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Overexpression of MADS-box Gene AGAMOUS-LIKE 12 Activates Root Development in Juglans sp. and Arabidopsis thaliana

机译:MADS-box基因AGAMOUS-LIKE 12的过度表达激活了核桃的根发育。和拟南芥

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摘要

Until recently, the roles of plant MADS-box genes have mainly been characterized during inflorescence and flower differentiation. In order to precise the roles of , one of the few MADS-box genes preferentially expressed in roots, we placed its cDNA under the control of the double 35S promoter to produce transgenic walnut tree and plants. In , transgenic somatic embryos showed significantly higher germination rates but abnormal development of their shoot apex prevented their conversion into plants. In addition, a wide range of developmental abnormalities corresponding to ectopic root-like structures affected the transgenic lines suggesting partial reorientations of the embryonic program toward root differentiation. In , overexpression lead to the production of faster growing plants presenting dramatically wider and shorter root phenotypes linked to increased meristematic cell numbers within the root apex. In the upper part of the roots, abnormal cell divisions patterns within the pericycle layer generated large ectopic cell masses that did not prevent plants to grow. Taken together, our results confirm in both species that positively regulates root meristem cell division and promotes overall root vascular tissue formation. Genetic engineering of expression levels could be useful to modulate root architecture and development.
机译:直到最近,主要在花序和花分化过程中表征了植物MADS-box基因的作用。为了精确定位优先在根中表达的少数MADS-box基因之一的作用,我们将其cDNA置于双重35S启动子的控制下,以生产转基因核桃树和植物。在中,转基因体细胞胚显示出较高的发芽率,但其茎尖的异常发育阻止了它们转化为植物。另外,对应于异位根样结构的广泛发育异常影响了转基因品系,表明胚胎程序向根分化的部分重新定向。在中,过表达导致产生生长较快的植物,这些植物表现出显着更宽和更短的根表型,这与根尖内分生细胞数量的增加有关。在根的上部,周转层内异常的细胞分裂模式产生了较大的异位细胞团,这并未阻止植物生长。两者合计,我们的结果证实在这两个物种中积极调节根分生组织的细胞分裂,并促进整个根血管组织的形成。表达水平的遗传工程可能对调节根的结构和发育有用。

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