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葡萄 MIKC(c)- 型 MADS 转录因子的相互作用分析及番茄中假定的转色调控因子的异源表达。

Interaction analysis of grapevine MIKC(c)-type MADS transcription factors and heterologous expression of putative véraison regulators in tomato.

机构信息

Wine Research Centre, Faculty of Land and Food Systems, 230-2205 East Mall, University of British Columbia, Vancouver, BC V6T 1Z4, Canada.

出版信息

J Plant Physiol. 2013 Nov 1;170(16):1424-33. doi: 10.1016/j.jplph.2013.05.010. Epub 2013 Jun 18.

Abstract

MIKC(c)-type MADS-domain transcription factors include important regulators of floral development that interact in protein complexes to control the development of floral organs, as described by the ABC model. Members of the SEPALLATA (SEP) and AGAMOUS (AG) MADS clades include proteins involved in stamen and carpel specification and certain members of these families, such as tomato (Solanum lycopersicon) SlRIN and SlTAGL1, have been shown to regulate fruit development and ripening initiation. A number of expression studies have shown that several floral homeotic MADS genes are expressed during grapevine (Vitis vinifera) berry development, including potential homologues of these characterized ripening regulators. To gain insight into the regulation of berry development and ripening in grapevine, we studied the interactions and functions of grapevine floral homeotic MADS genes. Using the yeast 2- and 3-hybrid systems, we determined that the complexes formed during fruit development and ripening may involve several classes of floral homeotic MADS proteins. We found that a heterologously expressed grapevine SEP gene, VviSEP4, is capable of partially complementing the non-ripening phenotype of the tomato rin mutant, indicating that a role for this gene in ripening regulation may be conserved in fleshy fruit ripening. We also found that ectopic expression of a grapevine AG clade gene, VviAG1, in tomato results in the development of fleshy sepals with the chemical characteristics of tomato fruit pericarp. Additionally, we performed 2-hybrid screens on a library prepared from Pinot noir véraison-stage berry and identified proteins that may interact with the MADS factors that are expressed during berry development and that may represent regulatory functions in grape berry development.

摘要

MIKC(c)- 型 MADS 结构域转录因子包括花发育的重要调节因子,它们通过蛋白质复合物相互作用来控制花器官的发育,正如 ABC 模型所描述的那样。SEPALLATA (SEP) 和 AGAMOUS (AG) MADS 分支的成员包括参与雄蕊和心皮特化的蛋白质,并且这些家族的某些成员,如番茄(Solanum lycopersicon)SlRIN 和 SlTAGL1,已被证明可调节果实发育和成熟启动。许多表达研究表明,在葡萄(Vitis vinifera)浆果发育过程中表达了几个花同源 MADS 基因,包括这些成熟调节因子的潜在同源物。为了深入了解葡萄浆果发育和成熟的调控,我们研究了葡萄花同源 MADS 基因的相互作用和功能。使用酵母 2- 和 3- 杂交系统,我们确定了在果实发育和成熟过程中形成的复合物可能涉及几类花同源 MADS 蛋白。我们发现,异源表达的葡萄 SEP 基因 VviSEP4 能够部分弥补番茄 rin 突变体的非成熟表型,表明该基因在成熟调控中的作用在肉质果实成熟中可能是保守的。我们还发现,在番茄中异位表达葡萄 AG 分支基因 VviAG1 会导致具有番茄果实果皮化学特征的肉质萼片的发育。此外,我们在从黑比诺葡萄转色期浆果制备的文库上进行了 2- 杂交筛选,并鉴定了可能与在浆果发育过程中表达的 MADS 因子相互作用的蛋白质,这些蛋白质可能代表葡萄浆果发育中的调节功能。

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