|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | In the name of the rose:a roadmap for rose research in the genome era显示文摘The recent completion of the rose genome sequence is not the end of a process,but rather a starting point that opens up a whole set of new and exciting activities.Next to a high-quality genome sequence other genomic tools have also become available for rose,including transcriptomics data,a high-density single-nucleotide polymorphism array and software to perform linkage and quantitative trait locus mapping in polyploids.Rose cultivars are highly heterogeneous and diverse.This vast diversity in cultivated roses can be explained through the genetic potential of the genus,introgressions from wild species into commercial tetraploid germplasm and the inimitable efforts of historical breeders.We can now investigate how this diversity can best be exploited and refined in future breeding work,given the rich molecular toolbox now available to the rose breeding community.This paper presents possible lines of research now that rose has entered the genomics era,and attempts to partially answer the question that arises after the completion of any draft genome sequence:‘Now that we have“the”genome,what’s next?’.Having access to a genome sequence will allow both(fundamental)scientific and(applied)breeding-orientated questions to be addressed.We outline possible approaches for a number of these questions. | Marinus J.M.Smulders Paul Arens Peter M.Bourke Thomas Debener Marcus Linde Jan De Riek Leen Leus Tom Ruttink Sylvie Baudino Laurence Hibrant Saint-Oyant Jeremy Clotault Fabrice Foucher | 2019 | Horticulture Research2019,6,1: | 2 |
| 2 | Quantitative NMR microscopy of osmotic stress responses in maize and pearl millet显示文摘 | van Der Weerd L Claessens M M Ruttink T | 2001 | Journal of Experimental Botany2001,52,365: | 1 |
| 3 | A molecular timetable for apical bud formation and dormancy induction in poplar显示文摘 | RUTTINK T AREND M MORREEL K | 2007 | The Plant Cell2007,19,: | 1 |
| 4 | Gene expression during the induction, maintenance, and release of dormancy in apical buds of poplar显示文摘 | Rohde A Ruttink T Hostyn V | 2007 | J Exp Bot2007,58,: | 1 |
| 5 | Molecular tool- box for the identification of unknown genetically modified organisms 显示文摘 | Ruttink T Demeyer R Van Gulck E | 2010 | Analytical and Bioanalytical Chemistry2010,396,6: | 1 |
| 6 | The use of the luciferase reporter system for in planta gene expression studies显示文摘 | Van Leeuwen W Hagendoorn M J Ruttink T | 2000 | Plant Mol Biol Rep2000,18,2: | 1 |
| 7 | A molecular timetable for apical bud formation and dormancy induction in poplar显示文摘 | Ruttink T Arend M Morreel K | 2007 | The Plant Cell2007,19,: | 1 |
| 8 | A molecular timetable for apical bud formation and dormancy induction in poplar 显示文摘 | Ruttink T Arend M Morreel K | 2007 | Plant Cell2007,19,: | 1 |
| 9 | Gene expression during the induction,maintenance,and release of dormancy in apical buds of poplar显示文摘 | Rohde A Ruttink T Hostyn V | 2007 | Journal of Experimental Botany2007,58,1516: | 1 |
| 10 | Characterization of position-induced spatial and temporal regulation of transgene promoter activity in plants显示文摘 | VAN LEEUWEN W RUTTINK T BORST-VRENSSEN A W M | 2001 | Journal of Experimental Botany2001,52,358: | 1 |
| 11 | Gene expression during the induction,maintenance,and release of dormancy in apical buds of poplar显示文摘 | ROHDE A RUTTINK T HOSTYN V | | 0,,15: | 1 |
| 12 | Phylogenomic analysis clarifies the evolutionary origin of Coffea arabica显示文摘Interspecific hybridization events have played a major role in plant speciation,yet the evolutionary origin of hybrid species often remains enigmatic.Here,we inferred the evolutionary origin of the allotetraploid species Coffea arabica,which is widely cultivated for Arabica coffee production.We estimated genetic distances between C.arabica and all species that are known to be closely related to C.arabica using genotyping-by-sequencing(GBS)data.In addition,we reconstructed a time-calibrated multilabeled phylogenetic tree of 24 species to estimate the age of the C.arabica hybridization event.Ancestral states of self-compatibility were also inferred to shed new light on the evolution of self-compatibility in Coffea.Coffea canephora and C.eugenioides were confirmed as the putative progenitor species of C.arabica.These species most likely hybridized between 1.08 million and 543000 years ago,coinciding with periods of environmental upheaval,which may have induced range shifts of the progenitor species that facilitated the emergence of C.arabica. | Yves Bawin Tom Ruttink Ariane Staelens Annelies Haegeman Piet Stoffelen Jean-Claude Ithe Mwanga Mwanga Isabel Roldan-Ruiz Olivier Honnay Steven B.Janssens | 2021 | Journal of Systematics and Evolution2021,59,5: | 0 |