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

Bacterial iron acquisition by Escherichia coli is facilitated by amino acid complexation in a rapid-renewal environment

在快速更新的环境中,大肠杆菌通过氨基酸络合作用促进细菌对铁的吸收。

Lara-Gutiérrez, Juanita; Nguyen, Jen; McIlvin, Matthew R; Sugiyama, Ichiko; Landry, Zachary C; Alcolombri, Uria; Pontrelli, Sammy; Jiménez-Martínez, Joaquín; Sauer, Uwe; Hwa, Terence; Keegstra, Johannes M; Saito, Mak A; Stocker, Roman

The geologic history of marine dissolved organic carbon from iron oxides

海洋溶解性有机碳(源自铁氧化物)的地质历史

Galili, Nir; Bernasconi, Stefano M; Nissan, Alon; Alcolombri, Uria; Aquila, Giorgia; Di Bella, Marcella; Blattmann, Thomas M; Haghipour, Negar; Italiano, Francesco; Jaggi, Madalina; Kaplan-Ashiri, Ifat; Lee, Kang Soo; Lechte, Maxwell A; Magnabosco, Cara; Porter, Susannah M; Rudmin, Maxim; Spencer, Robert G M; Stocker, Roman; Wang, Zhe; Wohlwend, Stephan; Hemingway, Jordon D

Author Correction: Biogel scavenging slows the sinking of organic particles to the ocean depths

作者更正:生物凝胶清除作用减缓了有机颗粒沉入海洋深处的速度。

Alcolombri, Uria; Nissan, Alon; Słomka, Jonasz; Charlton, Sam; Secchi, Eleonora; Short, Isobel; Lee, Kang Soo; Peaudecerf, François J; Baumgartner, Dieter A; Sichert, Andreas; Sauer, Uwe; Sengupta, Anupam; Stocker, Roman

Biogel scavenging slows the sinking of organic particles to the ocean depths

生物凝胶清除作用减缓了有机颗粒沉入海洋深处的速度。

Alcolombri, Uria; Nissan, Alon; Słomka, Jonasz; Charlton, Sam; Secchi, Eleonora; Short, Isobel; Lee, Kang Soo; Peaudecerf, François J; Baumgartner, Dieter A; Sichert, Andreas; Sauer, Uwe; Sengupta, Anupam; Stocker, Roman

Bacteria induce an amoeboid phase in coccolithophores that persists after bloom collapse.

细菌诱导球石藻进入变形虫样阶段,该阶段在藻华消亡后仍然存在

Zweifel Sophie T, Henshaw Richard J, Müller Oliver, Keegstra Johannes M, Charlton Samuel G V, Pioli Roberto, Martínez-Pérez Clara, Alcolombri Uria, Clerc Estelle, Stocker Roman

The ultra-high affinity transport proteins of ubiquitous marine bacteria

普遍存在的海洋细菌的超高亲和力转运蛋白

Clifton, Ben E; Alcolombri, Uria; Uechi, Gen-Ichiro; Jackson, Colin J; Laurino, Paola

Global warming accelerates soil heterotrophic respiration

全球变暖加速土壤异养呼吸作用

Nissan, Alon; Alcolombri, Uria; Peleg, Nadav; Galili, Nir; Jimenez-Martinez, Joaquin; Molnar, Peter; Holzner, Markus

Strong chemotaxis by marine bacteria towards polysaccharides is enhanced by the abundant organosulfur compound DMSP

海洋细菌对多糖的强烈趋化性会因丰富的有机硫化合物DMSP而增强。

Clerc, Estelle E; Raina, Jean-Baptiste; Keegstra, Johannes M; Landry, Zachary; Pontrelli, Sammy; Alcolombri, Uria; Lambert, Bennett S; Anelli, Valerio; Vincent, Flora; Masdeu-Navarro, Marta; Sichert, Andreas; De Schaetzen, Frédéric; Sauer, Uwe; Simó, Rafel; Hehemann, Jan-Hendrik; Vardi, Assaf; Seymour, Justin R; Stocker, Roman

Cultivating a more effective culture to advance the engineering of microbial communities

培养更有效的培养方法,以推进微生物群落的工程化改造

Słomka, Jonasz; Alcolombri, Uria; Carrara, Francesco; Foffi, Riccardo; Peaudecerf, François J; Zbinden, Matti; Stocker, Roman; Fowler, S Jane; Curtis, Thomas P

Microbes contribute to setting the ocean carbon flux by altering the fate of sinking particulates

微生物通过改变沉降颗粒物的命运,对海洋碳通量产生影响。

Nguyen, Trang T H; Zakem, Emily J; Ebrahimi, Ali; Schwartzman, Julia; Caglar, Tolga; Amarnath, Kapil; Alcolombri, Uria; Peaudecerf, François J; Hwa, Terence; Stocker, Roman; Cordero, Otto X; Levine, Naomi M