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  1. Article ; Online: Active tectonics and paleo-earthquakes in north Yumu Shan, northern Tibetan Plateau

    Ye Wang / Xuanhua Chen / Chengguang He / Yongjun Xiao / Zhaogang Shao / Jian’en Han / Bing Li / Yiping Zhang / Weicui Ding / Shenglin Xu / Lele Han

    Frontiers in Earth Science, Vol

    Insights from structural analysis and radiocarbon dating

    2023  Volume 11

    Abstract: The Yumu Shan is located at the northern margin of the Tibetan Plateau in northwest China. It is characterized by the development of several northeastward-protruding arcuate geomorphic bulge belts on its north slope. These bulge belts are distributed ... ...

    Abstract The Yumu Shan is located at the northern margin of the Tibetan Plateau in northwest China. It is characterized by the development of several northeastward-protruding arcuate geomorphic bulge belts on its north slope. These bulge belts are distributed along the Wutongquan spring, the ancient Camel City, and the Xiaogengzi area, and south to Gaotai City in the Hexi Corridor. In this study, our detailed field mapping and structural analysis reveal northeastward active anticline folding along the curved bulge belts and related lacustrine sediments in their hinterlands. Radiocarbon dating of plant charcoal samples from lacustrine sedimentary layers yields a 14C age of AD 178 ± 42. This age is close to the time of the 180AD/Ms7.5 earthquake at Biaoshi City (i.e., the ancient Zhangye City) during the Eastern Han Dynasty. The similarity between seismic events and sedimentary age leads us to infer that the charcoal in the lacustrine layer records a major flood event related to the Biaoshi earthquake. We propose a fault-related fold model for the formation of the arcuate bulge belts and related sediments. First, a series of historical earthquake activities in the Holocene, especially the 180AD/Ms7.5 Biaoshi earthquake, may have led to active blind thrust faulting in the northern margin of the plateau. Then, blind thrusting may have resulted in fault-related anticline folding, causing the formation of geomorphic bulges. The latter acts as a flood-retaining dam, resulting in hinterland deposition of lacustrine sediments. For this reason, we suggest that seismogenic blind thrust faulting is responsible for the uplift and northward growth of the Tibetan Plateau. As the northernmost blind thrust in this area, the Xiaogengzi Fault could be considered the North Boundary Thrust (NBT), which defines exactly the northern margin of the plateau.
    Keywords active tectonics ; paleo-earthquake ; radiocarbon dating ; blind thrusts ; plateau growth ; Hexi Corridor ; Science ; Q
    Subject code 550
    Language English
    Publishing date 2023-04-01T00:00:00Z
    Publisher Frontiers Media S.A.
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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  2. Article ; Online: Ribosomal selection of mRNAs with degenerate initiation triplets.

    Chengguang, He / Sabatini, Paola / Brandi, Letizia / Giuliodori, Anna M / Pon, Cynthia L / Gualerzi, Claudio O

    Nucleic acids research

    2017  Volume 45, Issue 12, Page(s) 7309–7325

    Abstract: To assess the influence of degenerate initiation triplets on mRNA recruitment by ribosomes, five mRNAs identical but for their start codon (AUG, GUG, UUG, AUU and AUA) were offered to a limiting amount of ribosomes, alone or in competition with an ... ...

    Abstract To assess the influence of degenerate initiation triplets on mRNA recruitment by ribosomes, five mRNAs identical but for their start codon (AUG, GUG, UUG, AUU and AUA) were offered to a limiting amount of ribosomes, alone or in competition with an identical AUGmRNA bearing a mutation conferring different electrophoretic mobility to the product. Translational efficiency and competitiveness of test mRNAs toward this AUGmRNA were determined quantifying the relative amounts of the electrophoretically separated wt and mutated products synthesized in vitro and found to be influenced to different extents by the nature of their initiation triplet and by parameters such as temperature and nutrient availability in the medium. The behaviors of AUAmRNA, UUGmRNA and AUGmRNA were the same between 20 and 40°C whereas the GUG and AUUmRNAs were less active and competed poorly with the AUGmRNA, especially at low temperature. Nutrient limitation and preferential inhibition by ppGpp severely affected activity and competitiveness of all mRNAs bearing non-AUG starts, the UUGmRNA being the least affected. Overall, our data indicate that beyond these effects exclusively due to the degenerate start codons within an optimized translational initiation region, an important role is played by the context in which the rare start codons are present.
    MeSH term(s) Binding, Competitive ; Codon, Initiator ; Escherichia coli/chemistry ; Escherichia coli/genetics ; Escherichia coli/metabolism ; Kinetics ; Mutation ; Peptide Chain Initiation, Translational ; Prokaryotic Initiation Factor-1/genetics ; Prokaryotic Initiation Factor-1/metabolism ; RNA, Messenger/genetics ; RNA, Messenger/metabolism ; Ribosomes/genetics ; Ribosomes/metabolism ; Subcellular Fractions/chemistry ; Temperature
    Chemical Substances Codon, Initiator ; Prokaryotic Initiation Factor-1 ; RNA, Messenger
    Language English
    Publishing date 2017-07-07
    Publishing country England
    Document type Journal Article
    ZDB-ID 186809-3
    ISSN 1362-4962 ; 1362-4954 ; 0301-5610 ; 0305-1048
    ISSN (online) 1362-4962 ; 1362-4954
    ISSN 0301-5610 ; 0305-1048
    DOI 10.1093/nar/gkx472
    Database MEDical Literature Analysis and Retrieval System OnLINE

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