首页> 外文期刊>Pacific Science: A Quarterly Devoted to the Biological and Physical Sciences of the Pacific Region >Environmental versus genetic influences on growth rates of the corals Pocillopora eydouxi and Porites lobata (Anthozoa : Scleractinia)
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Environmental versus genetic influences on growth rates of the corals Pocillopora eydouxi and Porites lobata (Anthozoa : Scleractinia)

机译:环境与遗传对珊瑚生长速率的影响 Pocillopora eydouxi 和 Porites lobata (Anthozoa : Scleractinia)

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摘要

Reciprocal transplant experiments of the corals Pocillopora eydouxi Milne Edwards Haime and Porites lobata Dana were carried out for an 18-month period from September 2004 to March 2006 between two back reef pools on Ofu Island, American Samoa, to test environmental versus genetic effects on skeletal growth rates. Skeletal growth of P. eydouxi showed environmental but not genetic effects, resulting in doubling of growth in Pool 300 compared with Pool 400. There were no environmental or genetic effects on skeletal growth of P. lobata. Pool 300 had more frequent and longer durations of elevated seawater temperatures than Pool 400, characteristics likely to decrease rather than increase skeletal growth. Pool 300 also had higher nutrient levels and flow velocities than Pool 400, characteristics that may increase skeletal growth. However, higher nutrient levels would be expected to increase skeletal growth in both species, but there was no difference between the pools in P. lobata growth. P. eydouxi is much more common in high-energy environments than P. lobata,; thus the higher flow velocities in Pool 300 than in Pool 400 may have positively affected skeletal growth of P. eydouxi while not having a detectable effect on P. lobata. The greater skeletal growth of P. eydouxi in Pool 300 occurred despite the presence of clade D zooxanthellae in several source colonies in Pool 300, a genotype known to result in greater heat resistance but slower skeletal growth. Increased skeletal growth rates in higher water motion may provide P. eydouxi a competitive advantage in shallow, high-energy environments where competition for space is intense.
机译:从2004年9月到2006年3月,在美属萨摩亚奥福岛的两个后礁池之间进行了为期18个月的珊瑚Pocillopora eydouxi Milne Edwards &Haime和Porites lobata Dana的相互移植实验,以测试环境与遗传对骨骼生长速度的影响。P. eydouxi 的骨骼生长显示出环境效应,但没有遗传效应,导致 Pool 300 的生长比 Pool 400 翻了一番。对P. lobata的骨骼生长没有环境或遗传影响。与400号池相比,300号池的海水温度升高的频率更高,持续时间更长,这些特征可能会减少而不是增加骨骼生长。300 号池的营养水平和流速也高于 400 号池,这些特征可能会增加骨骼生长。然而,较高的营养水平有望增加两个物种的骨骼生长,但 P. lobata 生长的池之间没有差异。P. eydouxi 在高能环境中比 P. lobata 更常见;因此,300池中比400池中更高的流速可能对P. eydouxi的骨骼生长产生了积极影响,而对P. lobata没有可检测的影响。尽管在300池的几个源菌落中存在进化枝D虫黄藻,但300池中P. eydouxi的骨骼生长更大,这种基因型已知会导致更高的耐热性,但骨骼生长较慢。在较高的水运动中增加的骨骼生长速率可能为P. eydouxi在空间竞争激烈的浅层高能环境中提供竞争优势。

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