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  • Chen, Xuemei  (4)
  • 2000-2004  (4)
  • 1
    Online Resource
    Online Resource
    Cold Spring Harbor Laboratory ; 2004
    In:  Genes & Development Vol. 18, No. 23 ( 2004-12-01), p. 2873-2878
    In: Genes & Development, Cold Spring Harbor Laboratory, Vol. 18, No. 23 ( 2004-12-01), p. 2873-2878
    Abstract: Allelic variation in FLOWERING LOCUS C ( FLC ), a central repressor of flowering, contributes to natural differences in flowering behavior among Arabidopsis accessions. The weak nature of the FLC allele in the L er accession is due to low levels of FLC RNA resulting, through an unknown mechanism, from a transposable element inserted in an intron of FLC . Here we show that the transposable element renders FLC -L er subject to repressive chromatin modifications mediated by short interfering RNAs generated from homologous transposable elements in the genome. Our studies have general implications for the role of transposable elements in eukaryotic gene expression and evolution.
    Type of Medium: Online Resource
    ISSN: 0890-9369 , 1549-5477
    RVK:
    Language: English
    Publisher: Cold Spring Harbor Laboratory
    Publication Date: 2004
    detail.hit.zdb_id: 1467414-2
    SSG: 12
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  • 2
    Online Resource
    Online Resource
    The Company of Biologists ; 2002
    In:  Development Vol. 129, No. 7 ( 2002-04-01), p. 1569-1581
    In: Development, The Company of Biologists, Vol. 129, No. 7 ( 2002-04-01), p. 1569-1581
    Abstract: Reproductive organ identity in Arabidopsis is controlled by the B, C and SEPALLATA classes of floral homeotic genes. We have identified a recessive mutation in a novel gene, HUA ENHANCER2, which, when combined with mutations in two weak class C genes, HUA1 and HUA2, leads to the production of third whorl sepal-petal-stamens and fourth whorl sepal-carpels. Quadruple mutant analysis and in situ localization of A, B, C and SEPALLATA floral homeotic RNAs suggest that HUA ENHANCER2 is required for the maintenance of B and C gene expression in the reproductive whorls. In addition to its role in floral homeotic gene expression, HUA ENHANCER2 is required for normal spacing and number of perianth organ primordia. We show that HUA ENHANCER2 encodes a putative DExH-box RNA helicase that is expressed in specific patterns in the inflorescence meristem and developing flowers. As a possible ortholog of the yeast exosome-associated protein, Dob1p (Mtr4p), HUA ENHANCER2 may affect floral organ spacing and identity through the regulation of protein synthesis or mRNA degradation. Therefore, our studies on HUA ENHANCER2 not only demonstrate that B and C gene expression is established and maintained separately, but also implicate the existence of post-transcriptional mechanisms in the maintenance of B and C gene expression.
    Type of Medium: Online Resource
    ISSN: 1477-9129 , 0950-1991
    Language: English
    Publisher: The Company of Biologists
    Publication Date: 2002
    detail.hit.zdb_id: 2007916-3
    SSG: 12
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  • 3
    Online Resource
    Online Resource
    Elsevier BV ; 2003
    In:  Current Biology Vol. 13, No. 10 ( 2003-05), p. 843-848
    In: Current Biology, Elsevier BV, Vol. 13, No. 10 ( 2003-05), p. 843-848
    Type of Medium: Online Resource
    ISSN: 0960-9822
    Language: English
    Publisher: Elsevier BV
    Publication Date: 2003
    detail.hit.zdb_id: 2019214-9
    SSG: 12
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  • 4
    Online Resource
    Online Resource
    The Company of Biologists ; 2002
    In:  Development Vol. 129, No. 5 ( 2002-03-01), p. 1085-1094
    In: Development, The Company of Biologists, Vol. 129, No. 5 ( 2002-03-01), p. 1085-1094
    Abstract: Four classes of floral homeotic MADS domain proteins specify the identities of the four organ types in an Arabidopsis flower. While the activities of the MADS domain proteins are essentially confined to the flower or to the inflorescence, several genes, such as APETALA2, HUA1 and HUA2, also act outside the flower in addition to their organ identity functions inside the flower. We identified a new gene, HUA ENHANCER 1 (HEN1) from a sensitized genetic screen in the hua1-1 hua2-1 background that is compromised in floral homeotic C function. We showed that HEN1, like the C function gene AGAMOUS, acts to specify reproductive organ identities and to repress A function. HEN1 also shares AG’s non-homeotic function in controlling floral determinacy. HEN1 may achieve these functions by regulating the expression of AG. hen1 single mutants exhibit pleiotropic phenotypes such as reduced organ size, altered rosette leaf shape and increased number of coflorescences, during most stages of development. Therefore, HEN1, like the A function gene AP2, plays multiple roles in plant development as well as acting in organ identity specification in the flower. HEN1 codes for a novel protein and is expressed throughout the plant.
    Type of Medium: Online Resource
    ISSN: 1477-9129 , 0950-1991
    Language: English
    Publisher: The Company of Biologists
    Publication Date: 2002
    detail.hit.zdb_id: 2007916-3
    SSG: 12
    Location Call Number Limitation Availability
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