日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Lowering the Mo limit for nitrogen fixation by Mo-nitrogenase

降低钼固氮酶固氮作用的钼限制

Stevenson, Zackry; Schultz, Dylan L; Chamberlain, Michelle; Rico, Kathryn; Anbar, Ariel; Dekas, Anne E; Swanner, Elizabeth D

Author Correction: Genome-guided isolation of the hyperthermophilic aerobe Fervidibacter sacchari reveals conserved polysaccharide metabolism in the Armatimonadota

作者更正:基因组引导分离嗜热需氧菌 Fervidibacter sacchari 揭示了 Armatimonadota 中保守的多糖代谢。

Nou, Nancy O; Covington, Jonathan K; Lai, Dengxun; Mayali, Xavier; Seymour, Cale O; Johnston, Juliet; Jiao, Jian-Yu; Buessecker, Steffen; Mosier, Damon; Muok, Alise R; Torosian, Nicole; Cook, Allison M; Briegel, Ariane; Woyke, Tanja; Eloe-Fadrosh, Emiley; Shapiro, Nicole; Bryan, Scott G; Sleezer, Savannah; Dimapilis, Joshua; Gonzalez, Cristina; Gonzalez, Lizett; Noriega, Marlene; Hess, Matthias; Carlson, Ross P; Liu, Lan; Li, Meng-Meng; Lian, Zheng-Han; Zhu, Siqi; Liu, Fan; Sun, Xian; Gao, Beile; Mewalal, Ritesh; Harmon-Smith, Miranda; Blaby, Ian K; Cheng, Jan-Fang; Weber, Peter K; Grigorean, Gabriela; Li, Wen-Jun; Dekas, Anne E; Pett-Ridge, Jennifer; Dodsworth, Jeremy A; Palmer, Marike; Hedlund, Brian P

Abundant and metabolically flexible bacterial lineages underlie a vast potential for rubisco-mediated carbon fixation in the dark ocean

丰富的、代谢灵活的细菌谱系为黑暗海洋中通过核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)介导的碳固定提供了巨大的潜力。

Jaffe, Alexander L; Salcedo, Rebecca S R; Dekas, Anne E

Microbial Proxies for Anoxic Microsites Vary with Management and Partially Explain Soil Carbon Concentration

缺氧微环境的微生物指标随管理方式不同而变化,可部分解释土壤碳浓度

Emily M Lacroix, Anna Gomes, Gabriella Barratt Heitmann, Dylan Schuler, Anne E Dekas, Daniel Liptzin, Ezra Aberle, Dexter B Watts, Kelly A Nelson, Steven Culman, Scott Fendorf

Urea assimilation and oxidation support activity of phylogenetically diverse microbial communities of the dark ocean

尿素同化和氧化作用支持着黑暗海洋中系统发育多样化的微生物群落的活性。

Arandia-Gorostidi, Nestor; Jaffe, Alexander L; Parada, Alma E; Kapili, Bennett J; Casciotti, Karen L; Salcedo, Rebecca S R; Baumas, Chloé M J; Dekas, Anne E

Cyanobacteria from marine oxygen-deficient zones encode both form I and form II Rubiscos

来自海洋缺氧区的蓝藻编码 I 型和 II 型 Rubisco。

Jaffe, Alexander L; Harrison, Kaitlin; Wang, Renée Z; Taylor-Kearney, Leah J; Jain, Navami; Prywes, Noam; Shih, Patrick M; Young, Jodi; Rocap, Gabrielle; Dekas, Anne E

Single-cell analysis in hypersaline brines predicts a water-activity limit of microbial anabolic activity

在高盐度盐水中进行的单细胞分析预测了微生物合成代谢活性的水活度极限。

Paris, Emily R; Arandia-Gorostidi, Nestor; Klempay, Benjamin; Bowman, Jeff S; Pontefract, Alexandra; Elbon, Claire E; Glass, Jennifer B; Ingall, Ellery D; Doran, Peter T; Som, Sanjoy M; Schmidt, Britney E; Dekas, Anne E

Single-cell view of deep-sea microbial activity and intracommunity heterogeneity

从单细胞视角观察深海微生物活动和群落内部异质性

Arandia-Gorostidi, N; Parada, A E; Dekas, A E

Mcr-dependent methanogenesis in Archaeoglobaceae enriched from a terrestrial hot spring

从陆地温泉中富集的古球菌科细菌中Mcr依赖性产甲烷作用

Buessecker, Steffen; Chadwick, Grayson L; Quan, Melanie E; Hedlund, Brian P; Dodsworth, Jeremy A; Dekas, Anne E

Microbially induced precipitation of silica by anaerobic methane-oxidizing consortia and implications for microbial fossil preservation

厌氧甲烷氧化菌群落诱导的二氧化硅沉淀及其对微生物化石保存的影响

Daniela Osorio-Rodriguez #, Kyle S Metcalfe #, Shawn E McGlynn, Hang Yu, Anne E Dekas, Mark Ellisman, Tom Deerinck, Ludmilla Aristilde, John P Grotzinger, Victoria J Orphan