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拟南芥和金鱼草中类似FIDDLEHEAD基因的功能保守性及表达模式的维持

Functional conservation and maintenance of expression pattern of FIDDLEHEAD-like genes in Arabidopsis and Antirrhinum.

作者信息

Efremova Nadia, Schreiber Lukas, Bär Sascha, Heidmann Iris, Huijser Peter, Wellesen Kirsten, Schwarz-Sommer Zsuzsanna, Saedler Heinz, Yephremov Alexander

机构信息

Max-Planck-Institut für Züchtungsforschung, Carl-von-Linné-Weg 10, 50829 Köln, Germany.

出版信息

Plant Mol Biol. 2004 Nov;56(5):821-37. doi: 10.1007/s11103-004-5576-y. Epub 2005 Mar 24.

Abstract

In Arabidopsis, loss of function of the epidermis-specific FDH gene coding for a putative beta-ketoacyl-CoA synthase results in ectopic organ fusions in mutants. Corresponding mutants are not available for Antirrhinum majus, however, organ fusions can be induced in both species by chloroacetamide inhibitors of beta-ketoacyl-CoA synthases using a chemical genetics approach. We isolated the ortholog of FDH from Antirrhinum majus, the ANTIRRHINUM FIDDLEHEAD (AFI ) gene, and showed that AFI complements fdh when expressed in the epidermis under control of the FDH promoter. Like FDH, the AFI gene exhibits protodermis- and epidermis-specific expression, and its promoter directs the expression of reporter genes to the epidermis in transgenic Antirrhinum and Arabidopsis. We demonstrate down-regulation of the FDH promoter in the epidermis of the ovary septum, thereby supporting the assumption that FDH-like genes may directly facilitate the cell-cell interactions that need to occur during carpel fusion and pollen tube growth. Up-regulation of FDH in the stomium, on the other hand, provides evidence for its possible involvement in cell separation during anther dehiscence. Down-regulation of the FDH and AFI promoters in the septum is observed in transgenic Arabidopsis but not in Antirrhinum plants. This probably reflects differences in the ontogeny of the ovary septum between the two species. We also show that epidermis-specific FDH-like genes may not be able to efficiently elongate fatty acid chains when misexpressed in seeds.

摘要

在拟南芥中,编码假定的β-酮脂酰辅酶A合酶的表皮特异性FDH基因功能丧失会导致突变体中出现异位器官融合。然而,金鱼草没有相应的突变体,不过,使用化学遗传学方法,β-酮脂酰辅酶A合酶的氯乙酰胺抑制剂可在这两个物种中诱导器官融合。我们从金鱼草中分离出了FDH的直系同源基因,即金鱼草FIDDLEHEAD(AFI)基因,并表明AFI在FDH启动子控制下在表皮中表达时可互补fdh。与FDH一样,AFI基因表现出原表皮和表皮特异性表达,其启动子可将报告基因的表达导向转基因金鱼草和拟南芥的表皮。我们证明了卵巢隔膜表皮中FDH启动子的下调,从而支持了这样一种假设,即类似FDH的基因可能直接促进心皮融合和花粉管生长过程中所需的细胞间相互作用。另一方面,FDH在气孔中的上调为其可能参与花药开裂过程中的细胞分离提供了证据。在转基因拟南芥中观察到隔膜中FDH和AFI启动子的下调,但在金鱼草植株中未观察到。这可能反映了这两个物种卵巢隔膜个体发育的差异。我们还表明,表皮特异性的类似FDH的基因在种子中错误表达时可能无法有效地延长脂肪酸链。

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