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Cross-species functional diversity within the PIN auxin efflux protein family

机译:PIN植物生长素外排蛋白家族中的跨物种功能多样性

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摘要

In Arabidopsis, development during flowering is coordinated by transport of the hormone auxin mediated by polar-localized PIN-FORMED1 (AtPIN1). However Arabidopsis has lost a PIN clade sister to AtPIN1, Sister-of-PIN1 (SoPIN1), which is conserved in flowering plants. We previously proposed that the AtPIN1 organ initiation and vein patterning functions are split between the SoPIN1 and PIN1 clades in grasses. Here we show that in the grass Brachypodium sopin1 mutants have organ initiation defects similar to Arabidopsis atpin1, while loss of PIN1 function in Brachypodium has little effect on organ initiation but alters stem growth. Heterologous expression of Brachypodium SoPIN1 and PIN1b in Arabidopsis provides further evidence of functional specificity. SoPIN1 but not PIN1b can mediate flower formation in null atpin1 mutants, although both can complement a missense allele. The behavior of SoPIN1 and PIN1b in Arabidopsis illustrates how membrane and tissue-level accumulation, transport activity, and interaction contribute to PIN functional specificity.
机译:在拟南芥中,开花过程中的发育与极性定位的PIN-FORMED1(AtPIN1)介导的植物生长素激素的运输协调。然而,拟南芥已将PIN进化枝姐妹丢给了在开花植物中保存的AtPIN1 PIN姐妹(SoPIN1)。我们以前曾提出,在草中的SoPIN1和PIN1进化枝之间拆分AtPIN1器官的启动和静脉模式功能。在这里,我们显示了草假单胞菌sopin1突变体具有类似于拟南芥属atpin1的器官启动缺陷,而在草曲霉中PIN1功能的丧失对器官启动几乎没有影响,但会改变茎的生长。拟南芥中Brachypodium SoPIN1和PIN1b的异源表达提供了功能特异性的进一步证据。 SoPIN1而非PIN1b可以介导无效atpin1突变体中的花形成,尽管两者都可以补充错义等位基因。 SoPIN1和PIN1b在拟南芥中的行为说明了膜和组织水平的积累,转运活性以及相互作用如何影响PIN的功能特异性。

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