Abehsera Shai, Glazer Lilah, Tynyakov Jenny, Plaschkes Inbar, Chalifa-Caspi Vered, Khalaila Isam, Aflalo Eliahu D, Sagi Amir
Department of Life Sciences, Ben-Gurion University of the Negev, Beer-Sheva, Israel; The National Institute for Biotechnology in the Negev, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
The National Institute for Biotechnology in the Negev, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
PLoS One. 2015 Apr 28;10(4):e0122602. doi: 10.1371/journal.pone.0122602. eCollection 2014.
In crustaceans, like all arthropods, growth is accompanied by a molting cycle. This cycle comprises major physiological events in which mineralized chitinous structures are built and degraded. These events are in turn governed by genes whose patterns of expression are presumably linked to the molting cycle. To study these genes we performed next generation sequencing and constructed a molt-related transcriptomic library from two exoskeletal-forming tissues of the crayfish Cherax quadricarinatus, namely the gastrolith and the mandible cuticle-forming epithelium. To simplify the study of such a complex process as molting, a novel approach, binary patterning of gene expression, was employed. This approach revealed that key genes involved in the synthesis and breakdown of chitin exhibit a molt-related pattern in the gastrolith-forming epithelium. On the other hand, the same genes in the mandible cuticle-forming epithelium showed a molt-independent pattern of expression. Genes related to the metabolism of glucosamine-6-phosphate, a chitin precursor synthesized from simple sugars, showed a molt-related pattern of expression in both tissues. The binary patterning approach unfolds typical patterns of gene expression during the molt cycle of a crustacean. The use of such a simplifying integrative tool for assessing gene patterning seems appropriate for the study of complex biological processes.
与所有节肢动物一样,甲壳类动物的生长伴随着蜕皮周期。这个周期包括矿化几丁质结构的构建和降解等主要生理事件。这些事件反过来又受基因控制,其表达模式可能与蜕皮周期相关。为了研究这些基因,我们进行了下一代测序,并从小龙虾四脊滑螯虾的两个外骨骼形成组织,即胃石和下颌角质层形成上皮组织构建了一个与蜕皮相关的转录组文库。为了简化对蜕皮这样复杂过程的研究,我们采用了一种新方法,即基因表达的二元模式。这种方法表明,参与几丁质合成和分解的关键基因在胃石形成上皮组织中呈现出与蜕皮相关的模式。另一方面,在下颌角质层形成上皮组织中,相同的基因表现出与蜕皮无关的表达模式。与由单糖合成的几丁质前体6-磷酸葡糖胺代谢相关的基因,在这两个组织中均呈现出与蜕皮相关的表达模式。二元模式方法揭示了甲壳类动物蜕皮周期中典型的基因表达模式。使用这样一种简化的综合工具来评估基因模式,似乎适合用于研究复杂的生物过程。