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首页> 外文期刊>Journal of Experimental Botany >Specification of reproductive meristems requires the combined function of SHOOT MERISTEMLESS and floral integrators FLOWERING LOCUS T and FD during Arabidopsis inflorescence development.
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Specification of reproductive meristems requires the combined function of SHOOT MERISTEMLESS and floral integrators FLOWERING LOCUS T and FD during Arabidopsis inflorescence development.

机译:生殖分生组织的规范要求在拟南芥花序发育期间将SHOOT MERISTEMLESS和花卉整合剂FLOWERING LOCUS T和FD结合起来。

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摘要

In Arabidopsisfloral meristems are specified on the periphery of the inflorescence meristem by the combined activities of the FLOWERING LOCUS T (FT)-FD complex and the flower meristem identity gene LEAFY. The floral specification activity of FT is dependent upon two related BELL1-like homeobox (BLH) genes PENNYWISE (PNY) and POUND-FOOLISH (PNF) which are required for floral evocation. PNY and PNF interact with a subset of KNOTTED1-LIKE homeobox proteins including SHOOT MERISTEMLESS (STM). Genetic analyses show that these BLH proteins function with STM to specify flowers and internodes during inflorescence development. In this study, experimental evidence demonstrates that the specification of flower and coflorescence meristems requires the combined activities of FT-FD and STM. FT and FD also regulate meristem maintenance during inflorescence development. In plants with reduced STM function, ectopic FT and FD promote the formation of axillary meristems during inflorescence development. Lastly, gene expression studies indicate that STM functions with FT-FD and AGAMOUS-LIKE 24 (AGL24)-SUPPRESSOR OF OVEREXPRESSION OF CONTANS1 (SOC1) complexes to up-regulate flower meristem identity genes during inflorescence development.Digital Object Identifier http://dx.doi.org/10.1093/jxb/erq296
机译:在拟南芥中,通过开花LOCUS T(FT)-FD复合体与花分生组织同一性基因 LEAFY 的结合活性,在花分生组织的外围指定了花分生组织。 FT的花规活动取决于两个相关的BELL1样同源异型框(BLH)基因 PENNYWISE ( PNY )和 POUND-FOOLISH (< i> PNF ),这是花艺所必需的。 PNY和PNF与KNOTTED1-Like同源框蛋白的一个子集相互作用,包括SHOOT MERISTEMLESS(STM)。遗传分析表明,这些BLH蛋白与STM一起起作用,以指定花序发育期间的花和节间。在这项研究中,实验证据表明,花分生组织的规格需要结合FT-FD和STM的活性。 FT和FD还调节花序发育期间的分生组织维持。在STM功能降低的植物中,异位FT和FD促进花序发育过程中腋生分生组织的形成。最后,基因表达研究表明STM与FT-FD和AGAMOUS-Like 24(AGL24)-CONTANS1(SOC1)复合物过表达抑制子一起起作用,以在花序发育过程中上调花分生组织同一性基因。 dx.doi.org/10.1093/jxb/erq296

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