NSF Postdoctoral Fellowship in Biology FY 2019: Examining Natural and Anthropogenic Influences on the Physiology, Population Structure, and Trophic Structure of Larval Rockfishes
NSF Postdoctoral Fellowship in Biology FY 2019: Examining Natural and Anthropogenic Influences on the Physiology, Population Structure, and Trophic Structure of Larval Rockfishes
批准号:
1907334
负责人:
Garfield Kwan
金额:
$13.8万
依托单位:
依托单位国家:
美国
项目类别:
Fellowship Award
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-03-01 至 2023-02-28
中文摘要
这项行动资助了2019财年NSF生物学博士后研究奖学金,使用生物收集的研究。该研究金支持研究员的研究和培训,以创新的方式利用生物收藏。确定环境因素如何影响幼鱼种群对于预测成鱼种群结构至关重要,并将加强渔业管理战略。影响早期生命死亡率的主要因素是捕食和饥饿,这受到氧气,营养物质和其他海洋条件的影响,包括与人类活动有关的变暖和酸化,这些活动增加了碳排放。为了更好地了解影响仔鱼生理和捕食者-猎物相互作用的因素,该项目将把现代生物化学技术应用于67年的仔鱼收集。这些标本与相应的海洋学数据集一起由加州合作海洋渔业调查计划收集,代表了世界上最长的渔业独立数据集。这项工作将有助于了解未来海洋条件下的“赢家”和“输家”,并为渔业管理人员提供重要信息,用于维持具有重要商业价值的渔业种群和保护当地生物多样性。(tes levis)和博伽乔(tes paucispinis),这两个商业上重要的物种在整个世纪经历了急剧下降。使用现代生物化学技术,将使用免疫组织化学,DNA测序和稳定同位素分析生成三个长期生理,遗传和同位素数据集。然后,这些数据集将与海洋学数据集配对,并与两个岩鱼种群的崩溃和恢复相一致,以确定海洋保护区的实施是否成功。这一分析也将揭示人为碳排放对幼虫生理的影响。福尔马林固定的标本是臭名昭著的免疫组织化学和DNA测序分析的问题。这些技术将在这项工作中得到完善,以建立可应用于世界各地生物收集的方法。最后,该研究员还将通过Squidtoons将该研究项目翻译成网络漫画,以供公众传播,最终促进公众对生物研究和收藏的更好理解和欣赏。该奖项反映了NSF的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
This action funds an NSF Postdoctoral Research Fellowship in Biology for FY 2019, Research Using Biological Collections. The fellowship supports research and training of the fellow that will utilize biological collections in innovative ways. Determining how environmental factors influence larval fish populations is essential to predicting the adult population structure and will enhance fishery management strategies. The primary factors affecting early-life mortality are predation and starvation, which are affected by oxygen, nutrients, and other ocean conditions including warming and acidification linked to human activity that has increased carbon emissions. To better understand factors that affect larval physiology and predator-prey interactions, this project will apply modern biochemical techniques to larval fish collections spanning 67 years. These specimens together with a corresponding oceanographic dataset were collected by the California Cooperative Oceanic Fisheries Investigations program and represent the longest fishery-independent dataset in the world. This work will contribute to understanding the 'winners' and 'losers' in future ocean conditions, and provide fishery managers with crucial information that may be applied to maintain commercially-important fishery stocks and preserve local biodiversity.This project will perform analysis on previously collected larval cowcod (Sebastes levis) and bocaccio (Sebastes paucispinis), two commercially important species that have experienced dramatic decline throughout the 20th century. Using modern biochemical techniques, three long-term physiological, genetic, and isotopic datasets will be generated using immunohistochemistry, DNA-sequencing, and stable isotope analysis. These datasets will then be paired with oceanographic datasets and aligned with the collapse and recovery of the two rockfish populations to determine whether the implementation of the Marine Protected Area was successful. This analysis will also reveal the effects of anthropogenic carbon emission on larval physiology. Formalin-fixed specimens are notorious for being problematic for immunohistochemical and DNA-sequencing analysis. These techniques will be refined in this work to establish approaches that could be applied to biological collections around the world. Finally, the fellow will also translate this research project into a webcomic via Squidtoons for public dissemination, ultimately facilitating better public understanding and appreciation of biological research and collections.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(4)
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DOI:
10.1007/s00360-020-01276-3
发表时间:
2020-05-28
期刊:
JOURNAL OF COMPARATIVE PHYSIOLOGY B-BIOCHEMICAL SYSTEMS AND ENVIRONMENTAL PHYSIOLOGY
影响因子:
2
作者:
[Kwan, Garfield T., Smith, Taylor R., Tresguerres, Martin]
通讯作者:
Tresguerres, Martin
Ion-transporting capacity and aerobic respiration of larval white seabass (Atractoscion nobilis) may be resilient to ocean acidification conditions
白鲈幼体(Atractoscion nobilis)的离子传输能力和有氧呼吸可能对海洋酸化条件具有抵抗力
DOI:
10.1016/j.scitotenv.2021.148285
发表时间:
2021
期刊:
Science of The Total Environment
影响因子:
9.8
作者:
[Kwan, Garfield T., Shen, Sara G., Drawbridge, Mark, Checkley, David M., Tresguerres, Martin]
通讯作者:
Tresguerres, Martin
Optimizing immunostaining of archival fish samples to enhance museum collection potential
优化档案鱼类样本的免疫染色以增强博物馆收藏潜力
DOI:
10.1016/j.acthis.2022.151952
发表时间:
2022
期刊:
Acta Histochemica
影响因子:
2.5
作者:
[Kwan, Garfield T., Frable, Benjamin W., Thompson, Andrew R., Tresguerres, Martin]
通讯作者:
Tresguerres, Martin
Elucidating the acid-base mechanisms underlying otolith overgrowth in fish exposed to ocean acidification
阐明暴露于海洋酸化的鱼类耳石过度生长的酸碱机制
DOI:
10.1016/j.scitotenv.2022.153690
发表时间:
2022
期刊:
Science of The Total Environment
影响因子:
9.8
作者:
[Kwan, Garfield T., Tresguerres, Martin]
通讯作者:
Tresguerres, Martin
海外基金