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首页> 外文期刊>Hydrobiologia >Effects of high nitrate concentrations on the germination of carpospores of the red seaweed Pyropia acanthophora var. brasiliensis (Rhodophyta, Bangiales)
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Effects of high nitrate concentrations on the germination of carpospores of the red seaweed Pyropia acanthophora var. brasiliensis (Rhodophyta, Bangiales)

机译:高硝酸盐浓度对红海藻吡唑癌红孢子虫猪孢子萌发的影响。 Brasiliensis(牙龈牙龈,屁股)

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摘要

Pyropia is a genus of algae used in sushi. Nitrate (NO3-) is essential for its growth. Excess NO3- is flushed into seawater, as a result of anthropogenic activities, increasing the potential for higher than normal concentrations which could be harmful to both algae and humans. This study aims to evaluate the effect of NO3- on the morphology, ultrastructure, spore viability, autofluorescence of chloroplasts, and formation of cell wall, during germination of the red seaweed Pyropia acanthophora var. brasiliensis. To accomplish this, carpospores were cultivated at 24 degrees C, 40 mu mol photons m(-2) s(-1) with photoperiod of 12 h and exposed to 0, 25, 50, and 100 mM of NO3- for 2 days. Samples were cultured for another 5 days to measure the length of the germ tube. Concentrations of NO3- did not significantly influence the development, morphology, viability, or ultrastructure of the spores in the first 2 days. The absence of this nutrient did delay the ultrastructural development of the carpospore, decreasing autofluorescence of the chloroplast and delaying the formation of the cell wall and pyrenoid. Over the seven-day experimental period, higher concentrations of NO3- increased the size of the germ tube, indicating that this extra concentration boosted the development of P. acanthophora.
机译:Pyropia是寿司使用的藻类属。硝酸盐(NO3-)对于其生长至关重要。由于人为活动,将过量的NO3-冲入海水中,增加了高于正常浓度的潜力,这可能对藻类和人类有害。本研究旨在评估NO3-关于形态学,超微结构,孢子生存力,叶绿体的自发荧光和细胞壁形成的影响,在红海藻吡吩ancanthophora var的萌芽期间。 brasiliensis。为了实现这一点,用12小时的光周期为24℃,40μmmol光子M(-2)s(-1),暴露于0,25,50和100mm的NO 3- 2天的24摄氏度。将样品培养另外5天以测量胚芽管的长度。 NO3-浓度没有显着影响孢子在前2天内的发育,形态,活力或超微结构。没有这种营养素的延迟延迟了Carpospors的超微结构发展,降低了叶绿体的自发荧光并延迟了细胞壁和芘的形成。在七天的实验期,较高浓度的NO3-增加了生物管的大小,表明这种额外的浓度提高了P.CaCanthophora的发育。

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