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MADS-complexes regulate transcriptome dynamics during pollen maturation
DOI:10.1186/gb-2007-8-11-r249.png)
摘要
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Background: Differentiation processes are responsible for the diversity and functional specialization of the cell types that compose an organism. The outcome of these processes can be studied at molecular, physiologic, and biochemical levels by comparing different cell types, but the complexity and dynamics of the regulatory processes that specify the differentiation are largely unexplored. Results: Here we identified the pollen-specific MIKC* class of MADS-domain transcription factors as major regulators of transcriptome dynamics during male reproductive cell development in Arabidopsis thaliana. Pollen transcript profiling of mutants deficient in different MIKC* protein complexes revealed that they control a transcriptional switch that directs pollen maturation and that is essential for pollen competitive ability. We resolved the functional redundancy among the MIKC* proteins and uncovered part of the underlying network by identifying the non-MIKC* MADS-box genes AGL18 and AGL29 as downstream regulators of a subset of the MIKC* MADS-controlled genes. Conclusion: Our results provide a first, unique, and compelling insight into the complexity of a transcription factor network that directs cellular differentiation during pollen maturation, a process that is essential for male reproductive fitness in flowering plants.
Keyword:
GENE-EXPRESSION MAP
TUBE GROWTH
BOX GENES
ARABIDOPSIS
EVOLUTION
FAMILY
SELECTION
GUIDANCE
MUTANTS
REVEALS
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引用论文
Extension of the visualization tool MapMan to allow statistical analysis of arrays, display of coresponding genes, and comparison with known responses
PLANT PHYSIOLOGY
IF6.9
MIKC* MADS-protein complexes bind motifs enriched in the proximal region of late pollen-specific Arabidopsis promotersMIKC * MADS-蛋白质复合物结合富集在晚期花粉特异性拟南芥启动子近端区域的基序
PLANT PHYSIOLOGY
IF6.9

