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中华绒螯蟹蜕皮周期特异性差异基因表达谱分析。

Moult cycle specific differential gene expression profiling of the crab Portunus pelagicus.

机构信息

Faculty of Science, Health and Education, University of the Sunshine Coast, Sippy Downs, Queensland, Australia.

出版信息

BMC Genomics. 2011 Mar 12;12:147. doi: 10.1186/1471-2164-12-147.

Abstract

BACKGROUND

Crustacean moulting is a complex process involving many regulatory pathways. A holistic approach to examine differential gene expression profiles of transcripts relevant to the moulting process, across all moult cycle stages, was used in this study. Custom cDNA microarrays were constructed for Portunus pelagicus. The printed arrays contained 5000 transcripts derived from both the whole organism, and from individual organs such as the brain, eyestalk, mandibular organ and Y-organ from all moult cycle stages.

RESULTS

A total of 556 clones were sequenced from the cDNA libraries used to construct the arrays. These cDNAs represented 175 singletons and 62 contigs, resulting in 237 unique putative genes. The gene sequences were classified into the following biological functions: cuticular proteins associated with arthropod exoskeletons, farnesoic acid O-methyltransferase (FaMeT), proteins belonging to the hemocyanin gene family, lectins, proteins relevant to lipid metabolism, mitochondrial proteins, muscle related proteins, phenoloxidase activators and ribosomal proteins. Moult cycle-related differential expression patterns were observed for many transcripts. Of particular interest were those relating to the formation and hardening of the exoskeleton, and genes associated with cell respiration and energy metabolism.

CONCLUSIONS

The expression data presented here provide a chronological depiction of the molecular events associated with the biological changes that occur during the crustacean moult cycle. Tracing the temporal expression patterns of a large variety of transcripts involved in the moult cycle of P. pelagicus can provide a greater understanding of gene function, interaction, and regulation of both known and new genes with respect to the moulting process.

摘要

背景

甲壳动物蜕皮是一个复杂的过程,涉及许多调节途径。本研究采用整体方法研究与蜕皮过程相关的转录物的差异基因表达谱,跨越所有蜕皮周期阶段。为锯缘青蟹构建了定制的 cDNA 微阵列。打印的阵列包含 5000 个转录本,这些转录本源自整个生物体,以及来自单个器官,如大脑、眼柄、下颌器官和 Y 器官,来自所有蜕皮周期阶段。

结果

从用于构建微阵列的 cDNA 文库中总共测序了 556 个克隆。这些 cDNA 代表 175 个单拷贝和 62 个连续体,产生 237 个独特的假定基因。基因序列被分类为以下生物功能:与节肢动物外骨骼相关的角质蛋白、法呢酸 O-甲基转移酶 (FaMeT)、属于血蓝蛋白基因家族的蛋白质、凝集素、与脂质代谢相关的蛋白质、线粒体蛋白质、肌肉相关蛋白质、酚氧化酶激活剂和核糖体蛋白质。许多转录物表现出蜕皮周期相关的差异表达模式。特别有趣的是那些与外骨骼的形成和硬化以及与细胞呼吸和能量代谢相关的基因。

结论

这里呈现的表达数据提供了与甲壳动物蜕皮周期中发生的生物学变化相关的分子事件的时间顺序描述。追踪参与锯缘青蟹蜕皮周期的大量转录物的时间表达模式,可以更好地理解基因功能、相互作用以及与蜕皮过程相关的已知和新基因的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6489/3062621/2a7092d55d27/1471-2164-12-147-1.jpg

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