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The circadian clock-associated gene gigantea1 affects maize developmental transitions.

机译:昼夜节律相关基因gigantea1影响玉米的发育过渡。

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摘要

The circadian clock is an internal timing mechanism that allows plants to make developmental decisions in accordance with environmental conditions. In model plants, circadian clock-associated gigantea (gi) genes are directly involved in control of growth and developmental transitions. The maize gigantea1 (gi1) gene is the more highly expressed of the two gi homeologs, and its function is uncharacterized. To understand the role of gi1 in the regulatory networks of the maize circadian clock system, gi1 mutants were evaluated for changes in flowering time, phase change and growth control. When grown in long-day (LD) photoperiods, gi1 mutants flowered earlier than non-mutant plants, but this difference was not apparent in short-day (SD) photoperiods. Therefore, gi1 participates in a pathway that suppresses flowering in LD photoperiods, but not in SD. Part of the underlying cause of early flowering was up-regulated expression of the FT-like floral activator gene zea mays centroradialis8 (zcn8) and the CONSTANS-like flowering regulatory gene constans of zea mays1 (conz1). gi1 mutants also underwent vegetative phase change earlier and grew taller than non-mutant plants. These findings indicate gi1 has a repressive function in multiple regulatory pathways that govern maize growth and development.Digital Object Identifier http://dx.doi.org/10.1111/pce.12067
机译:昼夜节律时钟是一种内部计时机制,可使植物根据环境条件做出发展决定。在模型植物中,昼夜节律相关的gigantea(gi)基因直接参与生长和发育过渡的控制。玉米gigantea1(gi1)基因在这两个gi同源基因中表达更高,其功能尚未鉴定。为了了解gi1在玉米生物钟系统的调控网络中的作用,对gi1突变体的开花时间,相变和生长控制进行了评估。当在长日照(LD)光周期中生长时,gi1突变体比非突变植物更早开花,但是这种差异在短日照(SD)光周期中不明显。因此,gi1参与抑制LD光周期开花的途径,但不参与SD光周期。早期开花的部分潜在原因是上调了FT样花激活基因玉米黄质玉米8(zcn8)和CONSTANS样开花调控基因玉米1(conz1)的表达。 gi1突变体还比无突变植物更早进行营养相变,并且长得更高。这些发现表明gi1在控制玉米生长和发育的多种调控途径中具有抑制功能。数字对象标识符http://dx.doi.org/10.1111/pce.12067

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