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Molecular characterization of two genes, ZmRPS4 and ZmMET1, expressed in the tiller bases in maize.

机译:玉米分till基中表达的两个基因ZmRPS4和ZmMET1的分子特征。

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The initiation and outgrowth of tillers is one of the many important traits of most monocotyledonous plants. The influence of corn tiller on grain yields, which is probably related to the degree of introgression of teosinte, remains controversial, but it is a useful trait for increasing total biological yields. In order to study the molecular events occurring during the formation of tiller, two clones of ZmRPS4 (Zea mays ribosomal protein S4) and ZmMETl (Zea mays multi- ears and tillersl) were isolated from the tiller bases in maize by differential hybridization. The ZmRPS4 and ZmMETl genes were more highly expressed in tissues, e.g., tiller bases and brace roots, than in leaf tissues. The ZmRPS4 gene was expressed in the vascular tissues of tiller bases and brace roots. The ZmMETl gene was expressed in the vascular tissues of tiller bases and brace roots, and in leaf primordial of tiller bases. In terms of plant hormone treatments, the ZmRPS4 gene was induced by ABA, GA, and kinetin, but the ZmMETl gene only responded to kinetin. The two genes are discussed in relation to the formation of tillers in maize.
机译:分till的萌芽和生长是大多数单子叶植物的许多重要特征之一。玉米分till对谷物产量的影响(可能与端粒蛋白的渗入程度有关)仍存在争议,但这是提高总生物产量的有用特性。为了研究分till形成过程中发生的分子事件,通过差异杂交从玉米的分er碱基中分离了两个ZmRPS4(玉米(Zea mays)核糖体蛋白S4)和ZmMET1(玉米(Zea mays multiears和tillers))克隆。 ZmRPS4和ZmMET1基因在组织中,例如在分till基和支架根中,比在叶组织中高表达。 ZmRPS4基因在分till基和支架根的维管组织中表达。 ZmMET1基因在分er基和支架根的维管组织中以及在分er基的叶原基中表达。在植物激素处理方面,ZmRPS4基因是由ABA,GA和激动素诱导的,但是ZmMET1基因仅对激动素有反应。讨论了两个基因与玉米分relation的形成有关。

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