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首页> 外文期刊>The Plant Cell >Maize Dek15 Encodes the Cohesin-Loading Complex Subunit SCC4 and Is Essential for Chromosome Segregation and Kernel Development
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Maize Dek15 Encodes the Cohesin-Loading Complex Subunit SCC4 and Is Essential for Chromosome Segregation and Kernel Development

机译:玉米DEK15编码Cohyin-Landport Complex Suc4,对于染色体隔离和内核开发至关重要

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摘要

Cohesin complexes maintain sister chromatid cohesion to ensure proper chromosome segregation during mitosis and meiosis. In plants, the exact components and functions of the cohesin complex remain poorly understood. Here, we positionally cloned the classic maize (Zea mays) mutant defective kernel 15 (dek15), revealing that it encodes a homolog of SISTER CHROMATID COHESION PROTEIN 4 (SCC4), a loader subunit of the cohesin ring. Developing dek15 kernels contained fewer cells than the wild type, but had a highly variable cell size. The dek15 mutation was found to disrupt the mitotic cell cycle and endoreduplication, resulting in a reduced endosperm and embryo lethality. The cells in the dek15 endosperm and embryo exhibited precocious sister chromatid separation and other chromosome segregation errors, including misaligned chromosomes, lagging chromosomes, and micronuclei, resulting in a high percentage of aneuploid cells. The loss of Dek15/Scc4 function upregulated the expression of genes involved in cell cycle progression and stress responses, and downregulated key genes involved in organic synthesis during maize endosperm development. Our yeast two-hybrid screen identified the chromatin remodeling proteins chromatin remodeling factor 4, chromatin remodeling complex subunit B (CHB) 102, CHB105, and CHB106 as SCC4-interacting proteins, suggesting a possible mechanism by which the cohesin ring is loaded onto chromatin in plant cells. This study revealed biological functions for DEK15/SCC4 in mitotic chromosome segregation and kernel development in maize.
机译:Cohesin Compleases维持姐妹染色体内聚力,以确保在有丝分裂和减数分裂期间适当的染色体隔离。在植物中,Cohesin Complex的确切组分和功能仍然明白。在这里,我们定位克隆了经典的玉米(Zea mays)突变体缺陷的核15(DEK15),揭示它编码了姐妹染色体内聚蛋白4(SCC4)的同源物,是Cohonein环的装载机亚基。开发DEK15内核含有比野生类型更少的细胞,但具有高度可变的细胞尺寸。发现DEK15突变破坏有丝分裂细胞周期和结肠综合症,导致胚乳和胚胎致死性降低。 DEK15胚乳和胚胎中的细胞表现出急诊姐妹染色体分离和其他染色体的分离误差,包括未对血清的染色体,滞后染色体和微核,导致高百分比的非植物细胞。 DEK15 / SCC4功能的丧失上调了参与细胞周期进展和应激反应的基因的表达,以及玉米胚乳发育过程中有机合成中的下调关键基因。我们的酵母双杂交筛分鉴定了染色质重塑蛋白质染色质染色质重塑因子4,染色质改造复合亚基B(CHB)102,CHB105和CHB106作为SCC 4 - 相互作用蛋白,表明Coholin环装入染色质中的可能机制植物细胞。该研究揭示了DEK15 / SCC4在含有玉米丝状染色体隔离和核发展中的DEK15 / SCC4的生物学功能。

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  • 来源
    《The Plant Cell》 |2019年第2期|共21页
  • 作者单位

    China Agr Univ Coll Agron &

    Biotechnol Joint Int Res Lab Crop Mol Breeding Beijing Key L State Key Lab Plant Physiol &

    Biochem Natl Maize Beijing 100193 Peoples R China;

    Shanghai Univ Plant Sci Ctr Sch Life Sci Shanghai Key Lab Bioenergy Crops Shanghai 200444 Peoples R China;

    Shanghai Univ Plant Sci Ctr Sch Life Sci Shanghai Key Lab Bioenergy Crops Shanghai 200444 Peoples R China;

    China Agr Univ Coll Agron &

    Biotechnol Joint Int Res Lab Crop Mol Breeding Beijing Key L State Key Lab Plant Physiol &

    Biochem Natl Maize Beijing 100193 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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