首页> 外文期刊>Marine biotechnology >Cultured Pearl Surface Quality Profiling by the Shell Matrix Protein Gene Expression in the Biomineralised Pearl Sac Tissue of Emphasis Type='Italic'>Pinctada margaritifera/Emphasis>
【24h】

Cultured Pearl Surface Quality Profiling by the Shell Matrix Protein Gene Expression in the Biomineralised Pearl Sac Tissue of Emphasis Type='Italic'>Pinctada margaritifera/Emphasis>

机译:培养的珍珠表面质量分析通过壳体蛋白基因表达的壳体蛋白质基因表达,&重点型=“斜体”> Pinctada Margaritifera& /重点>

获取原文
获取原文并翻译 | 示例
           

摘要

Nucleated pearls are produced by molluscs of the Pinctada genus through the biomineralisation activity of the pearl sac tissue within the recipient oyster. The pearl sac originates from graft tissue taken from the donor oyster mantle and its functioning is crucial in determining key factors that impact pearl quality surface characteristics. The specific role of related gene regulation during gem biogenesis was unknown, so we analysed the expression profiles of eight genes encoding nacreous (PIF, MSI60, PERL1) or prismatic (SHEM5, PRISM, ASP, SHEM9) shell matrix proteins or both (CALC1) in the pearl sac ( N ?=?211) of Pinctada margaritifera during pearl biogenesis. The pearls and pearl sacs analysed were from a uniform experimental graft with sequential harvests at 3, 6 and 9?months post-grafting. Quality traits of the corresponding pearls were recorded: surface defects, surface deposits and overall quality grade. Results showed that (1) the first 3?months of culture seem crucial for pearl quality surface determination and (2) all the genes ( SHEM5 , PRISM , ASP , SHEM9 ) encoding proteins related to calcite layer formation were over-expressed in the pearl sacs that produced low pearl surface quality. Multivariate regression tree building clearly identified three genes implicated in pearl surface quality, SHEM9 , ASP and PIF . SHEM9 and ASP were clearly implicated in low pearl quality, whereas PIF was implicated in high quality. Results could be used as biomarkers for genetic improvement of P. margaritifera pearl quality and constitute a novel perspective to understanding the molecular mechanism of pearl formation.
机译:核心珍珠由Pinctada Genus的MOLLUSC通过受体牡蛎内的珍珠囊组织的生物键化活性产生。珍珠囊起源于从供体牡蛎壳体取出的移植组织,其功能对于确定影响珍珠质量表面特性的关键因素至关重要。相关基因调节在宝石生物生成期间的具体作用是未知的,因此我们分析了编码珍珠(PIF,MSI60,PerL1)或棱柱形(Shem5,Prism,Asp,Shem9)壳基质蛋白或两者(Calc1)的八个基因的表达谱在珍珠生物发生期间Pinctada Margaritifera的珍珠囊(N?= 211)。分析的珍珠和珍珠囊来自均匀的实验移植物,在嫁接后3,6和9的连续收获。记录相应珍珠的质量性状:表面缺陷,表面沉积物和整体质量等级。结果表明,(1)前3个月的文化似乎对珍珠质量表面测定至关重要,并在珍珠中覆盖了与方解石层形成相关的蛋白质的所有基因(Shem5,棱镜,Asp,Shem9)均过度表达产生低珍珠表面质量的囊。多变量回归树建筑清楚地识别了三种基因,涉及珍珠表面质量,Shem9,ASP和PIF。 SHEM9和ASP在低珍珠质量上显然涉及,而PIF以高质量涉及。结果可用作P.Margaritifera珍珠质量的遗传改善的生物标志物,构成了解珍珠地层分子机制的新颖视角。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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