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7篇 您的检索式:作者名="Pedentchouk"
    题名 作者 年代 出处 被引量
1The I nhibitor of wax 1 locus ( I w1 ) prevents formation of β‐ and OH ‐β‐diketones in wheat cuticular waxes and maps to a sub‐c M interval on chromosome arm 2 BS显示文摘Nikolai M. Adamski Maxwell S. Bush James Simmonds Adrian S. Turner Sarah G. Mugford Alan Jones Kim Findlay Nikolai Pedentchouk Penny Wettstein‐Knowles Cristobal Uauy 2013Plant J2013,,6:2
2Stable isotope analysis of plant-derived nitrate – Novel method for discrimination between organically and conventionally grown vegetables显示文摘A. Mihailova N. Pedentchouk S.D. Kelly 2014Food Chemistry2014,,:1
3Different responseof delta D values of n-alkanes, isoprenoids, and kerogen duringthermal maturation 显示文摘Pedentchouk N Freeman K H Harris N B 2006Geochim Cosmochim Acta2006,70,20:1
4Is it really organic? – Multi-isotopic analysis as a tool to discriminate between organic and conventional plants显示文摘K.H. Laursen A. Mihailova S.D. Kelly V.N. Epov S. Bérail J.K. Schjoerring O.F.X. Donard E.H. Larsen N. Pedentchouk A.D. Marca-Bell U. Halekoh J.E. Olesen S. Husted 2013Food Chemistry2013,,3:1
5Different response ofδD values of n-alkanes,isoprenoids,and kerogen during thermalmaturation显示文摘Pedentchouk N Freeman K H Harris N B 2006Geochimica et Cosmochimica Acta2006,70,8:1
6The I nhibitor of wax 1 locus ( I w1 ) prevents formation of β‐ and OH ‐β‐diketones in wheat cuticular waxes and maps to a sub‐c M interval on chromosome arm 2 BS显示文摘Nikolai M. Adamski Maxwell S. Bush James Simmonds Adrian S. Turner Sarah G. Mugford Alan Jones Kim Findlay Nikolai Pedentchouk Penny Wettstein‐Knowles Cristobal Uauy 2013Plant J2013,,6:1
7A unique subseafloor microbiosphere in the Mariana Trench driven by episodic sedimentation显示文摘Hadal trenches are characterized by enhanced and infrequent high-rate episodic sedimentation events that likely introduce not only labile organic carbon and key nutrients but also new microbes that significantly alter the subseafloor microbiosphere.Currently,the role of high-rate episodic sedimentation in controlling the composition of the hadal subseafloor microbiosphere is unknown.Here,analyses of carbon isotope composition in a~750 cm long sediment core from the Challenger Deep revealed noncontinuous deposition,with anomalous ^(14)C ages likely caused by seismically driven mass transport and the funneling effect of trench geomorphology.Microbial community composition and diverse enzyme activities in the upper~27 cm differed from those at lower depths,probably due to sudden sediment deposition and differences in redox condition and organic matter availability.At lower depths,microbial population numbers,and composition remained relatively constant,except at some discrete depths with altered enzyme activity and microbial phyla abundance,possibly due to additional sudden sedimentation events of different magnitude.Evidence is provided of a unique role for high-rate episodic sedimentation events in controlling the subsurface microbiosphere in Earth’s deepest ocean floor and highlight the need to perform thorough analysis over a large depth range to characterize hadal benthic populations.Such depositional processes are likely crucial in shaping deep-water geochemical environments and thereby the deep subseafloor biosphere.Jiwen Liu Da-Wei Li Xinxin He Ronghua Liu Haojin Cheng Chenglong Su Mengna Chen Yonghong Wang Zhongsheng Zhao Hanyue Xu Zhangyu Cheng Zicheng Wang Nikolai Pedentchouk David J.Lea-Smith Jonathan D.Todd Xiaoshou Liu Meixun Zhao Xiao-Hua Zhang 2024Marine Life Science & Technology2024,6,1:0
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