藻类
水华
富营养化
聚磷酸盐
细菌
浮游植物
磷
生物
布鲁姆
蓝藻
环境化学
微生物
化学
海洋噬菌体
生态学
细菌生长
植物
浮游生物
生态系统
缺氧水域
磷酸盐
异养
营养物
海洋生态系统
吞噬作用
作者
Seiya Fukuyama,Fumiko Matsukawa Usami,Ryuichi Hirota,Ayano Satoh,Shizuka Ohara,Ken Kondo,Yuki Gomibuchi,Takuo Yasunaga,Toshimitsu Onduka,Akio Kuroda,Kazuhiko Koike,Shoko Ueki
标识
DOI:10.1093/ismeco/ycaf192
摘要
Abstract Harmful algal blooms negatively impact the ecosystem and fisheries in affected areas. Eutrophication is a major factor contributing to bloom occurrence, and phosphorus is particularly important in limiting the growth of bloom-forming algae. Although algae efficiently utilize orthophosphate (Pi) as a phosphorous source over other molecular forms, Pi is often limited in the marine environment. While uptake and utilization of soluble inorganic and organic phosphorous by bloom-forming algae has been extensively studied, the details of geochemical and biological phosphorous cycling remain to be elucidated. Here, we report for the first time that the bloom-forming alga Heterosigma akashiwo can phagocytose bacteria and grow under phosphate-depleted conditions. The addition of Vibrio comitans to Pi-depleted H. akashiwo enabled the alga propagate to high cell densities, whereas other bacterial strains had only a minor effect. Importantly, V. comitans accumulates polyphosphate—a linear polymer of Pi—at high levels. The extent of algal proliferation induced by the addition of Vibrio species and polyphosphate-accumulating Escherichia coli correlated strongly with their polyphosphate content, indicating that bacterial polyphosphate served as an alternative PO43− source for H. akashiwo. The direct uptake of polyphosphate-accumulating bacteria through algal phagocytosis may represent a novel biological phosphorous-cycling pathway in marine ecosystems. The role of polyphosphate-accumulating marine bacteria as a hidden phosphorous source required for bloom formation warrants further investigation.
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