Small-scale distribution of metazoan meiofauna and sedimentary organic matter in subtidal sandy sediments (Mediterranean Sea)

Q3 Earth and Planetary Sciences
D. Moccia, A. Cau, M. Meloni, A. Pusceddu
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引用次数: 2

Abstract

While variations in sedimentary organic matter (OM) quantity, biochemical composition and nutritional quality as well as in meiofaunal abundance and assemblage composition at the macro- and mesoscale are relatively well known, information about variations at the microscale is much scarcer. To shed some light on this issue, we tested the null hypothesis by which abundance and composition of the meiofaunal assemblages, and the quantity, biochemical composition and nutritional quality of sedimentary organic matter in coastal shallow environments do not vary within a frame of 1 m2. No significant variation within the frame emerged for OM quantity, nutritional quality, biochemical composition and the abundance of meiofaunal assemblages. On the other hand, the composition of meiofaunal assemblages varied significantly within the frame and exhibited a clear segregation of assemblages farther to the shore, as a likely result of local micro-hydrodynamic conditions. Spatial autocorrelation analysis revealed that lipid and protein sedimentary contents had a random distribution, whereas carbohydrate and biopolymeric C contents and meiofaunal total abundance were characterized by a patchy distribution, with discrete peaks within the sub-frame squares (ca. 0.1 m2). Phytopigments showed a spatial positive autocorrelation distribution, following the micro-hydrodynamic pattern, with patches larger than the sub-frame square, but smaller than the entire one (1 m2). Overall, our results suggest that, within 1 m2 of subtidal sandy sediments, three replicates could be sufficient to assess correctly OM attributes and the abundance of meiofauna, but could be possibly inadequate for assessing meiofaunal assemblages’ composition at a finer scale (<1 m2).
地中海潮下砂质沉积物中后生动物及沉积有机质的小尺度分布
虽然沉积有机质(OM)数量、生物化学组成和营养质量的变化以及小型动物丰度和组合组成在宏观和中尺度上的变化相对而言是众所周知的,但关于微观尺度变化的信息要少得多。为了阐明这个问题,我们检验了无效假设,即沿海浅层环境中小型动物组合的丰度和组成,以及沉积有机质的数量、生物化学组成和营养质量在1平方米的范围内没有变化。OM数量、营养质量、生化组成和小型动物组合丰度在该框架内没有出现显著变化。另一方面,小型动物组合的组成在该框架内变化很大,并表现出明显的向海岸分离的组合,这可能是当地微观水动力条件的结果。空间自相关分析显示,脂质和蛋白质沉积含量呈随机分布,而碳水化合物和生物聚合物C含量以及小型动物总丰度呈斑片状分布,在子框架正方形(约0.1 m2)内具有离散峰值。植物色素显示出空间正自相关分布,遵循微观流体动力学模式,斑块大于子框架正方形,但小于整个子框架(1 m2)。总的来说,我们的结果表明,在潮下沙质沉积物的1平方米范围内,三次重复可能足以正确评估OM属性和小型动物的丰度,但可能不足以在更精细的尺度上评估小型动物组合的组成(<1平方米)。
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来源期刊
Advances in Oceanography and Limnology
Advances in Oceanography and Limnology Agricultural and Biological Sciences-Aquatic Science
CiteScore
2.00
自引率
0.00%
发文量
2
审稿时长
12 weeks
期刊介绍: Advances in Oceanography and Limnology was born in 2010 from the 35 years old Proceedings of the national congress of the Italian Association of Oceanology and Limnology. The AIOL Journal was funded as an interdisciplinary journal embracing both fundamental and applied Oceanographic and Limnological research, with focus on both single and multiple disciplines. Currently, two regular issues of the journal are published each year. In addition, Special Issues that focus on topics that are timely and of interest to a significant number of Limnologists and Oceanographers are also published. The journal, which is intended as an official publication of the AIOL, is also published in association with the EFFS (European Federation for Freshwater Sciences), which aims and objectives are directed towards the promotion of freshwater sciences throughout Europe. Starting from the 2015 issue, the AIOL Journal is published as an Open Access, peer-reviewed journal. Space is given to regular articles, review, short notes and opinion paper
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