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果实发育主题的变体:番茄(TAGL1)及其他物种中MADS-box基因的PLE谱系

Variations on a theme in fruit development: the PLE lineage of MADS-box genes in tomato (TAGL1) and other species.

作者信息

Garceau Danielle C, Batson Megan K, Pan Irvin L

机构信息

Department of Botany and Plant Sciences, University of California, Riverside, CA, 92521, USA.

MassBiologics, Boston, MA, 02126, USA.

出版信息

Planta. 2017 Aug;246(2):313-321. doi: 10.1007/s00425-017-2725-5. Epub 2017 Jun 28.

Abstract

This article focuses on the role of TOMATO AGAMOUS-LIKE 1 (TAGL1) on a wide range of ripening functions in tomato. We also examine orthologs of this gene in related species that produce different fruit types and discuss some evolutionary implications. TOMATO AGAMOUS-LIKE 1 (TAGL1) is a MADS-box transcription factor gene that belongs to the PLENA (PLE) lineage within the AGAMOUS (AG) clade. The most well-studied genes in this lineage are the SHATTERPROOF (SHP) genes in Arabidopsis, known to be involved in dehiscence zone formation during silique development. In tomato, TAGL1 has been shown to control several aspects of tomato fruit ripening. Most notably, carotenoid synthesis seems to be controlled by TAGL1, likely via the ethylene synthesis and signaling pathway and in combination with RIPENING INHIBITOR (RIN). In addition, TAGL1 regulates genes involved in cell cycle regulation, flavonoid and lignin biosynthesis, and cuticle development. We discuss many of the genes in these different pathways that are likely controlled by TAGL1, directly or indirectly. We also examine the relationship of TAGL1 with known and putative interaction partners. PLE lineage genes have also been examined in other species such as Antirrhinum, Petunia, and Nicotiana and provide an interesting example of conservation and diversification of function in species that produce very different types of fleshy and dry fruits. The control of lignification may be a common mechanism for this group of genes. Lastly, we discuss future work needed to elucidate the TAGL1 regulatory pathway in tomato and to help better understand the functional diversification of genes in this lineage in related species.

摘要

本文聚焦于番茄中番茄AGAMOUS-LIKE 1(TAGL1)在广泛的成熟功能中的作用。我们还研究了该基因在产生不同果实类型的相关物种中的直系同源基因,并讨论了一些进化意义。番茄AGAMOUS-LIKE 1(TAGL1)是一个MADS-box转录因子基因,属于AGAMOUS(AG)进化枝中的PLENA(PLE)谱系。该谱系中研究最深入的基因是拟南芥中的SHATTERPROOF(SHP)基因,已知其参与角果发育过程中开裂区的形成。在番茄中,TAGL1已被证明可控制番茄果实成熟的多个方面。最值得注意的是,类胡萝卜素合成似乎受TAGL1控制,可能是通过乙烯合成和信号通路,并与成熟抑制因子(RIN)共同作用。此外,TAGL1调节参与细胞周期调控、类黄酮和木质素生物合成以及角质层发育的基因。我们讨论了这些不同途径中许多可能直接或间接受TAGL1控制的基因。我们还研究了TAGL1与已知和假定的相互作用伙伴之间的关系。PLE谱系基因也在其他物种如金鱼草、矮牵牛和烟草中进行了研究,为在产生非常不同类型的肉质和干果的物种中功能的保守和多样化提供了一个有趣的例子。木质化的控制可能是这组基因的一个共同机制。最后,我们讨论了未来为阐明番茄中TAGL1调控途径以及更好地理解相关物种中该谱系基因的功能多样化所需开展的工作。

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