首页> 美国卫生研究院文献>Scientific Reports >Chilling Affects Phytohormone and Post-Embryonic Development Pathways during Bud Break and Fruit Set in Apple (Malus domestica Borkh.)
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Chilling Affects Phytohormone and Post-Embryonic Development Pathways during Bud Break and Fruit Set in Apple (Malus domestica Borkh.)

机译:在苹果芽芽和坐果过程中低温影响植物激素和胚后发育途径。

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摘要

The availability of sufficient chilling during bud dormancy plays an important role in the subsequent yield and quality of apple fruit, whereas, insufficient chilling availability negatively impacts the apple production. The transcriptome profiling during bud dormancy release and initial fruit set under low and high chill conditions was performed using RNA-seq. The comparative high number of differentially expressed genes during bud break and fruit set under high chill condition indicates that chilling availability was associated with transcriptional reorganization. The comparative analysis reveals the differential expression of genes involved in phytohormone metabolism, particularly for Abscisic acid, gibberellic acid, ethylene, auxin and cytokinin. The expression of Dormancy Associated MADS-box, Flowering Locus C-like, Flowering Locus T-like and Terminal Flower 1-like genes was found to be modulated under differential chilling. The co-expression network analysis indentified two high chill specific modules that were found to be enriched for “post-embryonic development” GO terms. The network analysis also identified hub genes including Early flowering 7, RAF10, ZEP4 and F-box, which may be involved in regulating chilling-mediated dormancy release and fruit set. The results of transcriptome and co-expression network analysis indicate that chilling availability majorly regulates phytohormone-related pathways and post-embryonic development during bud break.
机译:芽休眠期间是否有足够的冷藏能力在随后的苹果果实产量和品质中起着重要作用,而冷藏能力不足则对苹果产量产生负面影响。使用RNA-seq对芽休眠释放和低低温和高低温条件下的初始坐果过程进行转录组分析。在较高的寒冷条件下,芽断裂和坐果过程中差异表达基因的数量相对较高,表明低温可用性与转录重组有关。对比分析揭示了参与植物激素代谢的基因的差异表达,特别是脱落酸,赤霉素,乙烯,生长素和细胞分裂素的基因。发现休眠关联的MADS框,开花轨迹C样,开花轨迹T样和终末花1样基因的表达在不同的低温下受到调节。共表达网络分析确定了两个高寒特定模块,这些模块被发现丰富了“胚胎后发育” GO术语。网络分析还确定了包括早期开花7,RAF10,ZEP4和F-box在内的轮毂基因,这些基因可能参与调节低温介导的休眠释放和坐果。转录组和共表达网络分析的结果表明,低温可用性主要调节芽断裂期间植物激素相关的途径和胚后发育。

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