ホーム › PubMed Lab 🤖 自分の AI で使う ⭐ 保存した論文

🔬 PubMed Lab

日本語で入力するだけで、PubMed の英語論文を検索できるリサーチアシスタントです。
卒論・研究テーマ探し、興味のある論文を効率よく見つけられます。

「海洋生態系の「つながり」研究が統合へ—保全政策を支える新枠組み」の検索結果

9 件中 9 件を表示 (5267 ms) · ⭐ 保存した論文

AI が生成した英語クエリを見る
("marine ecosystem"[MeSH] OR "ocean ecosystem"[Title/Abstract]) AND (connectivity OR linkage OR integration OR network) AND (conservation OR "ecosystem management"[MeSH] OR policy OR framework)

💡 海洋生態系の連結性・統合研究と保全政策の枠組みに焦点を当て、MeSH用語と自由語を組み合わせました

🎓 卒論・修論テーマを AI が提案

この 5 本の論文を俯瞰して、あなたが実際に卒論・修論で研究できるテーマを 3 つ提案します。

残り 3 / 3 回 (今日)

📖 このサイトの解説記事から (日本語で読める)

PubMed Trivia が過去に取り上げた論文を日本語で解説している記事です。

🔍 PubMed の検索結果

  • Tiger sharks support the characterization of the world's largest seagrass ecosystem.

    Austin J Gallagher, Jacob W Brownscombe, Nourah A Alsudairy 他 · Nature communications · 2022

    Seagrass conservation is critical for mitigating climate change due to the large stocks of carbon they sequester in the seafloor. However, effective conservation and its potential to provide nature-based solutions to climate change is hindered by major uncertainties regarding seagrass extent and distribution. Here, we describe the characterization of the world's largest seagrass ecosystem, located…

    📄 PubMed で読む (PMID: 36319621)
  • Pelagic food web realignment supports resilient larvae of Southern Bluefin Tuna in a warming ocean.

    Michael R Landry, Raúl Laiz-Carrión, Estrella Malca 他 · Proceedings of the National Academy of Sciences of the United States of America · 2026

    Many of the oceans' top predatory fishes at low to mid latitudes face an uncertain future as their vulnerable larvae deal with higher environmental temperature and reduced productivity associated with climate change. However, ocean ecosystem models that predict a general decline of zooplankton prey with warming and stratification hardly ever account for complexities in pelagic food webs that might…

    📄 PubMed で読む (PMID: 42636360)
  • Long-term patterns of an interconnected core marine microbiota.

    Anders K Krabberød, Ina M Deutschmann, Marit F M Bjorbækmo 他 · Environmental microbiome · 2022

    Ocean microbes constitute ~ 70% of the marine biomass, are responsible for ~ 50% of the Earth's primary production and are crucial for global biogeochemical cycles. Marine microbiotas include core taxa that are usually key for ecosystem function. Despite their importance, core marine microbes are relatively unknown, which reflects the lack of consensus on how to identify them. So far, most core mi…

    📄 PubMed で読む (PMID: 35526063)
  • The Evolution of Southern Ocean Net Primary Production in a Changing Climate: Challenges and Opportunities.

    Alessandro Tagliabue, Thomas Ryan-Keogh, Alex Baker 他 · Global change biology · 2025

    Net primary production in the Southern Ocean plays a critical role in governing ecosystem production, the biological carbon pump, and global biogeochemical cycles. Recent work has advanced our understanding of novel factors regulating Southern Ocean net primary production and the regional physiological adaptations employed by Southern Ocean phytoplankton in terms of their photosynthetic strategies…

    📄 PubMed で読む (PMID: 41392650)
  • Identifying common trends and ecosystem states to inform Gulf of Alaska ecosystem-based fisheries management.

    Bridget E Ferriss, Mary E Hunsicker, Eric J Ward 他 · PloS one · 2025

    Ecosystem-based fisheries management requires the successful integration of ecosystem information into the fisheries management process. In the Northeast Pacific Ocean, ecosystem data collection and accessibility have achieved successful milestones, yet application to the harvest specification process remains challenging. The synthesis, interpretation, and application of ecosystem information to g…

    📄 PubMed で読む (PMID: 40478913)
  • Adjusting the management of the Antarctic krill fishery to meet the challenges of the 21st century.

    Bettina Meyer, Javier A Arata, Angus Atkinson 他 · Proceedings of the National Academy of Sciences of the United States of America · 2025

    Antarctic krill (Euphausia superba) is the central prey species in the Southern Ocean food web, supporting the largest and fastest-growing fishery in the region, managed by the Commission for the Conservation of Antarctic Marine Living Resources (CCAMLR). Climate change is threatening krill populations and their predators, while current catch limits do not take into account climate variability or …

    📄 PubMed で読む (PMID: 40920918)
  • Sea ice biogeochemistry: a guide for modellers.

    Letizia Tedesco, Marcello Vichi · PloS one · 2014

    Sea ice is a fundamental component of the climate system and plays a key role in polar trophic food webs. Nonetheless sea ice biogeochemical dynamics at large temporal and spatial scales are still rarely described. Numerical models may potentially contribute integrating among sparse observations, but available models of sea ice biogeochemistry are still scarce, whether their relevance for properly…

    📄 PubMed で読む (PMID: 24586604)
  • Complete mitogenomes reveal high diversity and recent population dynamics in Antarctic krill.

    Shuai Sun, Shuo Li, Inge Seim 他 · BMC genomics · 2025

    The Antarctic krill (Euphausia superba) is a keystone species in the Southern Ocean ecosystem, influencing food web dynamics and ecosystem functionality. Despite its ecological importance, further exploration is essential to understand their population dynamics. In this study, we present the complete mitogenome of the Antarctic krill. The assembly is 18,926 bp, including a notably large 3,952 bp c…

    📄 PubMed で読む (PMID: 40301719)
  • Unravelling the relative roles of top-down and bottom-up forces driving population change in an oceanic predator.

    C Horswill, N Ratcliffe, J A Green 他 · Ecology · 2016

    In the open ocean ecosystem, climate and anthropogenic changes have driven biological change at both ends of the food chain. Understanding how the population dynamics of pelagic predators are simultaneously influenced by nutrient-driven processes acting from the "bottom-up" and predator-driven processes acting from the "top-down" is therefore considered an urgent task. Using a state-space demograp…

    📄 PubMed で読む (PMID: 27859185)