4.5 Article

Mesoscale variability in intact and ghost colonies of Phaeocystis antarctica in the Ross Sea: Distribution and abundance

期刊

JOURNAL OF MARINE SYSTEMS
卷 166, 期 -, 页码 97-107

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jmarsys.2016.05.007

关键词

Phaeocystis mesoscale; Ross Sea; Antarctica ghost colonies carbon

资金

  1. National Science Foundation [ANT-0,944,254, ANT-0,944,165]
  2. Gordon and Betty Moore Foundation [2649]
  3. Office of Polar Programs (OPP)
  4. Directorate For Geosciences [1443258] Funding Source: National Science Foundation

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Phaeocystis, a genus with a cosmopolitan distribution and a polymorphic life cycle, was observed during summer in the Ross Sea, Antarctica, where large blooms of this haptophyte regularly occur. The mesoscale vertical and horizontal distributions of colonies of Phaeocystis antarctica were assessed using a towed Video Plankton Recorder (VPR). The mean size of colonies was 1.20 mm, and mean abundances within the three VPR surveys were 4.86, 1.96, and 11.5 mL(-1) In addition to the typical spherical, transparent colonies, the VPR quantified an optically dissimilar form of colony that had a distinctive translucent appearance. It also measured the abundance of collapsed colonies, similar to those observed previously from cultures and mesocosms, which we called ghost colonies. The translucent colonial form had a different distribution than the more common colonial form, and at times was more abundant. Relative to intact colonies, the ghost colonies occurred less frequently, with mean abundances in the three surveys being 0.01, 0.08, and 0.0004 mL(-1) Ghost colonies generally were found below the euphotic zone, where they often were in greater abundance than intact colonies. However, the relationship of ghost colonies to intact P. antarctica colonies was not direct or consistent, suggesting that the formation of ghost colonies from living colonies and their appearance within the water column were not tightly coupled. Given their relative scarcity and low carbon content, it is unlikely that ghost colonies contribute substantially to vertical flux; however, it is possible that we did not sample periods of major flux events, and as a result minimized the importance of ghost colonies to vertical flux. They do, however, represent a poorly documented feature of polar haptophyte life cycles. (C) 2016 Elsevier B.V. All rights reserved.

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