Genetic transformation of Populus trichocarpa genotype Nisqually-1: a functional genomic tool for woody plants
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Climate-resilient agroforestry: physiological responses to climate change and engineering of crassulacean acid metabolism (CAM) as a mitigation strategy.Simple, rapid and efficient transformation of genotype Nisqually-1: a basic tool for the first sequenced model tree.Engineering crassulacean acid metabolism to improve water-use efficiencyConservation and diversity of microRNA-associated copper-regulatory networks in Populus trichocarpa.Highly efficient isolation of Populus mesophyll protoplasts and its application in transient expression assaysThe Populus Genome Integrative Explorer (PopGenIE): a new resource for exploring the Populus genome.Field Guide to Plant Model Systems.Origin and evolution of MIR1444 genes in Salicaceae.Ptr-miR397a is a negative regulator of laccase genes affecting lignin content in Populus trichocarpaLabel-free in situ imaging of lignification in the cell wall of low lignin transgenic Populus trichocarpa.Genetic engineering of woody plants: current and future targets in a stressful environment.SND1 transcription factor-directed quantitative functional hierarchical genetic regulatory network in wood formation in Populus trichocarpa.PdEPF1 regulates water-use efficiency and drought tolerance by modulating stomatal density in poplar.Identification of new protein-protein and protein-DNA interactions linked with wood formation in Populus trichocarpa.Down-regulation of glycosyltransferase 8D genes in Populus trichocarpa caused reduced mechanical strength and xylan content in wood.Tissue and cell-type co-expression networks of transcription factors and wood component genes in Populus trichocarpa.A simple improved-throughput xylem protoplast system for studying wood formation.Over-expression of AQUA1 in Populus alba Villafranca clone increases relative growth rate and water use efficiency, under Zn excess condition.Genetic Transformation System for Woody Plant Tripterygium wilfordii and Its Application to Product Natural Celastrol.An efficient Agrobacterium-mediated transformation and regeneration system for leaf explants of two elite aspen hybrid clones Populus alba × P. berolinensis and Populus davidiana × P. bolleana.Improving wood properties for wood utilization through multi-omics integration in lignin biosynthesis.Mulberry (Morus spp.) has the features to treat as a potential perennial model systemPoplar and Pathogen Interactions: Insights fromPopulusGenome-Wide Analyses of Resistance and Defense Gene Families and Gene Expression ProfilingA cell wall-bound anionic peroxidase, PtrPO21, is involved in lignin polymerization in Populus trichocarpaPoplar Genomics: State of the Science
P2860
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P2860
Genetic transformation of Populus trichocarpa genotype Nisqually-1: a functional genomic tool for woody plants
description
article
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wetenschappelijk artikel
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наукова стаття, опублікована в листопаді 2006
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name
Genetic transformation of Popu ...... genomic tool for woody plants
@en
Genetic transformation of Popu ...... genomic tool for woody plants
@nl
type
label
Genetic transformation of Popu ...... genomic tool for woody plants
@en
Genetic transformation of Popu ...... genomic tool for woody plants
@nl
prefLabel
Genetic transformation of Popu ...... genomic tool for woody plants
@en
Genetic transformation of Popu ...... genomic tool for woody plants
@nl
P2093
P2860
P356
P1476
Genetic transformation of Popu ...... genomic tool for woody plants
@en
P2093
Jingyuan Song
Rodrigo Lourenco
Vincent L Chiang
Zenn-Zong Chen
P2860
P304
P356
10.1093/PCP/PCL018
P407
P577
2006-11-01T00:00:00Z