-inorganic complex precipitations exhibit different aspects as spongiform, filamentary helicoidal, and concentric radial arrangements during C1, C2, and C3, respectively. During different stages of the cuticle formation in Scylla serrata, these mineral deposits may partially result from the balance among different organic contents, mainly between alpha-chitin and protein beta-keratin-like compounds. On the other hand, the calcium crystallization on apatite and calcite polymorphic structures may be influenced by variations of physico-chemical factors in the cuticle compartment. J. Exp. Zool. 293:414-426, 2002.

摘要

为了解层形成过程,对锯缘青蟹蜕皮周期中的表皮进行了形态学和化学研究。通过扫描电子显微镜(SEM)研究了表皮超微结构。能量色散、X射线衍射和X射线荧光分析用于鉴定表皮内表面的元素和相。在表皮形成的第一阶段(A),构建了一个组织成不规则碎片结构的薄表膜。它主要由α-几丁质/蛋白质β-角蛋白样复合物组成,其中发生异质矿物成核。它被铁结核浸染,这是甲壳褐色的原因。在矿化过程开始时,出现了一个由二水磷酸二钙(DCPD)Ca/P = 1.00、八钙磷酸钙(OCP)Ca/P = 1.33与菱镁矿和溴磷灰石痕迹相关的球状无机相。在剩余的A阶段和B阶段开始时表皮的进一步发育过程中,方解石和镁方解石由前体磷酸钙相形成。C阶段的下一步发育特征是强烈的钙质增厚,主要由方解石和镁方解石组成,它们成为表皮的主要矿物成分。有机-无机复合沉淀在C1、C2和C3阶段分别呈现出海绵状、丝状螺旋状和同心放射状排列的不同形态。在锯缘青蟹表皮形成的不同阶段,这些矿物沉积可能部分源于不同有机成分之间的平衡,主要是α-几丁质和蛋白质β-角蛋白样化合物之间的平衡。另一方面,磷灰石和方解石多晶型结构上的钙结晶可能受表皮隔室内物理化学因素变化的影响。《实验动物学杂志》293:414 - 426,2002年。

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