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首页> 外文期刊>Journal of Applied Phycology >A cheap and sensitive method for imaging Gracilaria (Rhodophyta, Gracilariales) growth
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A cheap and sensitive method for imaging Gracilaria (Rhodophyta, Gracilariales) growth

机译:一种廉价而敏感的成像Gracilaria(Rhodophyta,Graciarales)的增长

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Growth rate is an informative measurement for the culture of any organism, as it provides cues about fitness and allows selection of strains. For seaweeds, the gain of mass has been the most used methodology at the laboratory, but it can be laborious and increase the contamination. In this work, we present an easy, accessible, and sensitive method that uses imaging to measure the growth rate at a laboratory scale of three Gracilaria species (Rhodophyta, Gracilariales): G. caudata J. Agardh, G. domingensis (Kutzing) Sonder ex Dickie, and G. tenuistipitata C.F.Chang & B.M.Xia. A CMOS camera with a flex clamp and a macro lens was attached to a common retort stand in order to measure the algae thalli from the bottom of a Petri dish. Then, the images were batch processed for area and length measurement and correlated to mass. A high correlation between mass and area was verified for all three species, but not for length (G. domingensis, R-2 = 0.68). G. tenuistipitata had the highest growth rate in area (17.9% day(-1)) and G. domingensis the lowest (3.1% day(-1)). Correlation differences between area and mass can be due to species-specific morphology. Area measurement can efficiently replace weighing. The present method is highly adaptable to many experimental setups, uses a cheap camera and free software, is not labor intensive and does not require much computer knowledge.
机译:增长率是任何生物体培养的信息测量,因为它提供了关于健身的提示,并允许选择菌株。对于海藻,质量的增长是实验室中最常用的方法,但它可能是费力,增加污染。在这项工作中,我们展示了一种简单,可访问的和敏感的方法,使用成像来测量三种Gracilaria种类的实验室规模的生长速度(肾小球,Gracetiales):G.Caudata J. Agardh,G. Domingensis(Kutzing)Sonder ex dickie,和g. tenuistipitata cfchang&光明。带有Flex Clamp和宏观镜头的CMOS相机连接到共同的蒸煮架上,以便从培养皿底部测量藻类。然后,将图像分批处理面积和长度测量并与质量相关。对所有三种物种验证质量和区域之间的高相关,但不为长度(G. domingensis,R-2 = 0.68)。 G. Tenuistipitata在地区的增长率最高(17.9%(-1))和G. domingensis最低(3.1%(-1))。面积和质量之间的相关差异可能是由于物种特异性形态。区域测量可以有效地替换称量。本方法适用于许多实验设置,使用廉价的相机和自由软件,不是劳动密集型,不需要大量的计算机知识。

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