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太平洋牡蛎(长牡蛎)对缺氧的转录组反应

Transcriptomic response of the Pacific oyster Crassostrea gigas to hypoxia.

作者信息

Sussarellu Rossana, Fabioux Caroline, Le Moullac Gilles, Fleury Elodie, Moraga Dario

机构信息

UMR CNRS 6539-LEMAR (Laboratoire des Sciences de l'Environnement Marin), IUEM (Institut Universitaire Européen de la Mer), Université de Bretagne Occidentale, Technopôle Brest Iroise, 29280 Plouzané, France.

出版信息

Mar Genomics. 2010 Sep-Dec;3(3-4):133-43. doi: 10.1016/j.margen.2010.08.005.

Abstract

Marine intertidal organisms commonly face hypoxic stress during low tide emersion; moreover, eutrophic conditions and sediment nearness could lead to hypoxic phenomena; it is indeed important to understand the molecular processes involved in the response to hypoxia. In this study the molecular response of the Pacific oyster Crassostrea gigas to prolonged hypoxia (2mg O(2) L(-1) for 20d) was investigated under experimental conditions. A transcriptomic approach was employed using a cDNA microarray of 9058 C. gigas clones to highlight the genetic expression patterns of the Pacific oyster under hypoxic conditions. Lines of oysters resistant (R) and susceptible (S) to summer mortality were used in this study. ANOVA analysis was used to identify the genes involved in the response to hypoxia in comparison to normoxic conditions. The hypoxic response was maximal at day 20. The principal biological processes up-regulated by hypoxic stress were antioxidant defense and the respiratory chain compartment, suggesting oxidative stress caused by hypoxia or an anticipatory response for normoxic recovery. This is the first study employing microarrays to characterize the genetic markers and metabolic pathways responding to hypoxic stress in C. gigas.

摘要

海洋潮间带生物在退潮暴露期间通常会面临缺氧压力;此外,富营养化状况和靠近沉积物可能导致缺氧现象;了解对缺氧反应所涉及的分子过程确实很重要。在本研究中,在实验条件下研究了太平洋牡蛎(Crassostrea gigas)对长期缺氧(2毫克氧气/升,持续20天)的分子反应。采用转录组学方法,使用包含9058个太平洋牡蛎克隆的cDNA微阵列,以突出缺氧条件下太平洋牡蛎的基因表达模式。本研究使用了对夏季死亡具有抗性(R)和易感性(S)的牡蛎品系。与常氧条件相比,采用方差分析来鉴定参与缺氧反应的基因。缺氧反应在第20天时达到最大值。由缺氧应激上调的主要生物学过程是抗氧化防御和呼吸链区室,这表明缺氧引起了氧化应激或对常氧恢复的预期反应。这是第一项使用微阵列来表征太平洋牡蛎中对缺氧应激作出反应的遗传标记和代谢途径的研究。

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