CSIRO Agriculture and Food, 306 Carmody Road, St Lucia, Qld 4067, Australia.
Funct Plant Biol. 2019 Mar;46(4):314-327. doi: 10.1071/FP18136.
The genetic network resulting in the production of an inflorescence is complex, involving one or more pathways including the photoperiod, maturity, gibberellin and autonomous pathways, and induction and repression of genes along the pathways. Understanding the cyclic expression profile of genes involved with photoperiod perception and floral pathway induction in sugarcane, an intermediate-short day plant (ISD), is crucial for identifying key genes and understanding how the profile changes in response to floral induction signals under decreasing daylengths. Homologues of 21 genes, and some gene alleles, associated with photoperiod perception and the flower induction pathway were examined in sugarcane variety Q174 over a 24-h light-dark cycle. The strongest expression of these genes was seen in the immature spindle leaves and levels of expression generally decreased with increasing leaf age. Significant changes in gene expression levels during a 24-h cycle were observed for 16 of the 21 genes tested. We have now defined an important baseline for expression patterns over a 24-h cycle in non-inductive conditions in sugarcane. These results can be utilised to select the optimal time for detecting changes during floral induction, differences between varieties that are responsive/non-responsive to photoperiod induction, and to identify genes that may be manipulated to enhance or inhibit flowering.
产生花序的遗传网络很复杂,涉及一个或多个途径,包括光周期、成熟、赤霉素和自主途径,以及途径上基因的诱导和抑制。了解中间短日植物(ISD)甘蔗中与光周期感知和花诱导途径相关的基因的循环表达谱对于鉴定关键基因以及了解在日长缩短下该表达谱如何响应花诱导信号的变化至关重要。在甘蔗品种 Q174 中,对与光周期感知和花诱导途径相关的 21 个基因和一些基因等位基因进行了研究,在 24 小时光照-黑暗循环中进行了研究。这些基因在未成熟的纺锤形叶片中的表达最强,并且随着叶片年龄的增加,表达水平通常会降低。在 21 个测试基因中,有 16 个基因的表达水平在 24 小时周期内发生了显著变化。我们现在已经在甘蔗非诱导条件下定义了一个 24 小时周期内表达模式的重要基线。这些结果可用于选择在花诱导期间检测变化的最佳时间、对光周期诱导有反应/无反应的品种之间的差异,以及鉴定可能被操纵以增强或抑制开花的基因。