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[Spatio-temporal Characteristics of Organic Aggregates and the Driving Factors in Typical Lakes]. | LitMetric

[Spatio-temporal Characteristics of Organic Aggregates and the Driving Factors in Typical Lakes].

Huan Jing Ke Xue

State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China.

Published: April 2023

AI Article Synopsis

  • Organic aggregates (OA) play a crucial role in the transfer of matter and energy within aquatic ecosystems, yet there is limited research comparing OA across lakes with varying nutrient levels.
  • This study analyzed the seasonal variations of OA and OA-attached bacteria (OAB) in four lakes over two years, revealing distinct differences in their abundance related to each lake's nutrient status.
  • Results indicated that nutrient levels significantly influenced OA and OAB abundance, with summer showing higher OA counts but a lower proportion of OAB, while Lake Xingyun had notably high concentrations of nutrients and organic matter within its OA.

Article Abstract

Organic aggregates (OA) are the important circulation hub of matter and energy in aquatic ecosystems. However, the comparison studies on OA in lakes with different nutrient levels are limited. In this study, spatio-temporal abundances of OA and OA-attached bacteria (OAB) in oligotrophic Lake Fuxian, mesotrophic Lake Tianmu, middle-eutrophic Lake Taihu, and hyper-eutrophic Lake Xingyun were investigated in different seasons during 2019-2021 using a scanning electron microscope, epi-fluorescence microscope, and flow cytometry. The results showed that:① the annual average abundances of OA in Lake Fuxian, Lake Tianmu, Lake Taihu, and Lake Xingyun were 1.4×10, 7.0×10, 27.7×10, and 16.0×10 ind·mL, whereas the annual average abundances of OAB in the four lakes were 0.3×10, 1.9×10, 4.9×10, and 6.2×10 cells·mL. The ratios of OAB:total bacteria (TB) in the four lakes were 30%, 31%, 50%, and 38%, respectively. ② OA abundance in summer was significantly higher than that in autumn and winter; however, the ratio of OAB:TB in summer was approximately 26%, which was significantly lower than that in the other three seasons. ③ Lake nutrient status was the most important environmental factor that affected the abundance variations of OA and OAB, accounting for 50% and 68% of the spatio-temporal variations in OA and OAB abundances. ④ Nutrient and organic matters were enriched in OA, especially in Lake Xingyun; the proportions of particle phosphorous, particle nitrogen, and organic matters in this lake were as high as 69%, 59%, and 79%, respectively. Under the circumstance of future climate change and the expansion of lake algal blooms, the effects of algal-originated OA in the degradation of organic matters and nutrient recycling would be increased.

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Source
http://dx.doi.org/10.13227/j.hjkx.202206018DOI Listing

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