Revisiting the larval dispersal black box in the Anthropocene

Revisiting the larval dispersal black box in the Anthropocene
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重新审视人类世的幼虫传播黑匣子

DOI:
10.1093/icesjms/fsy097
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发表时间:
2018
影响因子:
3.3
通讯作者:
M. Byrne
M. Byrne
中科院分区:
农林科学2区
文献类型:
--
作者:
Kit Yu Karen Chan;M. Sewell;M. Byrne

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许多海洋生物有多阶段的生活史,并依靠其浮游幼虫进行传播。尽管幼虫在塑造种群分布和丰度方面发挥着重要作用,但塑造幼虫命运的化学,物理和生物因素仍然没有完全了解。在全球气候变化的背景下,揭示幼虫扩散的“黑匣子”已经变得至关重要,这主要是因为幼虫扩散在制定合理的保护和管理战略方面的重要性。关注两个主要的压力,变暖和酸化,我们强调了目前的物种,实验室为基础的研究方法的局限性,特别是缺乏考虑的幼虫经验沿着分散的途径。测量生物体对环境相关的气候变化压力的反应需要改进幼虫通过个体发育经历的物理和生物条件的记录,这反过来又需要更新的经验和理论方法。虽然幼虫生态学家可以进行有意义的分类群比较,但要窥视扩散黑匣子并调查改变扩散的更大规模后果,需要生态学家,海洋学家,分子生物学家,统计学家和数学家之间的创新合作。
Many marine organisms have a multi-phase life history and rely on their planktonic larvae for dispersal. Despite the important role of larvae in shaping population distribution and abundance, the chemical, physical, and biological factors that shape larval fate are still not fully understood. Shedding light into this larval dispersal “black box” has become critical in the face of global climate change, primarily due to the importance of larval dispersal in formulating sound conservation and management strategies. Focusing on two major stressors, warming and acidification, we highlight the limitations of the current species-by-species, lab-based study approach, and particularly the lack of consideration of the larval experience along the dispersive pathway. Measuring organismal responses to environmentally relevant climate change stress demands an improved documentation of the physical and biological conditions that larvae experience through ontogeny, which in turn requires updated empirical and theoretical approaches. While there are meaningful between taxa comparisons to be made by larval ecologists, to peek into the dispersal black box and to investigate the larger scale consequences of altered dispersal requires innovative collaborations between ecologists, oceanographers, molecular biologists, statisticians, and mathematicians.
DOI: 10.1038/s41598-017-02777-y
发表时间: 2017-05-31
期刊: Scientific reports
影响因子: 4.6
作者:
Chan F;Barth JA;Blanchette CA;Byrne RH;Chavez F;Cheriton O;Feely RA;Friederich G;Gaylord B;Gouhier T;Hacker S;Hill T;Hofmann G;McManus MA;Menge BA;Nielsen KJ;Russell A;Sanford E;Sevadjian J;Washburn L
通讯作者: Washburn L
海洋扩散规模在进化和生态时间上是一致的
DOI: 10.1016/j.cub.2016.10.053
发表时间: 2017
期刊: Current Biology
影响因子: 9.2
作者:
Pinsky, Malin L.;Saenz-Agudelo, Pablo;Salles, Océane C.;Almany, Glenn R.;Bode, Michael;Berumen, Michael L.;Andréfouët, Serge;Thorrold, Simon R.;Jones, Geoffrey P.;Planes, Serge
通讯作者: Planes, Serge