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将生理学与生态功能联系起来:环境条件影响潮间带海带 Hedophyllum sessile(Laminariales,Phaeophyceae)的性能和大小。

Linking Physiology To Ecological Function: Environmental Conditions Affect Performance And Size Of The Intertidal Kelp Hedophyllum Sessile (Laminariales, Phaeophyceae).

机构信息

Department of Biological Science, California State University Fullerton, Fullerton, California, USA, 92834.

Department of Biology, Cerritos College, Norwalk, California, USA, 90650.

出版信息

J Phycol. 2021 Feb;57(1):128-142. doi: 10.1111/jpy.13071. Epub 2020 Dec 14.

Abstract

For autogenic ecosystem engineers, body size is an aspect of individual performance that has direct connections to community structure; yet the complex morphology of these species can make it difficult to draw clear connections between the environment and performance. We combined laboratory experiments and field surveys to test the hypothesis that individual body size was determined by disparate localized physiological responses to environmental conditions across the complex thallus of the intertidal kelp Hedophyllum sessile, a canopy-forming physical ecosystem engineer. We documented substantial (> 40%) declines in whole-thallus photosynthetic potential (as Maximum Quantum Yield, MQY) as a consequence of emersion, which were related to greater than 10-fold increases in intra-thallus MQY variability (as Coefficient of Variation). In laboratory experiments, desiccation and high light levels during emersion led to lasting impairment of photosynthetic potential and an immediate > 25% reduction in area due to tissue contraction, which was followed by complete loss of structural integrity after three days of submersion. Tissue exposed to desiccation and high light during emersion had higher nitrogen concentrations and lower phlorotannin concentrations than tissue in control treatments (on average 1.36 and 0.1x controls, respectively), suggesting that conditions during emersion have the potential to affect food quality for consumers. Our data indicate that the complex thallus morphology of H. sessile may be critical to this kelp's ability to persist in the intertidal zone despite the physiological challenges of emersion and encourage a more nuanced view of the concept of "sub-lethal stress" on the scale of the whole individual.

摘要

对于自体生态系统工程师来说,体型是个体表现的一个方面,它与群落结构直接相关;然而,这些物种复杂的形态结构可能使得很难在环境和性能之间建立明确的联系。我们结合实验室实验和野外调查,测试了这样一个假设,即个体体型是由其在复杂的潮间带海带 Hedophyllum sessile 藻体中对环境条件的不同局部生理反应决定的,Hedophyllum sessile 是一种形成树冠的物理生态系统工程师。我们记录到整个藻体光合作用潜力(以最大量子产量,MQY 表示)显著下降(> 40%),这是由于暴露在空气中导致的,这与藻体内 MQY 变异性(以变异系数表示)增加超过 10 倍有关。在实验室实验中,暴露在空气中时的干燥和高光水平导致光合作用潜力持续受损,以及由于组织收缩导致的面积立即减少> 25%,这之后在三天的浸水后藻体完全失去结构完整性。暴露在空气中时干燥和高光下的组织比对照处理中的组织具有更高的氮浓度和更低的岩藻黄质浓度(平均分别为对照的 1.36 和 0.1x),这表明暴露期间的条件有可能影响消费者的食物质量。我们的数据表明,H. sessile 的复杂藻体形态可能是该海带能够在潮间带中生存的关键,尽管暴露在空气中会带来生理挑战,并鼓励在个体整体尺度上对“亚致死压力”概念有更细致的看法。

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