首页> 外文期刊>Scientia horticulturae >The cellular physiology of loquat (Eriobotrya japonica Lindl.) fruit with a focus on how cell division and cell expansion processes contribute to pome morphogenesis
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The cellular physiology of loquat (Eriobotrya japonica Lindl.) fruit with a focus on how cell division and cell expansion processes contribute to pome morphogenesis

机译:枇杷(Eriobotrya japonica Lindl。)果实的细胞生理学,专注于细胞分裂和细胞膨胀过程如何有助于玉米形态发生

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摘要

Develop from flower tube, loquat (Eriobotrya japonica Lindl.) fruit differs from apple and other pome on size and shape greatly. To date, cell regulators of loquat fruit morphogenesis are still unknown. Fruit growth, histological observation and regulatory genes expression were investigated for 22 stages in loquat. Growth measurements reveal that loquat contains larger carpel volume and thinner flesh compared to apple. Cellular analyses demonstrate that cell number contributes to size varieties among loquat and other pome. Low cell production rate confers to weak cell proliferation capacity during early development. The correlation of cell number/size changes and several regulatory gene expression implies that: loquat fruit maintained cell division under regulation of EjFWLs and other genes from anthesis to 42 days past anthesis; unique temporal expression of EjWEE1 and EjKRP3 at 42 and 63 days past anthesis participate in cell cycle exit and polyploidy establishment; complementary expression of EjCCS52 isoforms promotes cell growth in an endoreduplication dependent pathway like EjWEE1 and EjKRP3 may be involved; EjEXPAs involved in acid cell growth play crucial role in fruit cell size enlargement. Together, these data indicate that cell division and expansion under complicated regulation, and weak cell proliferation capacity result to less cell layer which confers to thin cortex.
机译:从花管,枇杷(Eriobotrya japonica lindl。)水果与苹果和其他圆顶的不同之处大大。迄今为止,枇杷果实形态发生的细胞调节剂仍然未知。在枇杷中研究了果实生长,组织学观察和调节基因表达22个阶段。生长测量显示,与苹果相比,枇杷含有较大的卡皮克体积和较薄的肉。细胞分析表明,细胞数有助于枇杷和其他底座中的大小品种。早期发展期间,低细胞产量赋予细胞增殖能力较弱。细胞数/尺寸变化和若干调节基因表达的相关性意味着:枇杷果实维持细胞分裂,在52天以上的EJFWLS和其他基因的调节下维持细胞分裂到过去的开花间过分凋亡; OJWEE1和EJKRP3的独特时间表达在52和63天过去的花分器参与细胞周期出口和多倍体建立; EJCCS52同种型的互补表达促进细胞生长在ejwee1和ejkrp3等eJWEE1和EJKRP3中的依赖性途径中; ejexpas参与酸性细胞生长起到果蝇大小扩大中的至关重要作用。这些数据在一起表明,复杂调节下的细胞分裂和扩张,细胞增殖能力较弱,较少的细胞层赋予薄皮质。

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