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13篇 您的检索式:作者名="Humbeck"
    题名 作者 年代 出处 被引量
1Functional and molecular changes in the photosynthetic apparatus during senescence of flag leaves from field-grown barley plants 显示文摘Humbeck K Quast S Krupinska K 1996Plant Cell Environ1996,19,:1
2Heavy metal stress and leaf senescence induce the barley gene HvC2d1 encoding a calci- um-dependent novel C2 domain-like protein显示文摘Ouelhadj A Kuschk P Humbeck K 2006New Phytologist2006,170,2:1
3Evidence for an essential role of carotenoids in the assembly of an active photosystem Ⅱ显示文摘 ROMER S SENGER H 1989Planta1989,179,:1
4Light-induced synchronous cuhures, an excellent tool to study the cell cycle of unicellular green algae 显示文摘Krupinska K Humbeck K 1994J Photochem Photobiol B1994,26,:1
5Stress induced and nuclear localized HIPP26 from Arabidopsis thaliana interacts via its heavy metal associated domain with the drought stress related zinc finger transcription factor A THB29 显示文摘Barth O Vogt S Uhlemann R Zschiesche W Humbeck K 2009Plant Mol Biol2009,69,12:1
6Nuclear targeted AtS40 modulates senescence associated gene expression in Arabidopsis thaliana during natural development and in darkness显示文摘Isabell Fischer-Kilbienski Ying Miao Thomas Roitsch Wiebke Zschiesche Klaus Humbeck Karin Krupinska 2010Plant Molecular Biology2010,,4:1
7Heavy metal stress and leaf senescence induce the barley gene HvC2dl encoding a calcium dependent novel C2 do- mainqike protein显示文摘Ouelhadj A Kusehk P Humbeck K 2006New Phytologist2006,170,2:1
8Concern- ing the mechanism of the FeC13-catalyzed r-oxyamination of alde- hydes: evidence for a non-SOMO activation pathway显示文摘Van Humbeck JF Simonovich SP Rnowles RR 2010J Am Chem Soc2010,132,10:1
9Isolation and characterization of a Tritordeum cDNA encoding S-adenosylmethionine decarboxylase that is circadian-clock-regulated显示文摘Thomas Dresselhaus Pilar Barcelo Christine Hagel Horst L?rz Klaus Humbeck 1996Plant Molecular Biology1996,,5:1
10Functional and molecular changes in the photosynthetic apparatus during senescence of flag leaves from field-grown barley plants显示文摘Humbeck K Quast S Krupinaska K 1996Plant Cell and Environment1996,19,:1
11Heavy metal stress and leaf senescence induce the barley gene HvC2dl encoding a calcium- dependent novel C2 domain-like protein 显示文摘Ouelhadj A Kuschk P Humbeck K 2006New Phytologist2006,170,2:1
12The hemibiotroph Colletotrichum graminicola locally induces photosynthetically active green islands but globally accelerates senescence on aging maize leaves显示文摘Behr M Humbeck K Hause G 2010Molecular Plant-Microbe Interactions2010,23,7:1
13Super-anti-freezing,tough and adhesive titanium carbide and L-ornithine-enhanced hydrogels显示文摘Hydrogels are highly porous three-dimensional crosslinked polymer networks consisting of hy-drophilic polymers,employed most practically in medicine and industry,often as biosensors.Simple hydrogels suffer limitations in their mechanical properties,such as tensile and com-pression,and freeze at sub-zero temperatures,which compromise their ability as useful biosen-sors.In this study,the incorporation of L-ornithine-based zwitterionic monomer(OZM),titanium carbide(MXene),and glycerol within polyacrylamide hydrogels was used to prepare a novel polyacrylamide/polyL-ornithine-based zwitterion/MXene(PAM/Porn/MXene)hydrogel to im-prove the mechanical,adhesion,and anti-freezing properties of pure polyacrylamide hydrogels.This study also analyzed the mechanical strength(tensile and compression),adhesion,and anti-freezing properties of a novel PAM/Porn/MXene hydrogel at 1%,4%,and 10%MXene concen-trations to establish to what extent the conductive MXene material enhanced these properties and concluded that the tensile and compressive properties improved linearly with the increase in the concentrations of MXene,adhesion decreased with the increased MXene concentrations,and syn-ergistic interaction between MXene and OZM significantly improved the anti-freezing properties up to-80°C.Zhangkang Li Jamie LeBlanc Hitendra Kumar Hongguang Zhang Weijun Yang Xiao He Qingye Lu Jeffrey Van Humbeck Keekyoung Kim Jinguang Hu 2023Journal of Bioresources and Bioproducts2023,8,2:0
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