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qPCR analysis of bivalve larvae feeding preferences when grazing on mixed microalgal diets

机译:混合微藻饮食放牧时双壳类幼虫摄食偏好的qPCR分析

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摘要

Characterization of the feeding preferences of bivalve larvae would help improving the bivalve aquaculture and hatchery by providing appropriate microalgal diets. However, inaccurate and laborious identification and counting of microalgal species have challenged the selective feeding of bivalves. In the present study, we developed a highly specific and sensitive assay using quantitative polymerase chain reaction (qPCR) to assess the selective feeding of bivalve larvae based on species-specific primers targeting to microalgal 18S rDNA sequences. The assay exhibited good specificity. The detection limits of the qPCR assay were 769, 71, 781 and 21 18S rDNA copies for Chaetoceros calcitrans, Isochrysis galbana, Platymonas helgolandica and Nannochloropsis oculata, respectively. Using such assay, we found that C. calcitrans and I. galbana were preferentially ingested, whereas N. oculata was preferentially rejected in biodeposits of four bivalve species, Tegillarca gransa, Cyclina sinensis, Scapharca subcrenata and Sinonovacula constricta. Furthermore, our growth experiments revealed that C. calcitrans and I. galbana could significantly promote the shell growth, whereas feeding of N. oculata resulted in poorer growth of four bivalve species. These data indicated that qPCR might be useful in screening of efficient and reliable microalgal species for each bivalve species, leading to improved bivalve aquaculture and hatchery.
机译:通过提供适当的微藻饮食,表征双壳类幼虫的摄食偏好将有助于改善双壳类水产养殖和孵化场。然而,微藻种类的不准确和费力的鉴定和计数已经挑战了双壳类动物的选择性饲养。在本研究中,我们使用定量聚合酶链反应(qPCR)开发了一种高度特异性和灵敏的测定方法,以基于针对微藻类18S rDNA序列的物种特异性引物评估双壳类幼虫的选择性进食。该测定法表现出良好的特异性。 qPCR检测的检出限分别为南美白对虾(Chaetoceros calcitrans),球藻(Isochrysis galbana),黑斑侧柏(Platymonas helgolandica)和拟南芥(Nannochloropsis oculata)的769、71、781和21 18S rDNA拷贝。使用这种测定法,我们发现优先摄入C. calcitrans和I. galbana,而在四个双壳类生物Tegillarca gransa,Cyclina sinensis,Scapharca subcrenata和Sinonovacula constricta的生物沉积物中优先吸收N. oculata。此外,我们的生长实验表明C. calcitrans和 I galbana 可以显着促进壳的生长,而 N 的觅食。 oculata 导致四种双壳类动物的生长较差。这些数据表明,qPCR可能有助于筛选每种双壳类的有效且可靠的微藻类,从而改善双壳类水产养殖和孵化场。

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