Molecular responses of seaweeds to biotic interactions: A systematic review

IF 2.8 3区 生物学 Q1 MARINE & FRESHWATER BIOLOGY Journal of Phycology Pub Date : 2024-09-19 DOI:10.1111/jpy.13504
Tomas Lang, Scott F. Cummins, Nicholas A. Paul, Alexandra H. Campbell
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Abstract

Seaweed farming is the single largest aquaculture commodity with >30 million tonnes produced each year. Furthermore, the restoration of lost seaweed forests is gaining significant momentum, particularly for kelps in warming temperate areas. Whether in aquaculture settings, following restoration practices, or in the wild, all seaweeds undergo biotic interactions with a diverse range of co-occurring or cocultured organisms. To date, most research assessing such biotic interactions has focused on the response of the organism interacting with seaweeds, rather than on the seaweeds themselves. However, understanding how seaweeds respond to other organisms, particularly on a molecular scale, is crucial for optimizing outcomes of seaweed farming or restoration efforts and, potentially, also for the conservation of natural populations. In this systematic review, we assessed the molecular processes that seaweeds undergo during biotic interactions and propose priority areas for future research. Despite some insights into the response of seaweeds to biotic interactions, this review specifically highlights a lack of characterization of biomolecules involved in the response to chemical cues derived from interacting organisms (four studies in the last 20 years) and a predominant use of laboratory-based experiments conducted under controlled conditions. Additionally, this review reveals that studies targeting metabolites (70%) are more common than those examining the role of genes (22%) and proteins (8%). To effectively inform seaweed aquaculture efforts, it will be crucial to conduct larger scale experiments simulating natural environments. Also, employing a holistic approach targeting genes and proteins would be beneficial to complement the relatively well-established role of metabolites.

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海藻对生物相互作用的分子反应:系统综述。
海藻养殖是最大的水产养殖商品,年产量超过 3000 万吨。此外,恢复已消失的海藻林的工作正在取得重大进展,特别是在气候变暖的温带地区恢复海带。无论是在水产养殖环境中,还是在修复实践之后,抑或是在野外,所有海藻都会与各种共生或共培养生物发生生物相互作用。迄今为止,大多数评估此类生物相互作用的研究都侧重于与海藻相互作用的生物的反应,而不是海藻本身。然而,了解海藻对其他生物的反应,尤其是分子尺度上的反应,对于优化海藻养殖或恢复工作的结果,以及潜在地保护自然种群至关重要。在这篇系统综述中,我们评估了海藻在生物相互作用过程中的分子过程,并提出了未来研究的优先领域。尽管对海藻对生物相互作用的反应有了一些了解,但本综述特别强调了缺乏对参与反应的生物分子的特征描述(过去 20 年中只有四项研究),以及主要使用在受控条件下进行的实验室实验。此外,本综述显示,针对代谢物(70%)的研究比针对基因(22%)和蛋白质(8%)作用的研究更为常见。为了有效地为海藻养殖工作提供信息,进行更大规模的模拟自然环境实验至关重要。此外,采用针对基因和蛋白质的整体方法将有益于补充相对完善的代谢物作用。
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来源期刊
Journal of Phycology
Journal of Phycology 生物-海洋与淡水生物学
CiteScore
6.50
自引率
3.40%
发文量
69
审稿时长
2 months
期刊介绍: The Journal of Phycology was founded in 1965 by the Phycological Society of America. All aspects of basic and applied research on algae are included to provide a common medium for the ecologist, physiologist, cell biologist, molecular biologist, morphologist, oceanographer, taxonomist, geneticist, and biochemist. The Journal also welcomes research that emphasizes algal interactions with other organisms and the roles of algae as components of natural ecosystems. All aspects of basic and applied research on algae are included to provide a common medium for the ecologist, physiologist, cell biologist, molecular biologist, morphologist, oceanographer, acquaculturist, systematist, geneticist, and biochemist. The Journal also welcomes research that emphasizes algal interactions with other organisms and the roles of algae as components of natural ecosystems.
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