首页> 外文期刊>Estuarine Coastal and Shelf Science >Culture site dependence on pearl size realization in Pinctada margaritifera in relation to recipient oyster growth and mantle graft biomineralization gene expression using the same donor phenotype
【24h】

Culture site dependence on pearl size realization in Pinctada margaritifera in relation to recipient oyster growth and mantle graft biomineralization gene expression using the same donor phenotype

机译:使用相同供体表型,养殖场所对玛格丽塔Pinctada margaritifera中珍珠大小实现的依赖性与受体牡蛎生长和地幔嫁接生物矿化基因表达有关

获取原文
获取原文并翻译 | 示例
       

摘要

Size is the most important and valuable quality of the cultured black-lip pearl, Pinctada margaritifera. As this pearl aquaculture is carried out at numerous grow-out sites, this study analyzes the environmental influence on pearl size parameters (nacre weight and thickness) in relation to the recipient oyster biometric parameters (shell thickness, height, width, and oyster weight) at harvest time. Toward this end, an experimental graft was designed by using a homogeneous donor oyster phenotype. The recipient oysters were randomly and equally transferred and reared in five commercial and contrasting grow-out locations. Overall inter-site comparisons revealed that the cultured pearl size (N = 2168) and the biometric parameters of the recipient oysters were highest for sites with warmer temperatures with low seasonal variation in comparison to the southern latitude sites. These results were supported by positive correlations between pearl nacre thickness and recipient oyster shell thickness, height, and width. In parallel, the biomineralization potential of the mantle graft was screened through four genes encoding aragonite (Pif 177, MSI60) and calcite (shematrin 9, aspein). As the gene expression levels were the same among all the donor oysters, this finding demonstrates that: 1) the pearl sac that originated from the mantle graft was not isolated from environmental variations during the culture period and 2) the phenotypic expressions of the two biomineralizing tissues in the recipient oyster were consistent (shell and pearl). In the near future, this knowledge will be helpful at the production sites of genetically selected donor oyster lines for growth produced in hatchery systems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:尺寸是人工养殖黑唇珍珠Pinctada margaritifera的最重要和最有价值的品质。由于这种珍珠水产养殖是在许多养殖场进行的,因此本研究分析了与珍珠贝生物特征参数(壳的厚度,高度,宽度和牡蛎重量)有关的珍珠大小参数(珍珠层重量和厚度)的环境影响。在收获的时候。为此,通过使用同质供体牡蛎表型设计了实验性移植物。将接受牡蛎随机且均等地转移并在五个商业和成对的成长期养殖。总体的站点间比较显示,与南部纬度站点相比,温度较高且季节变化较小的站点的养殖珍珠大小(N = 2168)和受主牡蛎的生物特征参数最高。这些结果得到珍珠珍珠层厚度与受体牡蛎壳厚度,高度和宽度之间的正相关性的支持。同时,通过编码文石(Pif 177,MSI60)和方解石(shematrin 9,aspein)的四个基因筛选了地幔移植物的生物矿化潜力。由于所有供体牡蛎的基因表达水平都相同,因此这一发现表明:1)在培养期间并未从环境变化中分离出源自地幔移植物的珍珠囊; 2)两种生物矿化的表型表达受体牡蛎中的组织一致(壳和珍珠)。在不久的将来,这种知识将在遗传选择的供体牡蛎品系的生产现场为孵化系统中的生长提供帮助。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号