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Interplay of miR164, CUP-SHAPED COTYLEDON genes and LATERAL SUPPRESSOR controls axillary meristem formation in Arabidopsis thaliana

机译:miR164,杯形子叶基因和侧向抑制子的相互作用控制拟南芥中腋生分生组织的形成

摘要

Aerial architecture in higher plants is established post-embryonically by the inception of new meristems in the axils of leaves. These axillary meristems develop into side shoots or flowers. In Arabidopsis, the NAC domain transcription factors CUP SHAPED COTYLEDON1 (CUC1), CUC2 and CUC3 function redundantly in initiating the shoot apical meristem and establishing organ boundaries. Transcripts of CUC1 and CUC2 are targeted for degradation by miR164. In this study, we show that cuc3-2 mutants are impaired in axillary meristem initiation. Overexpression of miR164 in the cuc3-2 mutant caused an almost complete block of axillary meristem formation. Conversely, mir164 mutants and plants harbouring miR164-resistant alleles of CUC1 or CUC2 developed accessory buds in leaf axils. Collectively, these experiments reveal that, in addition to CUC3, redundant functions of CUC1 and CUC2 as well as miR164 regulation are required for the establishment of axillary meristems. Studies on LAS transcript accumulation in mir164 triple mutants and cuc3-2 plants overexpressing miR164 suggest that regulation of axillary meristem formation by miR164 is mediated through CUC1 and CUC2, which in turn regulate LAS.
机译:高等植物的空中构筑是通过在叶腋中出现新的分生组织而建立的。这些腋生分生组织发育成侧枝或花朵。在拟南芥中,NAC结构域转录因子CUP SHAPED COTYLEDON1(CUC1),CUC2和CUC3在启动茎尖分生组织和建立器官边界方面起着多余的作用。 CUC1和CUC2的转录本被miR164靶向降解。在这项研究中,我们表明cuc3-2突变体在腋生分生组织的启动中受损。 miR164在cuc3-2突变体中的过表达导致腋生分生组织的形成几乎完全被阻止。相反,具有miR164抗性等位基因CUC1或CUC2的mir164突变体和植物在叶腋中形成了辅助芽。总体而言,这些实验表明,除了CUC3之外,建立腋生分生组织还需要CUC1和CUC2的冗余功能以及miR164调节。对mir164三联突变体和过表达miR164的cuc3-2植物中LAS转录物积累的研究表明,miR164对腋生分生组织形成的调控是通过CUC1和CUC2介导的,而CUC1和CUC2进而调控LAS。

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