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首页> 外文期刊>Journal of phycology >Seasonal module dynamics in Sargassum subrepandum (Fucales, Phaeophyta)
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Seasonal module dynamics in Sargassum subrepandum (Fucales, Phaeophyta)

机译:Sargassum subrepandum(Fucales,Phaeophyta)的季节性模块动态

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摘要

Module dynamics of the fucoid alga Sargassum subrepandum (Forssk.) C. Agardh was studied in the southern Red Sea. Seasonal variation in thallus density and size was determined, and the initiation, growth, reproduction, and shedding of modules (primary laterals) were ascertained, using a tagging approach. Possible effects of different size-related parameters on module initiation, growth, reproduction, and shedding were analyzed in the context of contradicting results for other macroalgae, in comparison with terrestrial plants. Thallus density varied little; most of the seasonal variation occurred at the modular level. A restricted period of new module formation early in the cooler season was followed by fast growth and reproduction. Massive shedding of modules occurred toward the end of the cooler season leading to strongly reduced biomass in summer. There was some evidence that high module numbers inhibited new module formation and enhanced the maximum module elongation rate (fastest-growing module per thallus). On the other hand, elongation rates generally decreased, and apical tissue losses increased with increasing module length. This response was observed over a wide size range, suggesting grazing losses. There was no evidence of suppressed growth in small modules due to intraspecific competition. Elongation rates remained unaffected by reproductive status, indicating that there was no direct trade-off between growth and reproduction. Module survivorship was independent of module number and size, but fertile modules were more persistent than vegetative ones. We conclude that module dynamics are determined by seasonal changes in the environment, size-dependent processes, and interactions among the modules.
机译:岩藻藻类Sargassum subrepandum(Forssk。)C. Agardh的模块动力学在红海南部进行了研究。确定了all体密度和大小的季节性变化,并使用标记方法确定了组件(主要侧面)的萌生,生长,繁殖和脱落。与陆生植物相比,在与其他大型藻类结果相反的情况下,分析了与大小相关的参数对模块萌发,生长,繁殖和脱落的可能影响。 hall的密度变化很小;大多数季节性变化都发生在模块级别。在较冷的季节初期,新模块的形成受到限制,随后又快速生长和繁殖。在寒冷季节即将结束时,组件大量脱落,导致夏季生物量大大减少。有证据表明,较高的模块数量会抑制新模块的形成并提高最大模块伸长率(每个针状体生长最快的模块)。另一方面,随着模块长度的增加,伸长率通常降低,并且根尖组织损失增加。在较宽的尺寸范围内观察到了这种反应,提示放牧损失。没有证据表明由于种内竞争,小模块的生长受到抑制。伸长率不受生殖状况的影响,表明生长与繁殖之间没有直接的权衡。模块的生存与模块的数量和大小无关,但是肥沃的模块比无营养的模块更持久。我们得出的结论是,模块动态取决于环境的季节性变化,尺寸依赖的过程以及模块之间的相互作用。

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