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Identification of Peach NAP Transcription Factor Genes and Characterization of their Expression in Vegetative and Reproductive Organs during Development and Senescence

机译:桃NAP转录因子基因的鉴定及其在发育和衰老过程中在营养和生殖器官中的表达特征

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摘要

The NAP (NAC-like, activated by AP3/P1) transcription factor belongs to a subfamily of the NAC transcription factor family, and is believed to have an important role in regulating plant growth and development. However, there is very little information about this subfamily in Rosaceous plants. We identified seven NAP genes in the peach genome. PpNAP2 was categorized in the NAP I group, and contained a conserved transcription activation region. The other PpNAP genes belonged to the NAP II group. The expression patterns of the PpNAP genes differed in various organs and developmental stages. PpNAP1 and PpNAP2 were highly expressed in mature and senescing flowers, but not in leaves, fruits, and flower buds. PpNAP3 and PpNAP5 were only expressed in leaves. The PpNAP4 expression level was high in mature and senescing fruits, while PpNAP6 and PpNAP7 expression was up-regulated in mature and senescent leaves and flowers. During the fruit development period, the PpNAP4 and PpNAP6 expression levels rapidly increased during the S1 and S4 stages, which suggests these genes are involved in the first exponential growth phase and fruit ripening. During the fruit ripening and softening period, the PpNAP1, PpNAP4, and PpNAP6 expression levels were high during the early storage period, which was accompanied by a rapid increase in ethylene production. PpNAP1, PpNAP4, and PpNAP6 expression slowly increased during the middle or late storage periods, and peaked at the end of the storage period. Additionally, abscisic acid (ABA)-treated fruits were softer and produced more ethylene than the controls. Furthermore, the PpNAP1, PpNAP4, and PpNAP6 expression levels were higher in ABA-treated fruits. These results suggest that PpNAP1, PpNAP4, and PpNAP6 are responsive to ABA and may regulate peach fruit ripening.
机译:NAP(由AP3 / P1激活的类似NAC的)转录因子属于NAC转录因子家族的一个亚科,据信在调节植物生长和发育中具有重要作用。但是,关于蔷薇科植物中该亚科的信息很少。我们在桃子基因组中鉴定了七个NAP基因。 PpNAP2归类为NAP I组,并包含一个保守的转录激活区。其他PpNAP基因属于NAP II组。 PpNAP基因的表达模式在各个器官和发育阶段有所不同。 PpNAP1和PpNAP2在成熟和衰老的花朵中高表达,但在叶子,果实和花蕾中不高。 PpNAP3和PpNAP5仅在叶片中表达。在成熟和衰老的果实中,PpNAP4表达水平较高,而在成熟和衰老的叶和花中,PpNAP6和PpNAP7表达上调。在果实发育期间,PpNAP4和PpNAP6表达水平在S1和S4阶段迅速增加,这表明这些基因参与了第一个指数生长期和果实成熟。在果实成熟和软化期间,PpNAP1,PpNAP4和PpNAP6的表达水平在贮藏初期很高,并伴随着乙烯产量的快速增加。在存储中期或后期, PpNAP1 PpNAP4 PpNAP6 表达缓慢增加,并在存储结束时达到峰值。另外,脱落酸(ABA)处理的果实比对照的更柔软并且产生更多的乙烯。此外,ABA处理的果实中的 PpNAP1 PpNAP4 PpNAP6 表达水平较高。这些结果表明, PpNAP1 PpNAP4 PpNAP6 对ABA有响应,并可能调节桃果实的成熟。

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