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13篇 您的检索式:作者名="Sieglinde"
    题名 作者 年代 出处 被引量
1Enantioselective separation of all- E -astaxanthin and its determination in microbial sources显示文摘Claudia Grewe Sieglinde Menge Carola Griehl 2007Journal of Chromatography A2007,,1:1
2Long-term follow-up of babies exposed to azathioprine in utero and via breastfeeding显示文摘Sieglinde Angelberger Walter Reinisch Agnes Messerschmidt Wolfgang Miehsler Gottfried Novacek Harald Vogelsang Clemens Dejaco 2010Journal of Crohn’s and Colitis2010,,2:1
3Expansion of circulating To-ll-like receptor 4-positive monocytes in patients with acute coronary syndrome显示文摘HEIKO M KIM J O SIEGLINDE K 2009Circulation2009,111,:1
4Selectivity of substance identification by HPLC-DAD in toxicological analysis using a UV spectra library of 2682 compounds显示文摘MATTHIAS H SIEGLINDE H FRITZ P 2003J Anal Toxicol2003,27,3:1
5Expansion of Circulating Toll-Like Receptor 4–Positive Monocytes in Patients With Acute Coronary Syndrome显示文摘Heiko Methe Jong-Oh Kim Sieglinde Kofler Michael Weis Michael Nabauer Joerg Koglin 2005Circulation2005,,20:1
6CD9,a tetraspan transmembrane protein,renders cells susceptible to canine distemper virus显示文摘 1997Virol Jan1997,4249,:1
7Combined use of liquid chromatography–hybrid quadrupole time-of-flight mass spectrometry (LC–QTOF-MS) and high performance liquid chromatography with photodiode array detector (HPLC–DAD) in systematic toxicological analysis显示文摘Sebastian Broecker Fritz Pragst Abdulsallam Bakdash Sieglinde Herre Michael Tsokos 2011Forensic Science International2011,,1:1
8The cell envelope-bound metalloprotease (camelysin) from Bacillus cereus is a possible pathogenic factor显示文摘Beate Fricke Katharina DrMler Ingo Willhardt A Angelika Schierhorn Sieglinde Menge Peter Rcknagel 2001Biochimica et Biophysica Acta2001,,1537:1
9B-branch electron transfer in reaction centers of Rhodobacter sphaeroides assessed with site- directed mutagenesis 显示文摘Arjo L Sieglinde N Rik deW eta l 2002Photosynthesis Research2002,,71:1
10Selectivity of substance identification by HPLC-DAD in toxicological analysis using a UV spectra library of 2682 compounds 显示文摘Matthias H Sieglinde H Fritz P 2003J Anal Toxicol2003,27,:1
11Cadmium induces a novel metallothionein and phytochelatin 2 in an aquatic fungus显示文摘PETRA J GUDRUN K SIEGLINDE M 2005Biochem Bioph Res Co2005,333,:1
12Development and practical application of a library of CID accurate mass spectra of more than 2500 toxic compounds for systematic toxicological analysis by LC-QTOF-MS with data-dependent acquisition显示文摘SEBASTIAN B SIEGLINDE H BERNHARD W 2011Anal Bioanal Chem2011,400,1:1
13Redesigning crop varieties to win the race between climate change and food security显示文摘Climate change poses daunting challenges to agricultural production and food security.Rising temperatures,shifting weather patterns,and more frequent extreme events have already demonstrated their effects on local,regional,and global agricultural systems.Crop varieties that withstand climate-related stresses and are suitable for cultivation in innovative cropping systems will be crucial to maximize risk avoidance,productivity,and profitability under climate-changed environments.We surveyed 588 expert stakeholders to predict current and novel traits that may be essential for future pearl millet,sorghum,maize,groundnut,cowpea,and common bean varieties,particularly in sub-Saharan Africa.We then review the current progress and prospects for breeding three prioritized future-essential traits for each of these crops.Experts predict that most current breeding priorities will remain important,but that rates of genetic gain must increase to keep pace with climate challenges and consumer demands.Importantly,the predicted future-essential traits include innovative breeding targets that must also be prioritized;for example,(1)optimized rhizosphere microbiome,with benefits for P,N,and water use efficiency,(2)optimized performance across or in specific cropping systems,(3)lower nighttime respiration,(4)improved stover quality,and(5)increased early vigor.We further discuss cutting-edge tools and approaches to discover,validate,and incorporate novel genetic diversity from exotic germplasm into breeding populations with unprecedented precision,accuracy,and speed.We conclude that the greatest challenge to developing crop varieties to win the race between climate change and food security might be our innovativeness in defining and boldness to breed for the traits of tomorrow.Kevin V.Pixley Jill E.Cairns Santiago Lopez-Ridaura Chris O.Ojiewo Maryam Abba Dawud Inoussa Drabo Taye Mindaye Baloua Nebie Godfrey Asea Biswanath Das Happy Daudi Haile Desmae Benoit Joseph Batieno Ousmane Boukar Clare T.M.Mukankusi Stanley T.Nkalubo Sarah J.Hearne Kanwarpal S.Dhugga Harish Gandhi Sieglinde Snapp Ernesto Adair Zepeda-Villarreal 2023Molecular Plant2023,16,10:0
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