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18篇 您的检索式:作者名="DI GASPERO G"
    题名 作者 年代 出处 被引量
1The grapevine genome sequence suggests ancestral hexaploidization in major angiosperm phyla显示文摘JAILLON O AURY J M NOEL B POLICRITI A CLEPET C CASAGRANDE A CHOISNE N AUBOURG S VITULO N JU- BIN C VEZZI A LEGEAI F HUGUENEY P DASILVA C HORNER D MICA E JUBLOT D POULAIN J BRUYERE C BILLAULT A SEGURENS B GOUYVENOUX M UGARTE E CATTONARO F ANTHOUARD V VICO V DEL FABBRO C ALAUX M DI GASPERO G DUMAS V FELICE N PAILLARD S JUMAN I MOROLDO M SCALABRIN S CANAGUIER A LE CLAINCHE I MALACRIDA G DURAND E PESOLE G LAUCOU V CHATELET P MERDINOGLU D DELLEDONNE M PEZZOTYI M LECHARNY A SCARPELLI C ARTIGUE- NAVE F PE M E VALLE G MORGANTE M CABOCHE M ADAM-BLONDON A F WEISSENBACH J QUETIER F WINCKER P 2007Nature2007,449,27:1
2Linkage maps of grapevine displaying the chromosomal locations of 420 mierosa- tellite markers and 82 markers for R-gone candidates 显示文摘Di Gaspero G Cipriani G Adam-Blondon A F 2007Theor App1 Genet2007,114,7:1
3Water deficits accelerate ripening and induce chan- ges in gene expression regulating flavonoid biosynthe- sis in grape berries显示文摘Castellarini S D Matthews M A Di Gaspero G 2007Planta2007,227,1:1
4Water deficits accelerate ripening and induce changes in gene expression regula-ting flavonoid biosynthesis in grape berries显示文摘CASTELLARIN S D MATTHEWS M A DI GASPERO G 2007Planta2007,227,:1
5Conservation of microsatellite loci within the genus Vitis显示文摘DI GASPERO G PETERLUNGER E TESTOLIN R EDWARDS K J CIPRIANI G 2000Theoretical and Applied Genetics2000,101,12:1
6Transcriptional control of anthocyanin biosynthetic genes in extreme phenotypes for berry pigmentation of naturally occurring grapevines显示文摘Castellarin S Di Gaspero G 2007BMC Plant Biology2007,7,1:1
7Transcriptional control of an-thocyanin biosynthetic genes in extreme phenotypes for berrypigmentation of naturally occurring grapevines 显示文摘Castellarin S D Di Gaspero G 2007BMCPlant Biology2007,7,:1
8Linkage map in kiwifruit: the choice of mapping populations显示文摘Testolin R Di Gaspero G Huang WG 2003Acta Hort2003,610,:1
9Conservation of microsatellite loci within the genus Vitis显示文摘DI GASPERO G PETERLUNGER E TESTOLIN R EDWARDS K J CIPIRIANI G 2000Theor Appl Genet2000,101,:1
10Expansion and subfunc-tionalisation of flavonoid 35,5 ’-hydroxylases in the grapevine Iin-eage显示文摘FALGINELLAL CASTELLARIN S D TESTOLINR GAMBETTAG A MORGANTE M DI GASPERO G 2010BMC Genomics2010,11,:1
11Ex-pression of flavonoid genes in the red grape berry of ‘AlicanteBouschet ’ varies with the histological distribution of anthocyaninsand their chemical composition显示文摘FALGINELLA L DI GASPERO G DIEGO CASTELLARIN S 2012Planta2012,236,:1
12Water deficits accelerate ripening and induce changes in gene expression regulating flavonoid biosynthesis in grape berries 显示文摘Castellarin S D Matthews M A Di Gaspero G 2007Planta2007,227,1:1
13Conservation of microsatellite loci within the genus Vitis显示文摘DI GASPERO G PETERLUNGER E TESTOLIN R EDWARDS K J CIPRIANI G 2000Theoretical and Applied Genetics2000,101,:1
14Neutral invertases in grapevine and comparative analysis with Arabidopsis, poplar and rice显示文摘NONIS A RUPERTI B PIERASCO A CANAGUIER A ADAMBLONDON A F DI GASPERO G VIZZOTTO G 2008Planta2008,229,:1
15Linkage maps of grapevine displaying the chromosomal locations of 420 microsatellite markers and 82 markers for R-gene candidates 显示文摘Di Gaspero G Cipriani G Adam-Blondon A F 2007Theor Appl Genet2007,114,:1
16Towards an open grapevine information system显示文摘Viticulture,like other fields of agriculture,is currently facing important challenges that will be addressed only through sustained,dedicated and coordinated research.Although the methods used in biology have evolved tremendously in recent years and now involve the routine production of large data sets of varied nature,in many domains of study,including grapevine research,there is a need to improve the findability,accessibility,interoperability and reusability(FAIR-ness)of these data.Considering the heterogeneous nature of the data produced,the transnational nature of the scientific community and the experience gained elsewhere,we have formed an open working group,in the framework of the International Grapevine Genome Program(www.vitaceae.org),to construct a coordinated federation of information systems holding grapevine data distributed around the world,providing an integrated set of interfaces supporting advanced data modeling,rich semantic integration and the next generation of data mining tools.To achieve this goal,it will be critical to develop,implement and adopt appropriate standards for data annotation and formatting.The development of this system,the GrapeIS,linking genotypes to phenotypes,and scientific research to agronomical and oeneological data,should provide new insights into grape biology,and allow the development of new varieties to meet the challenges of biotic and abiotic stress,environmental change,and consumer demand.A-F Adam-Blondon M Alaux C Pommier D Cantu Z-M Cheng GR Cramer C Davies S Delrot L Deluc G Di Gaspero J Grimplet A Fennell JP Londo P Kersey F Mattivi S Naithani P Neveu M Nikolski M Pezzotti BI Reisch R Töpfer MA Vivier D Ware H Quesneville 2016Horticulture Research2016,3,1:1
17Defence responses in Rpv3-depen- dent resistance to grapevine downy mildew显示文摘CASAGRANDE K FALGINELLA L CASTELLARIN S D TES- TOLIN R DI GASPERO G 2011Planta2011,234,:1
18Linkage maps of grapevine displaying the chromosomal locations of 420microsatellitemarkels and 82markers for R-gene candidates显示文摘Di Gaspero G Cipriani G Adam-Blondon A F 2007Theor appl genet2007,114,:1
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