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30篇 您的检索式:作者名="USADEL B"
    题名 作者 年代 出处 被引量
1Regulatory features underlying pollination-dependent and-independent tomato fruit set revealed by transcript and primary metabolite profiling 显示文摘Wang H Schauer N Usadel B 2009Plant Cell2009,21,:1
2Integrated analysis ofmetabolite and transcript levels reveals the metabolic shifts thatunderlie tomato fruit development and highlight regulatory aspectsof metabolic network behavior 显示文摘Carrari F Baxter C Usadel B 2006Plant Physiology2006,142,:1
3Barley grain matura- tion and germination: metabolic pathway and regulatory network commonalities and differences highlighted by new MapMan/PageMan profiling tools显示文摘Sreenivasulu N Usadel B Winter A 2008Plant Physiol2008,1,46:1
4Regulatory features underlying pollination-dependent and-independent tomato fruit set revealed by transcript and primary metabolite profiling显示文摘Wang H Schauer N Usadel B 2009Plant Ce112009,21,:1
5RNA interference of LIN5 in tomato confirms its role in controlling brix content, uncovers the influence of sugars on the levels of fruit hormones, and demonstrates the importance of sucrose cleavage for normal fruit development and fertility显示文摘Zanor M I Osorio S Nunes - Nesi A Carrari F Lohse M Usadel B Ktihn C Blelss W Giavahsco P Wi|imitzer L Sulpice R Zhou YH and Fernie AR 2009Plant Physiol2009,150,7:1
6Barley grain maturation and germination:metabolic pathway and regu- latory network commonalities and differences highlighted hy new MapMan/PageMan profiling tools显示文摘SREENIVASULU N USADEL B WINTER A 2008Plant Physiol2008,146,:1
7Multilevel genomic analysis of the response of transcripts, enzyme activities and metabolites in Arabidopsis rosettes to a progressive decrease of temperature in the non-freezing range 显示文摘Usadel B Blasing O E Gibon Y 2008Plant Cell Environ2008,31,:1
8Antioxidative treatment reverses imbalances of nitric oxide synthase isoform expression and attenuates tissue-cGMP activation in diabetic rats 显示文摘Bojunga J Dresar-Mayert B Usadel KH 2004Biochem Biophys Res Commun2004,9316,3:1
9QTL analysis for ascorbic acid content in strawberry fruit reveals a complex genetic architecture and association with GDP-L-galactose phosphorylase显示文摘Strawberry(Fragaria×ananassa)fruits are an excellent source of L-ascorbic acid(AsA),a powerful antioxidant for plants and humans.Identifying the genetic components underlying AsA accumulation is crucial for enhancing strawberry nutritional quality.Here,we unravel the genetic architecture of AsA accumulation using an F1 population derived from parental lines‘Candonga’and‘Senga Sengana’,adapted to distinct Southern and Northern European areas.To account for environmental effects,the F1 and parental lines were grown and phenotyped in five locations across Europe(France,Germany,Italy,Poland and Spain).Fruit AsA content displayed normal distribution typical of quantitative traits and ranged five-fold,with significant differences among genotypes and environments.AsA content in each country and the average in all of them was used in combination with 6,974 markers for quantitative trait locus(QTL)analysis.Environmentally stable QTLs for AsA content were detected in linkage group(LG)3A,LG 5A,LG 5B,LG 6B and LG 7C.Candidate genes were identified within stable QTL intervals and expression analysis in lines with contrasting AsA content suggested that GDP-L-Galactose Phosphorylase FaGGP(3A),and the chloroplast-located AsA transporter gene FaPHT4;4(7C)might be the underlying genetic factors for QTLs on LG 3A and 7C,respectively.We show that recessive alleles of FaGGP(3A)inherited from both parental lines increase fruit AsA content.Furthermore,expression of FaGGP(3A)was two-fold higher in lines with high AsA.Markers here identified represent a useful resource for efficient selection of new strawberry cultivars with increased AsA content.Pilar Muñoz Cristina Castillejo JoséAntonio Gómez Luis Miranda Silke Lesemann Klaus Olbricht Aurélie Petit Philippe Chartier Annika Haugeneder Johanna Trinkl Luca Mazzoni Agnieszka Masny Edward Zurawicz Freya Maria Rosemarie Ziegler Björn Usadel Wilfried Schwab Béatrice Denoyes Bruno Mezzetti Sonia Osorio JoséFSánchez-Sevilla Iraida Amaya 2023Horticulture Research2023,10,3:1
10Multilevel genomic analysis of the response of transcripts, enzyme activities and metabolites in Arabidopsis rosettes to a progressive of temperature in the non -freezing range 显示文摘Usadel B Biasing OE Gibon Y 2008Plant Cell and Environment2008,31,4:1
11RHM2 is involved in mucilage pectin synthesis and is required for the development of the seed coat in Arabidopsis显示文摘Usadel B Kuschinsky A M Rosso M G 2004Plant Physiol2004,134,:1
12Sugars and circadian regulation make major contributions to the global regulation of diurnal gene expression in Arabidopsis显示文摘BLASING O E G-IBON Y GUNTHER M HOHNE M MORCUENDE R OSUNA D THIMM O USADEL B SCHEIBLE W R STITT M 2005Plant Cell2005,17,12:1
13RHM2 is involved in mucilage pectin synthesis and is required for the development of the seed coat in Arabidopsis显示文摘Usadel B Kuschinsky A M Rosso M G 0,,01:1
14The inositol oxygenase gene family of Arabidopsis is involved in the biosynthesis of nucleotide sugar precursors for cell-wall matrix polysaccharides显示文摘Kanter U Usadel B Guerineau F 2005Planta2005,221,:1
15Antioxidative treatment reverses imbalances of nitric oxide synthase isoform expression and attenuates tissue-cGMP activation in diabetic rats显示文摘Bojunga J Dresar-Mayert B Usadel KH 0,,:1
16Large-scale phenotyping of transgenic tobacco plants (Nicotiana tabacum) to identify essential leaf functions显示文摘Lein W Usadel B Stitt M 2008Plant Biotechnol J2008,6,:1
17Extension of the visualization tool MapMan to allow statistical analysis of arrays, display of corresponding genes,and comparison with known responses 显示文摘Usadel B Nagel A Thimm O 2005Plant Physiology2005,138,:1
18Extension of the visualization tool MapMan to allow statistical analysis of arrays, display of corresponding genes, and comparison with known responses 显示文摘Usadel B Nagel A Thimm O 2005Plant Physiology2005,138,:1
19Asymmetric reversal modes in ferromagnetic/antiferromagnetic multilayers显示文摘Beckmann B Nowak U Usadel K D 2003Phys Rev Lett2003,91,18:1
20The inositol oxygenase gene family of Arabidopsis is involved in the biosynthesis of nucleotide sugar precursors for cell-wall matrix polysaccharides显示文摘Kanter U Usadel B Guerineau F 2005Planta2005,221,2:1
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