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Auxin-responsive SAUR39 gene modulates auxin level in rice

机译:生长素响应性SAUR39基因调节水稻中的生长素水平

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摘要

The signaling molecule auxin plays a central role in several aspects of plant growth and developmental processes. Underlying optimization of these processes are complex mechanisms orchestrating the expression of genes involved in controlling auxin level, movement and signalling. The small auxin-up RNA (SAUR) family comprises a large set of genes whose expressions are early auxin-responsive. However, the function of these genes is largely unknown. Loss-of-function mutants in a number of Arabidopsis SAUR genes did not show any marked phenotypic differences to wild-type plants likely due to compensatory functions of conserved members of the SAUR gene family. We have recently shown that a rice SAUR39 gene negatively regulates auxin synthesis and transport in rice. Here we propose a model that constitutive induction of SAUR39 gene expression reduces growth and seed yield in rice plants due to the presence of a lower auxin level, reduced polar auxin transport, less chlorophyll and increased sugar and anthocyanin contents. In wild-type plants, the SAUR39 gene is expressed at a low level and is transiently induced by changes in external auxin or other environmental stimuli, but within hours of this change its expression is reduced to the low constitutive level. This homeostatic mechanism is essential for optimal plant growth and seed yield and its disruption due to the constitutive overexpression of SAUR39 leads to a set of negative pleiotropic phenotypes.
机译:信号分子生长素在植物生长和发育过程的多个方面起着核心作用。这些过程的基础优化是复杂的机制,这些机制协调着控制生长素水平,运动和信号传导的基因的表达。生长素小RNA(SAUR)家族包含大量基因,其表达对生长素敏感。但是,这些基因的功能很大程度上未知。许多拟南芥SAUR基因中的功能丧失突变体未显示出与野生型植物任何明显的表型差异,这可能是由于SAUR基因家族的保守成员的补偿功能所致。最近,我们显示了水稻SAUR39基因负调控水稻中的生长素合成和运输。在这里,我们提出一个模型,由于存在较低的生长素水平,减少的极性植物生长素转运,较少的叶绿素以及增加的糖和花色苷含量,因此SAUR39基因表达的组成型诱导会降低水稻植物的生长和种子产量。在野生型植物中,SAUR39基因以低水平表达,并由外部生长素或其他环境刺激物的变化瞬时诱导,但在此变化后数小时内,其表达降低至低组成型水平。这种稳态机制对于最佳植物生长和种子产量至关重要,并且由于SAUR39的组成型过表达而使其破坏会导致一系列负性多效性表型。

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