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Effect of sub-lethal damage to juvenile colonies of massive Porites spp. under contrasting regimes of temperature and water flow

机译:亚致死性伤害对大块Porites spp幼体集落的影响。在不同的温度和水流条件下

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摘要

In this study, juvenile colonies of massive Porites spp. (a combination of P. lutea and P. lobata) from the lagoon of Moorea (W 149°50′, S 17°30′) were damaged and exposed to contrasting conditions of temperature and flow to evaluate how damage and abiotic conditions interact to affect growth, physiological performance, and recovery. The experiment was conducted in April and May 2008 and consisted of two treatments in which corals were either undamaged (controls) or damaged through gouging of tissue and skeleton in a discrete spot mimicking the effects of corallivorous fishes that utilize an excavating feeding mode. The two groups of corals were incubated for 10 days in microcosms that crossed levels of temperature (26.7 and 29.6°C) and flow (6 and 21 cm s−1), and the response assessed as overall colony growth (change in weight), dark-adapted quantum yield of PSII (Fv/Fm), and healing of the gouged areas. The influence of damage on growth was affected by temperature, but not by flow. When averaged across flow treatments, damage promoted growth by 25% at 26.7°C, but caused a 25% inhibition at 29.6°C. The damage also affected Fv/Fm in a pattern that differed between flow speeds, with a 10% reduction at 6 cm s−1, but a 4% increase at 21 cm s−1. Regardless of damage, Fv/Fm at 21 cm s−1 was 11% lower at 26.7°C than at 29.6°C, but was unaffected by temperature at 6 cm s−1. The lesions declined in area at similar rates (4–5% day−1) under all conditions, although the tissue within them regained a normal appearance most rapidly at 26.7°C and 6 cm s−1. These findings show that the response of poritid corals to sub-lethal damage is dependent partly on abiotic conditions, and they are consistent with the hypothesis that following damage, calcification and photosynthesis can compete for metabolites necessary for repair, with the outcome affected by flow-mediated mass transfer. These results may shed light upon the ways in which poritid corals respond to biting by certain corallivorous fishes.
机译:在这项研究中,大量的Porites spp的青少年殖民地。 (Moorea泻湖(W 149°50',S 17°30')的斑节对虾(P. lutea和P. lobata的组合)被破坏并暴露于相反的温度和流量条件下,以评估破坏和非生物条件如何相互作用影响生长,生理表现和恢复。该实验于2008年4月和2008年5月进行,由两种处理组成,其中珊瑚未受到破坏(对照),或者由于在单个位置上对组织和骨骼进行刨削而受到了破坏,从而模仿了采用开挖进食方式的珊瑚鱼的影响。将两组珊瑚在温度(26.7和29.6°C)和水流(6和21 cmss -1 )的水平交叉的缩影中孵育10天,并将响应评估为总体菌落的生长(重量变化),暗适应的PSII量子产率(Fv / Fm)和挖土区的愈合。损害对生长的影响受温度影响,但不受流动影响。当在所有流量处理中平均时,损伤在26.7°C时促进生长25%,但在29.6°C时引起25%抑制。损伤也以不同的流速影响Fv / Fm,在6 cms -1 时降低10%,而在21cms -1 时增加4% / sup>。无论是否受到损坏,在26.7°C时21 cm s -1 的Fv / Fm比29.6°C时低11%,但不受6cm s -1的温度影响sup>。尽管在26.7°C和6 cms 情况下,病变组织的恢复速度最快,但在所有条件下,病变的面积均以相似的速率下降(4-5%day -1 ) -1 。这些发现表明,软体动物对亚致死性伤害的反应部分取决于非生物条件,并且与以下假设相一致:受损后,钙化和光合作用可以竞争修复所必需的代谢物,其结果受流量影响。介导的传质。这些结果可能会揭示出三叉戟珊瑚对某些珊瑚食性鱼类咬食的反应方式。

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