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Quantitative trait loci and genetic association analysis reveals insights into complex pearl quality traits in donor silver-lipped pearl oysters

机译:数量性状基因座和遗传关联分析揭示了供体银唇牡蛎中复杂的珍珠品质性状的见解

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Pearl oysters are commercially farmed for their gemstone quality pearls worldwide and are an important animal model for understanding bivalve biology. However, despite their economic and scientific significance, limited quantitative genetic studies have been undertaken to identify genes that regulate important pearl quality traits and unique biological characteristics (i.e. biomineralisation). Over the last decade, pearling industries worldwide have shown strong interest in genetic stock improvement aiming to increase the production of high quality 'South Sea' pearls. However, before genetic breeding programmes can be initiated, the genetic architecture of such traits needs to be elucidated. This study investigates the genetic architecture of complex pearl quality traits (pearl size, weight, surface complexion and colour) and presents the first putative quantitative trait loci (QTL) and genetic associations to these commercially important pearl quality traits. To identify QTL and genetic associations to pearl quality traits, a total of 2114 pearl grading records were recorded over 342 pearl oysters. Utilising these phenotypic records, this study provides strong evidence that pearl quality traits have a low to moderate additive genetic component (h(2) from 0.14 to 034) and supports previous quantitative genetic studies that these traits are polygenic in nature. A total of nine putative QTL and 25 marker associations for pearl colour, one QTL for pearl surface complexion and three genetic associations to pearl size and weight were identified using 11 half-sib families. The majority of QTL and genetic associations were detected for pearl colour whereby the most prominent QTL were located within a 2 cM interval on LG10. QTL in this region were mapped for four out of five sub-categories of pearl colour and explained from 32% to 46.1% of the phenotypic variation observed in pearl colour. Segregation in multiple families provides further support that genes localised to this region have significant effects on pearl colour. The segregation of these preliminary QTL and detection of genetic associations provide insights into the genetic architecture of pearl quality traits and will direct further research into the establishment of genetic breeding programmes for pearl quality within the Pinctada maxima pearling industry. Crown Copyright (C) 2014 Published by Elsevier BM. All rights reserved.
机译:珍珠贝因其宝石品质的珍珠在世界范围内进行商业化养殖,是了解双壳类生物学的重要动物模型。然而,尽管具有经济和科学意义,但已经进行了有限的定量遗传研究来鉴定调节重要的珍珠品质性状和独特的生物学特性(即生物矿化)的基因。在过去的十年中,全世界的珍珠产业对遗传资源改良表现出浓厚的兴趣,这些遗传改良旨在增加高质量“南海”珍珠的产量。但是,在可以启动遗传育种计划之前,需要阐明这些性状的遗传结构。这项研究调查了复杂的珍珠品质性状(珍珠大小,重量,表面肤色和颜色)的遗传结构,并提出了第一个推定的数量性状基因座(QTL)和与这些具有商业意义的珍珠品质性状的遗传关联。为了鉴定QTL和与珍珠品质性状的遗传关联,在342颗牡蛎上总共记录了2114颗珍珠分级记录。利用这些表型记录,这项研究提供了有力的证据,证明珍珠品质性状具有低到中等的加性遗传成分(h(2)从0.14到034),并支持以前的定量遗传研究,这些性质是多基因的。使用11个半同胞家族鉴定了总共9个假定的QTL和25个与珍珠颜色相关的标记关联,1个关于珍珠表面肤色的QTL和3个与珍珠大小和重量相关的遗传关联。检测到大多数QTL和遗传关联的珍珠颜色,其中最突出的QTL位于LG10的2 cM区间内。该区域的QTL被定位为五个珍珠色子类别中的四个,并解释了珍珠色表型变异的32%至46.1%。多个家族的分离进一步证明了位于该区域的基因对珍珠的颜色具有重要影响。这些初步QTL的分离和遗传关联的检测为珍珠品质性状的遗传结构提供了见识,并将指导进一步研究在Pinctada maxima珍珠产业内建立珍珠品质遗传育种计划。官方版权(C)2014,由Elsevier BM发布。版权所有。

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    《Aquaculture》 |2014年第null期|共10页
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