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首页> 外文期刊>BMC Plant Biology >The bHLH transcription factor SPATULA regulates root growth by controlling the size of the root meristem
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The bHLH transcription factor SPATULA regulates root growth by controlling the size of the root meristem

机译:bHLH转录因子SPATULA通过控制根分生组织的大小来调节根的生长

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Background The Arabidopsis thaliana gene SPATULA (SPT), encoding a bHLH transcription factor, was originally identified for its role in pistil development. SPT is necessary for the growth and development of all carpel margin tissues including the style, stigma, septum and transmitting tract. Since then, it has been shown to have pleiotropic roles during development, including restricting the meristematic region of the leaf primordia and cotyledon expansion. Although SPT is expressed in roots, its role in this organ has not been investigated. Results An analysis of embryo and root development showed that loss of SPT function causes an increase in quiescent center size in both the embryonic and postembryonic stem cell niches. In addition, root meristem size is larger due to increased division, which leads to a longer primary root. spt mutants exhibit other pleiotropic developmental phenotypes, including more flowers, shorter internodes and an extended flowering period. Genetic and molecular analysis suggests that SPT regulates cell proliferation in parallel to gibberellic acid as well as affecting auxin accumulation or transport. Conclusions Our data suggest that SPT functions in growth control throughout sporophytic growth of Arabidopsis, but is not necessary for cell fate decisions except during carpel development. SPT functions independently of gibberellic acid during root development, but may play a role in regulating auxin transport or accumulation. Our data suggests that SPT plays a role in control of root growth, similar to its roles in above ground tissues.
机译:背景拟南芥拟南芥基因SPATULA(SPT)编码bHLH转录因子,最初是由于其在雌蕊发育中的作用而被鉴定的。 SPT对于所有心皮边缘组织的生长和发育都是必需的,包括样式,柱头,隔片和传播道。从那时起,它已显示出在发育过程中具有多效性作用,包括限制叶片原基的分生组织区域和子叶扩张。尽管SPT是在根中表达的,但尚未研究其在该器官中的作用。结果对胚胎和根发育的分析表明,SPT功能丧失导致胚胎和胚胎后干细胞壁ches的静止中心大小增加。另外,由于分裂的增加,根分生组织的尺寸更大,这导致更长的主根。 spt突变体表现出其他多效性发育表型,包括更多的花朵,更短的节间和延长的开花期。遗传和分子分析表明,SPT与赤霉素同时调节细胞增殖,并影响植物生长素的积累或转运。结论我们的数据表明,SPT在拟南芥孢子体整个生长过程中均在生长控制中起作用,但对细胞命运的决定不是必需的,除非在心皮发育期间。 SPT在根发育过程中独立于赤霉素起作用,但可能在调节植物生长素的运输或积累中发挥作用。我们的数据表明,SPT在根部生长的控制中起着作用,类似于它在地上组织中的作用。

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