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Effect of ocean acidification on the nutritional quality of marine phytoplankton for copepod reproduction

机译:海洋酸化对co足类繁殖的海洋浮游植物营养品质的影响

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摘要

Phytoplankton are the oceans’ principal source of polyunsaturated fatty acids that support the growth and reproduction of consumers such as copepods. Previous studies have demonstrated ocean acidification (OA) can change the availability of polyunsaturated fatty acids to consumer diets which may affect consumer reproduction. Two laboratory experiments were conducted to examine the effects of feeding high-pCO2-reared phytoplankton on copepod egg production, hatching success, and naupliar survival. Marine phytoplankton Rhodomonas salina, Skeletonema marinoi, Prorocentrum micans, and Isochrysis galbana were exponentially grown in semi-continuous cultures at present (control) (400 ppm CO2, pH~8.1) and future (1,000 ppm CO2, pH~7.8) conditions and provided to Acartia tonsa copepods over 4 consecutive days as either nitrogen-limited (Exp. I) or nitrogen-depleted (Exp. II) mixed assemblage of phytoplankton. The composition of FAs in the phytoplankton diet was affected by pCO2 concentration and nitrogen deficiency; the ratio of essential fatty acids to total polyunsaturated fatty acids decreased in phytoplankton grown under high pCO2 and the mass of total fatty acids increased under nitrogen depletion. Additionally, total concentrations of essential fatty acids and polyunsaturated fatty acids in the diet mixtures were less under the high-pCO2 compared to the control-pCO2 treatments. Median egg production, hatching success, and naupliar survival were 48–52%, 4–87%, and 9–100% lower, respectively, in females fed high-pCO2 than females fed low-pCO2 phytoplankton, but this decrease in reproductive success was less severe when fed N-depleted, but fatty acid-rich cells. This study demonstrates that the effects of OA on the nutritional quality of phytoplankton (i.e., their cellular fatty acid composition and quota) were modified by the level of nitrogen deficiency and the resulting negative reproductive response of marine primary consumers.
机译:浮游植物是海洋中多不饱和脂肪酸的主要来源,可支持atur足类等消费者的生长和繁殖。先前的研究表明,海洋酸化(OA)可以改变消费者饮食中多不饱和脂肪酸的利用率,这可能会影响消费者的生殖能力。进行了两个实验室实验,以研究饲喂高pCO2饲养的浮游植物对pe足类卵的产生,孵化成功和无节幼体存活的影响。在目前(对照)(400 ppm CO2,pH〜8.1)和将来(1,000 ppm CO2,pH〜7.8)的条件下和半连续培养条件下,海洋浮游植物盐红假单胞菌盐沼,海藻骨架,米氏原球菌和球藻等指数生长。连续4天以浮游植物的限氮(实验I)或贫氮(实验II)混合组合捕集到A螨。浮游植物饮食中FA的组成受pCO2浓度和氮缺乏的影响。在高pCO2下生长的浮游植物中必需脂肪酸与总多不饱和脂肪酸的比例降低,而氮耗竭时总脂肪酸的质量增加。另外,高pCO2处理下饮食混合物中必需脂肪酸和多不饱和脂肪酸的总浓度比对照pCO2处理要少。饲喂高pCO2的雌性的卵产值,孵化成功率和幼虫存活的中位数分别比饲喂低pCO2的浮游植物的雌性低48–52%,4–87%和9–100%,但是这种繁殖成功率下降当饲喂缺氮但富含脂肪酸的细胞时,这种病的严重程度较轻。这项研究表明,OA对浮游植物营养质量的影响(即其细胞脂肪酸组成和配额)被氮缺乏水平和由此引起的海洋主要消费者负面生殖反应所改变。

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