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穿心莲 FT/TFL1 基因家族及其在相变和花起始中的可能作用。

Passiflora organensis FT/TFL1 gene family and their putative roles in phase transition and floral initiation.

机构信息

Plant Biotechnology Laboratory, Center for Nuclear Energy in Agriculture, University of São Paulo, Piracicaba, SP, Brazil.

Cluster of Plant Developmental Biology, Laboratory of Molecular Biology, Wageningen University & Research, Wageningen, The Netherlands.

出版信息

Plant Reprod. 2022 Jun;35(2):105-126. doi: 10.1007/s00497-021-00431-2. Epub 2021 Nov 8.

Abstract

Comprehensive analysis of the FT/TFL1 gene family in Passiflora organensis results in understanding how these genes might be involved in the regulation of the typical plant architecture presented by Passiflora species. Passion fruit (Passiflora spp) is an economic tropical fruit crop, but there is hardly any knowledge available about the molecular control of phase transition and flower initiation in this species. The florigen agent FLOWERING LOCUS T (FT) interacts with the bZIP protein FLOWERING LOCUS D (FD) to induce flowering in the model species Arabidopsis thaliana. Current models based on research in rice suggest that this interaction is bridged by 14-3-3 proteins. We identified eight FT/TFL1 family members in Passiflora organensis and characterized them by analyzing their phylogeny, gene structure, expression patterns, protein interactions and putative biological roles by heterologous expression in Arabidopsis. PoFT was highest expressed during the adult vegetative phase and it is supposed to have an important role in flowering induction. In contrast, its paralogs PoTSFs were highest expressed in the reproductive phase. While ectopic expression of PoFT in transgenic Arabidopsis plants induced early flowering and inflorescence determinacy, the ectopic expression of PoTSFa caused a delay in flowering. PoTFL1-like genes were highest expressed during the juvenile phase and their ectopic expression caused delayed flowering in Arabidopsis. Our protein-protein interaction studies indicate that the flowering activation complexes in Passiflora might deviate from the hexameric complex found in the model system rice. Our results provide insights into the potential functions of FT/TFL1 gene family members during floral initiation and their implications in the special plant architecture of Passiflora species, contributing to more detailed studies on the regulation of passion fruit reproduction.

摘要

对 Passiflora organensis 中的 FT/TFL1 基因家族进行全面分析,有助于了解这些基因如何参与调控 Passiflora 物种典型的植物结构。百香果(Passiflora spp)是一种经济热带水果作物,但对该物种的阶段转变和花起始的分子调控几乎没有任何了解。成花素剂 FT 与 bZIP 蛋白 FD 相互作用,诱导拟南芥开花。目前基于水稻研究的模型表明,这种相互作用是由 14-3-3 蛋白桥接的。我们在 Passiflora organensis 中鉴定了 8 个 FT/TFL1 家族成员,并通过分析它们的系统发育、基因结构、表达模式、蛋白质相互作用和通过在拟南芥中的异源表达来推测其潜在的生物学功能来对其进行了表征。PoFT 在成年营养阶段表达量最高,它在开花诱导中可能具有重要作用。相比之下,其同源物 PoTSFs 在生殖阶段表达量最高。虽然 PoFT 在转基因拟南芥植物中的异位表达诱导了早期开花和花序决定,但 PoTSFa 的异位表达导致开花延迟。PoTFL1 样基因在幼年期表达量最高,它们在拟南芥中的异位表达导致开花延迟。我们的蛋白质-蛋白质相互作用研究表明,百香果中的开花激活复合物可能偏离了在模式系统水稻中发现的六聚体复合物。我们的研究结果提供了有关 FT/TFL1 基因家族成员在花起始过程中的潜在功能及其对百香果特殊植物结构的影响的见解,为更详细地研究百香果繁殖的调控提供了参考。

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