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首页> 外文期刊>Plant physiology >Rice Homeobox Protein KNAT7 Integrates the Pathways Regulating Cell Expansion and Wall Stiffness
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Rice Homeobox Protein KNAT7 Integrates the Pathways Regulating Cell Expansion and Wall Stiffness

机译:稻食乐蛋白Knat7集成了调节电池膨胀和壁刚度的途径

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摘要

During growth, plant cells must coordinate cell expansion and cell wall reinforcement by integrating distinct regulatory pathways in concert with intrinsic and external cues. However, the mechanism underpinning this integration is unclear, as few of the regulators that orchestrate cell expansion and wall strengthening have been identified. Here, we report a rice (Oryza sativa) Class II KNOX-like homeobox protein, KNOTTED ARABIDOPSIS THALIANA7 (KNAT7), that interacts with different partners to govern cell expansion and wall thickening. A loss-of-function mutation in KNAT7 enhanced wall mechanical strength and cell expansion, resulting in improved lodging resistance and grain size. Overexpression of KNAT7 gave rise to the opposite phenotypes, with plants having weaker cell walls and smaller grains. Biochemical and gene expression analyses revealed that rice KNAT7 interacts with a secondary wall key regulator, NAC31, and a cell growth master regulator, Growth-Regulating Factor 4 (GRF4). The KNAT7-NAC31 and KNAT7-GRF4 modules suppressed regulatory pathways of cell expansion and wall reinforcement, as we show in internode and panicle development. These modules function in sclerenchyma fiber cells and modulate fiber cell length and wall thickness. Hence, our study uncovers a mechanism for the combined control of cell size and wall strengthening, providing a tool to improve lodging resistance and yield in rice production.
机译:在生长期间,植物细胞必须通过与内在和外部提示在音乐会中整合不同的调节途径来协调细胞膨胀和细胞壁增强。然而,支撑这种整合的机制尚不清楚,因为已经确定了协调细胞膨胀和壁加强的调节剂的少数。在这里,我们举报了米(Oryza Sativa)II类Knox样Homeobox蛋白,打结拟南芥Thilana7(Knat7),与不同的合作伙伴相互作用,以控制电池膨胀和壁厚。 KNAT7中的功能突变增强了壁机械强度和细胞膨胀,导致耐植物抗性和晶粒尺寸改善。 KNAT7的过度表达引起相反的表型,植物具有较弱的细胞壁和较小的颗粒。生物化学和基因表达分析显示,水稻KNAT7与二级壁键调节剂,NAC31和细胞生长校长,生长调节因子4(GRF4)相互作用。 KNAT7-NAC31和KNAT7-GRF4模块抑制了细胞膨胀和墙壁增强的调节通道,正如我们在节间和穗的开发中所示。这些模块在硬化纤维细胞中起作用,并调节纤维电池长度和壁厚。因此,我们的研究揭示了一种组合对细胞尺寸和壁强化控制的机制,提供了一种改善水稻生产抗性和产量的工具。

著录项

  • 来源
    《Plant physiology》 |2019年第2期|共14页
  • 作者单位

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Innovat Acad Seed Design Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生理学;
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