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首页> 外文期刊>Marine ecology progress series >Seed burial in eelgrass Zostera marina: the role of infauna
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Seed burial in eelgrass Zostera marina: the role of infauna

机译:鳗草带状疱疹的种子埋葬:Infauna的作用

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Seed burial is a vital process that influences small- and large-scale plant population patterns and is frequently mediated by soil-dwelling invertebrates. Despite its importance in terrestrial systems, very little is known about seed burial in seagrasses. The goal of this work was to determine the role that benthic infauna play in the burial of Zostera marina seeds. Mesocosm experiments studying seed burial depth, seed burial rate, and particle burial and redistribution using beads, were conducted in defaunated sediment cores populated with single specimens of infauna with different modes of feeding and thus bioturbation effects: Amphitrite ornata (downward conveyor deposit feeder), Clymenella torquata and Pectinaria gouldi (upward conveyor deposit feeders), and Neanthes succinea (gallery biodiffuser). Seeds and beads in animal cores were significantly more likely to be buried than seeds in control cores in each experiment, although burial depths and rates varied by species. N. succinea and P. gouldi showed the most dramatic burial. N. succinea also showed evidence for actively burying seeds. Seed burial depths for A. ornata, C. torquata, and P. gouldi related well to individual bioturbation rates for those species. These results indicate that Z. marina seed burial is facilitated by infaunal bioturbation. Further, individual species have a different impact on burial patterns, and burial is rapid and occurs within days. Seed burial by infaunal bioturbation is relevant to seed survival by providing escape from predation, retention in suitable settlement sites, and movement to a sediment depth suitable for germination.
机译:种子埋葬是影响小规模和大规模植物种群模式的重要过程,并且经常由居住在土壤中的无脊椎动物介导。尽管它在陆地系统中很重要,但对海草种子埋葬的了解很少。这项工作的目的是确定底栖动物在埋藏的Zostera滨海种子中的作用。介观试验研究了种子埋葬深度,种子埋葬率以及使用珠子进行的颗粒埋葬和再分布,这些实验是在废弃的沉积物核心中进行的,该沉积物核心中填充有单个Infauna标本,具有不同的进料方式,因此具有生物扰动作用:Amphitrite ornata(向下输送沉积物进料器),弯孢杆菌和果胶(向上传送器沉积物进料器),以及琥珀色Neanthes(画廊生物扩散器)。在每个实验中,尽管掩埋深度和比率因物种而异,但动物核心中的种子和珠子比对照核心中的种子被掩埋的可能性要大得多。琥珀色猪笼草和古尔氏疟原虫的墓葬最为生动。琥珀色猪笼草也显示出积极埋藏种子的证据。 A. ornata,C。torquata和P. gouldi的种子埋葬深度与这些物种的个体生物扰动率密切相关。这些结果表明不孕生物扰动促进了Z. marina种子的埋葬。此外,单个物种对墓葬的形态有不同的影响,并且墓葬是快速的,并且会在几天之内发生。通过不发生生物扰动的方式进行种子埋葬与种子的存活有关,因为它可以提供掠食逃逸,保留在合适的定居点以及移动到适合发芽的沉积深度的功能。

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