Whipple Clinton J, Ciceri Pietro, Padilla Christopher M, Ambrose Barbara A, Bandong Simona L, Schmidt Robert J
Division of Biological Sciences, Section of Cell and Developmental Biology, University of California at San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0116, USA.
Development. 2004 Dec;131(24):6083-91. doi: 10.1242/dev.01523. Epub 2004 Nov 10.
The ABC model of flower development, established through studies in eudicot model species, proposes that petal and stamen identity are under the control of B-class genes. Analysis of B- and C-class genes in the grass species rice and maize suggests that the C- and B-class functions are conserved between monocots and eudicots, with B-class genes controlling stamen and lodicule development. We have undertaken a further analysis of the maize B-class genes Silky1, the putative AP3 ortholog, and Zmm16, a putative PI ortholog, in order to compare their function with the Arabidopsis B-class genes. Our results show that maize B-class proteins interact in vitro to bind DNA as an obligate heterodimer, as do Arabidopsis B-class proteins. The maize proteins also interact with the appropriate Arabidopsis B-class partner proteins to bind DNA. Furthermore, we show that maize B-class genes are capable of rescuing the corresponding Arabidopsis B-class mutant phenotypes. This demonstrates B-class activity of the maize gene Zmm16, and provides compelling evidence that B-class gene function is conserved between monocots and eudicots.
通过对双子叶模式植物的研究建立的花发育ABC模型提出,花瓣和雄蕊的特性受B类基因控制。对禾本科植物水稻和玉米中B类和C类基因的分析表明,C类和B类功能在单子叶植物和双子叶植物之间是保守的,B类基因控制雄蕊和浆片的发育。我们对玉米的B类基因Silky1(假定的AP3直系同源基因)和Zmm16(假定的PI直系同源基因)进行了进一步分析,以便将它们的功能与拟南芥的B类基因进行比较。我们的结果表明,玉米B类蛋白在体外以专性异二聚体的形式相互作用结合DNA,拟南芥B类蛋白也是如此。玉米蛋白还与相应的拟南芥B类伴侣蛋白相互作用结合DNA。此外,我们表明玉米B类基因能够挽救相应的拟南芥B类突变体表型。这证明了玉米基因Zmm16的B类活性,并提供了令人信服的证据,表明B类基因功能在单子叶植物和双子叶植物之间是保守的。