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zadetkov: 177
1.
  • Accessing the energy-limite... Accessing the energy-limited and sparsely populated deep biosphere: achievements and ongoing challenges of available technologies
    Morono, Yuki Progress in earth and planetary science, 04/2023, Letnik: 10, Številka: 1
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    Microbes in marine sediments detected and counted by direct observation of membrane-filtered sediment samples stained with acridine orange. This technique can still be applied to high-biomass (> 10 5 ...
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2.
  • Aerobic microbial life pers... Aerobic microbial life persists in oxic marine sediment as old as 101.5 million years
    Morono, Yuki; Ito, Motoo; Hoshino, Tatsuhiko ... Nature communications, 07/2020, Letnik: 11, Številka: 1
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    Abstract Sparse microbial populations persist from seafloor to basement in the slowly accumulating oxic sediment of the oligotrophic South Pacific Gyre (SPG). The physiological status of these ...
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3.
  • Global diversity of microbi... Global diversity of microbial communities in marine sediment
    Hoshino, Tatsuhiko; Doi, Hideyuki; Uramoto, Go-Ichiro ... Proceedings of the National Academy of Sciences - PNAS, 11/2020, Letnik: 117, Številka: 44
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    Microbial life in marine sediment contributes substantially to global biomass and is a crucial component of the Earth system. Subseafloor sediment includes both aerobic and anaerobic microbial ...
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4.
  • Isolation of an archaeon at the prokaryote-eukaryote interface
    Imachi, Hiroyuki; Nobu, Masaru K; Nakahara, Nozomi ... Nature (London), 01/2020, Letnik: 577, Številka: 7791
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    The origin of eukaryotes remains unclear . Current data suggest that eukaryotes may have emerged from an archaeal lineage known as 'Asgard' archaea . Despite the eukaryote-like genomic features that ...
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5.
  • An improved cell separation... An improved cell separation technique for marine subsurface sediments: applications for high-throughput analysis using flow cytometry and cell sorting
    Morono, Yuki; Terada, Takeshi; Kallmeyer, Jens ... Environmental microbiology, October 2013, Letnik: 15, Številka: 10
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    Summary Development of an improved technique for separating microbial cells from marine sediments and standardization of a high‐throughput and discriminative cell enumeration method were conducted. ...
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6.
  • Significant contribution of... Significant contribution of Archaea to extant biomass in marine subsurface sediments
    Hinrichs, Kai-Uwe; Lipp, Julius S; Morono, Yuki ... Nature, 08/2008, Letnik: 454, Številka: 7207
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    Deep drilling into the marine sea floor has uncovered a vast sedimentary ecosystem of microbial cells. Extrapolation of direct counts of stained microbial cells to the total volume of habitable ...
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7.
  • Metagenomic profiles of arc... Metagenomic profiles of archaea and bacteria within thermal and geochemical gradients of the Guaymas Basin deep subsurface
    Mara, Paraskevi; Geller-McGrath, David; Edgcomb, Virginia ... Nature communications, 11/2023, Letnik: 14, Številka: 1
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    Abstract Previous studies of microbial communities in subseafloor sediments reported that microbial abundance and diversity decrease with sediment depth and age, and microbes dominating at depth tend ...
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8.
  • Label-Free Identification o... Label-Free Identification of Spore-Forming Bacteria Using Ultrabroadband Multiplex Coherent Anti-Stokes Raman Scattering Microspectroscopy
    Tanaka, Kyosuke; Oketani, Ryosuke; Terada, Takeshi ... The journal of physical chemistry. B, 03/2023, Letnik: 127, Številka: 9
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    Spore-forming bacteria accumulate dipicolinic acid (DPA) to form spores to survive in extreme environments. Vibrational spectroscopy is widely used to detect DPA and elucidate the existence of the ...
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9.
  • Methyl-compound use and slo... Methyl-compound use and slow growth characterize microbial life in 2-km-deep subseafloor coal and shale beds
    Trembath-Reichert, Elizabeth; Morono, Yuki; Ijiri, Akira ... Proceedings of the National Academy of Sciences - PNAS, 10/2017, Letnik: 114, Številka: 44
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    The past decade of scientific ocean drilling has revealed seemingly ubiquitous, slow-growing microbial life within a range of deep biosphere habitats. Integrated Ocean Drilling Program Expedition 337 ...
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10.
  • Magmatism, serpentinization... Magmatism, serpentinization and life: Insights through drilling the Atlantis Massif (IODP Expedition 357)
    Früh-Green, Gretchen L.; Orcutt, Beth N.; Rouméjon, Stéphane ... Lithos, 12/2018, Letnik: 323
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    IODP Expedition 357 used two seabed drills to core 17 shallow holes at 9 sites across Atlantis Massif ocean core complex (Mid-Atlantic Ridge 30°N). The goals of this expedition were to investigate ...
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zadetkov: 177

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