Promwikorn Waraporn, Kirirat Pornpimol, Intasaro Pranom, Withyachumnarnkul Boonsirm
Department of Anatomy, Faculty of Science, Prince of Songkla University, Hat Yai, Songkhla 90112, Thailand.
Comp Biochem Physiol B Biochem Mol Biol. 2007 Sep;148(1):20-31. doi: 10.1016/j.cbpb.2007.04.009. Epub 2007 Apr 22.
We investigated changes in the histology and protein expression in the epidermis and sub-epidermis of the black tiger shrimp (Penaeus monondon) during the molting cycle. The epidermis consists of a cell layer located beneath the cuticle, while the sub-epidermis is mainly composed of sub-epidermal cells and tegumental glands. During the molting cycle, the epidermal cells increase in cell height and number, and the sub-epidermis increases in its storage of carbohydrate, protein, mucus, and other unidentified substances at the time of the active period of cuticular regeneration. At the early premolt (stage D0), the epidermal cells are tidily organized, but short. Storage of carbohydrate and protein in the sub-epidermis is not observed. During the rest of the premolt (D1-4 stages) and the early postmolt A stage, epidermal cell height and sub-epidermal deposition are increased, and reached a maximum during the D4 to A stages. The period of late postmolt stages B-C3 is the time for a decrease in epidermal cell height and sub-epidermal depositions. Lastly at intermolt stage C4, the epidermal cells become short, and untidily organized. Sub-epidermal deposition is not observed. Protein expression in the epidermis and sub-epidermis was observed by SDS-PAGE. This revealed that the profile of a protein band with a molecular mass of 57 kDa corresponded with the profile observed by histochemistry. All results point to the conclusion that both the epidermis and sub-epidermis play major roles in cuticular regeneration. It may also reflect the level of metabolic activity of the integument during the molting cycle. In addition, for the first time, this work provides direct evidence of the epidermal and sub-epidermal changes that occur during the molting cycle of the black tiger shrimp.
我们研究了黑虎虾(斑节对虾)蜕皮周期中表皮和表皮下组织的组织学变化及蛋白质表达。表皮由位于角质层下方的细胞层组成,而表皮下组织主要由表皮下细胞和皮膜腺组成。在蜕皮周期中,表皮细胞的高度和数量增加,并且在角质层再生活跃期,表皮下组织中碳水化合物、蛋白质、黏液及其他不明物质的储存量增加。在蜕皮前期早期(D0期),表皮细胞排列整齐,但较短。未观察到表皮下组织中碳水化合物和蛋白质的储存。在蜕皮前期的其余阶段(D1 - 4期)和蜕皮后早期A期,表皮细胞高度和表皮下沉积物增加,并在D4至A期达到最大值。蜕皮后期B - C3期是表皮细胞高度和表皮下沉积物减少的时期。最后在蜕皮间期C4期,表皮细胞变短,排列不整齐。未观察到表皮下沉积物。通过SDS - PAGE观察了表皮和表皮下组织中的蛋白质表达。结果显示,一条分子量为57 kDa的蛋白带的图谱与组织化学观察到的图谱一致。所有结果表明,表皮和表皮下组织在角质层再生中均起主要作用。这也可能反映了蜕皮周期中体表代谢活动的水平。此外,这项工作首次提供了黑虎虾蜕皮周期中表皮和表皮下组织变化的直接证据。