Stress Response of the Juvenile Tri-Spine Horseshoe Crab Tachypleus tridentatus to Hypoxia: Insights From Phenotypic, Metabolomic, and Microbial Analyses.

IF 3.5 1区 生物学 Q1 ZOOLOGY Integrative zoology Pub Date : 2025-01-14 DOI:10.1111/1749-4877.12948
Lingfeng Jiang, Meilian Huang, Kit Yue Kwan, Youji Wang, Xiaowan Ma, Mohamed H Abo-Raya, Menghong Hu
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Abstract

Over the past few decades, ocean hypoxia has been increasing due to human activities. Hypoxic stress, characterized by a reduced level of dissolved oxygen, is an escalating threat to marine ecosystems, with potentially devastating effects on the viability of endangered species such as the tri-spine horseshoe crab Tachypleus tridentatus. Even though this species is remarkably resilient to low oxygen levels, persistent hypoxia can negatively impact its population's survivability. The objective of this research was to examine the impact of short-term hypoxia on the behavior, gut microbiota, and metabolomics of juvenile T. tridentatus. First instar juvenile horseshoe crabs were subjected to hypoxic stress (2 mg O2/L) for 14 days and then recovered for 7 days in an environment with normal dissolved oxygen. The findings demonstrated that short-term hypoxia reduced the rates of swimming and burrowing of horseshoe crabs, and induced the change of tissue metabolites and intestinal flora malfunction. Additionally, in the hypoxia groups on day 14, 86 distinct metabolites showed a trend of downregulation, while 29 metabolites showed an upregulation trend. Arginine biosynthesis; histidine metabolism; vitamin B6 metabolism; aminoacyl-tRNA biosynthesis; and alanine, aspartate, and glutamate metabolism were the top five metabolic KEGG pathways (p < 0.05) enriched with 8 metabolites. In conclusion, our results provided new insights related to the behaviors, microbiota, and metabolites involved in juvenile T. tridentatus exposed to short-term hypoxic conditions and confirmed that hypoxia impairs their behavioral and physiological status.

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幼年三棘马蹄蟹对缺氧的应激反应:来自表型、代谢组学和微生物分析的见解。
在过去的几十年里,由于人类活动,海洋缺氧一直在增加。以溶解氧水平降低为特征的缺氧胁迫对海洋生态系统的威胁日益严重,对三棘马蹄蟹(Tachypleus tridentatus)等濒危物种的生存能力具有潜在的破坏性影响。尽管这个物种对低氧水平的适应能力很强,但持续的缺氧会对其种群的生存能力产生负面影响。本研究的目的是研究短期缺氧对幼年三齿虎行为、肠道微生物群和代谢组学的影响。1龄马蹄蟹幼蟹在2 mg O2/L的低氧胁迫下生存14 d,然后在正常溶解氧环境下恢复7 d。结果表明,短期缺氧降低了马蹄蟹的游泳和挖洞速度,并引起组织代谢物的变化和肠道菌群功能紊乱。此外,在第14天缺氧组中,86种不同代谢物呈下调趋势,29种代谢物呈上调趋势。精氨酸生物合成;组氨酸代谢;维生素B6代谢;氨酰生物合成;谷氨酸、谷氨酸和丙氨酸代谢是KEGG代谢途径的前5位(p < 0.05),富集了8种代谢产物。综上所述,我们的研究结果为短期缺氧条件下三叉齿龙幼鱼的行为、微生物群和代谢物提供了新的见解,并证实了缺氧会损害它们的行为和生理状态。
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来源期刊
CiteScore
6.40
自引率
12.10%
发文量
81
审稿时长
>12 weeks
期刊介绍: The official journal of the International Society of Zoological Sciences focuses on zoology as an integrative discipline encompassing all aspects of animal life. It presents a broader perspective of many levels of zoological inquiry, both spatial and temporal, and encourages cooperation between zoology and other disciplines including, but not limited to, physics, computer science, social science, ethics, teaching, paleontology, molecular biology, physiology, behavior, ecology and the built environment. It also looks at the animal-human interaction through exploring animal-plant interactions, microbe/pathogen effects and global changes on the environment and human society. Integrative topics of greatest interest to INZ include: (1) Animals & climate change (2) Animals & pollution (3) Animals & infectious diseases (4) Animals & biological invasions (5) Animal-plant interactions (6) Zoogeography & paleontology (7) Neurons, genes & behavior (8) Molecular ecology & evolution (9) Physiological adaptations
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