How many genes are needed to make a pollen tube? Lessons from transcriptomics.
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Analysis of plant germline development by high-throughput RNA profiling: technical advances and new insightsGenomic, Molecular Evolution, and Expression Analysis of Genes Encoding Putative Classical AGPs, Lysine-Rich AGPs, and AG Peptides in Brassica rapaGene expression under chronic heat stress in populations of the mustard hill coral (Porites astreoides) from different thermal environments.Expression dynamics of metabolic and regulatory components across stages of panicle and seed development in indica rice.Comparative transcriptomics of Arabidopsis sperm cells.The meiotic transcriptome architecture of plants.A compartmental model analysis of integrative and self-regulatory ion dynamics in pollen tube growthTranscriptional profiling of Arabidopsis root hairs and pollen defines an apical cell growth signature.Pollen tube energetics: respiration, fermentation and the race to the ovuleA decade of pollen transcriptomics.Growth Media Induces Variation in Cell Wall Associated Gene Expression in Arabidopsis thaliana Pollen Tube.Pollen tube growth: where does the energy come from?Epigenetic reprogramming and small RNA silencing of transposable elements in pollenMale gametophyte development: a molecular perspective.BcMF8, a putative arabinogalactan protein-encoding gene, contributes to pollen wall development, aperture formation and pollen tube growth in Brassica campestris.MicroRNA activity in the Arabidopsis male germline.Germline reprogramming of heterochromatin in plants.On the fast lane: mitochondria structure, dynamics and function in growing pollen tubes.Transcriptome analyses show changes in gene expression to accompany pollen germination and tube growth in Arabidopsis.A comparative analysis of proteins that accumulate during the initial stage of root hair development in barley root hair mutants and their parent varieties.Whole genome analysis of gene expression reveals coordinated activation of signaling and metabolic pathways during pollen-pistil interactions in Arabidopsis.Characterization of BcMF23a and BcMF23b, two putative pectin methylesterase genes related to pollen development in Brassica campestris ssp. chinensis.
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How many genes are needed to make a pollen tube? Lessons from transcriptomics.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on December 2007
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vetenskaplig artikel
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videnskabelig artikel
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How many genes are needed to make a pollen tube? Lessons from transcriptomics.
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How many genes are needed to make a pollen tube? Lessons from transcriptomics.
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How many genes are needed to make a pollen tube? Lessons from transcriptomics.
@en
How many genes are needed to make a pollen tube? Lessons from transcriptomics.
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How many genes are needed to make a pollen tube? Lessons from transcriptomics.
@en
How many genes are needed to make a pollen tube? Lessons from transcriptomics.
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P2860
P356
P1433
P1476
How many genes are needed to make a pollen tube? Lessons from transcriptomics
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P2093
Jörg D Becker
P2860
P304
P356
10.1093/AOB/MCM208
P407
P577
2007-12-01T00:00:00Z