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Compartmentalized expression patterns of pancreatic and gastric-related genes in the alimentary canal of the ascidian Ciona intestinalis: evolutionary insights into the functional regionality of the gastrointestinal tract in Olfactores

机译:胰岛癌肠的消化运河中胰腺和胃相关基因的分区化表达模式:嗅觉中胃肠道功能区域的进化见解

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Many heterotrophic animals have a one-way alimentary canal that is essential for their nutrition and sequential steps of the digestive system, namely ingestion, digestion, absorption and elimination, are widely shared among bilaterians. Morphological, functional and molecular knowledge of the alimentary canal has been obtained in particular from mammalian research but the shared features and evolution of these aspects of the highly diverged alimentary canal in the animal kingdom are still unclear. We therefore investigate spatial gene expression patterns of pancreatic-and gastric-related molecules of ascidians (a sister group of vertebrates) with special reference to the functional regionality of the gastrointestinal tract. Genome-wide surveys of ascidian homologs to mammalian exocrine digestive enzyme genes revealed that pancreatic enzymes, namely alphaamylase, lipase, phospholipase A2, trypsin, chymotrypsin and carboxypeptidase, exist in the ascidian genome. However, an ascidian homolog of the mammalian gastric enzyme pepsin has not been identified, although molecules resembling cathepsin D, a pepsin relative, are indeed present. Spatial expression analyses in the ascidian Ciona intestinalis, by means of whole-mount in situ hybridization, have elucidated that the expression of Ciona homologs of pancreatic-and gastric-related exocrine enzyme genes and of their transcriptional regulator genes is restricted to the Ciona stomach. Furthermore, the expression of these genes is localized to specific regions of the stomach epithelium according to their regionality in the vertebrate digestive system. The compartmentalized expression patterns of Ciona homologs imply primitive and/or ancestral aspects of molecular, functional and morphological bases among Olfactores.
机译:许多异养动物具有单向消化道,这对于他们的营养和消化系统的营养和顺序步骤至关重要,即摄取,消化,吸收和消除,在双玻璃中被广泛共用。特别是来自哺乳动物研究的生物,偶然运河的形态学,功能和分子知识,但在动物王国中高度分散的消化道的这些方面的共同特征和演化仍然不明确。因此,我们研究了胃肠道(姐妹组的脊椎动物)的胰腺和胃癌相关分子的空间基因表达模式,特别是对胃肠道的功能区域性的特殊参考。基因组对哺乳动物外分泌消化酶基因的基因组调查显示,胰酶,即αamylyAl酶,脂肪酶,磷脂脂酶A2,胰蛋白酶,胰蛋白酶和羧肽酶存在于阿立西亚基因组中。然而,尚未鉴定哺乳动物胃酶胃蛋白蛋白酶的阿霉艇同源物,尽管确实存在了类似组织蛋白酶D的分子。通过整体安装在原位杂交中的空间表达分析,阐明了胰腺 - 和胃癌相关的外分泌酶基因和其转录调节基因的CiONa同源物的表达仅限于Ciona胃。此外,这些基因的表达根据脊椎动物消化系统中的群落局部地定位于胃上皮的特定区域。 Ciona同源物的分区化表达模式意味着嗅觉中的分子,官能和形态学碱的原始和/或祖先方面。

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