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Extensive Transcriptome Changes During Natural Onset and Release of Vegetative Bud Dormancy in Populus

机译:杨的自然芽和营养芽休眠的释放过程中大量转录组变化

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摘要

To survive winter, many perennial plants become endodormant, a state of suspended growth maintained even in favorable growing environments. To understand vegetative bud endodormancy, we collected paradormant, endodormant, and ecodormant axillary buds from Populus trees growing under natural conditions. Of 44,441 Populus gene models analyzed using NimbleGen microarrays, we found that 1,362 (3.1%) were differentially expressed among the three dormancy states, and 429 (1.0%) were differentially expressed during only one of the two dormancy transitions (FDR p-value < 0.05). Of all differentially expressed genes, 69% were down-regulated from paradormancy to endodormancy, which was expected given the lower metabolic activity associated with endodormancy. Dormancy transitions were accompanied by changes in genes associated with DNA methylation (via RNA-directed DNA methylation) and histone modifications (via Polycomb Repressive Complex 2), confirming and extending knowledge of chromatin modifications as major features of dormancy transitions. Among the chromatin-associated genes, two genes similar to SPT (SUPPRESSOR OF TY) were strongly up-regulated during endodormancy. Transcription factor genes and gene sets that were atypically up-regulated during endodormancy include a gene that seems to encode a trihelix transcription factor and genes associated with proteins involved in responses to ethylene, cold, and other abiotic stresses. These latter transcription factors include ETHYLENE INSENSITIVE 3 (EIN3), ETHYLENE-RESPONSIVE ELEMENT BINDING PROTEIN (EBP), ETHYLENE RESPONSE FACTOR (ERF), ZINC FINGER PROTEIN 10 (ZAT10), ZAT12, and WRKY DNA-binding domain proteins. Analyses of phytohormone-associated genes suggest important changes in responses to ethylene, auxin, and brassinosteroids occur during endodormancy. We found weaker evidence for changes in genes associated with salicylic acid and jasmonic acid, and little evidence for important changes in genes associated with gibberellins, abscisic acid, and cytokinin. We identified 315 upstream sequence motifs associated with eight patterns of gene expression, including novel motifs and motifs associated with the circadian clock and responses to photoperiod, cold, dehydration, and ABA. Analogies between flowering and endodormancy suggest important roles for genes similar to SQUAMOSA-PROMOTER BINDING PROTEIN-LIKE (SPL), DORMANCY ASSOCIATED MADS-BOX (DAM), and SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 (SOC1).
机译:为了在冬季生存,许多多年生植物都变成了endodormant,即使在有利的生长环境中也保持了悬浮生长的状态。为了了解植物芽的异味,我们收集了自然条件下生长的杨树的副休眠,内气味和生态休眠的腋芽。在使用NimbleGen微阵列分析的44,441个杨树基因模型中,我们发现,在三个休眠状态之间差异表达1,362(3.1%),而在两个休眠过渡中只有429个(1.0%)差异表达(FDR p-value < 0.05)。在所有差异表达基因中,有69%从休眠状态下调至内嗅,这是由于与内嗅相关的代谢活性较低所致。休眠转换伴随着与DNA甲基化(通过RNA定向的DNA甲基化)和组蛋白修饰(通过Polycomb Repressive Complex 2)相关的基因变化,从而确认并扩展了染色质修饰作为休眠转换的主要特征的知识。在染色质相关基因中,两个与SPT(TYUPPRESSOR OF TY)类似的基因在异味过程中被强烈上调。内吸过程中非典型上调的转录因子基因和基因组包括一个似乎编码三螺旋转录因子的基因以及与参与乙烯,寒冷和其他非生物胁迫反应的蛋白质相关的基因。这些后面的转录因子包括乙烯敏感性3(EIN3),乙烯反应性元素结合蛋白(EBP),乙烯反应因子(ERF),ZINC指蛋白10(ZAT10),ZAT12和WRKY DNA结合域蛋白。对植物激素相关基因的分析表明,在气味释放期间,对乙烯,生长素和油菜素甾类化合物的反应发生了重要变化。我们发现与水杨酸和茉莉酸有关的基因发生变化的证据较弱,而与赤霉素,脱落酸和细胞分裂素有关的基因发生重要变化的证据却很少。我们确定了与八种基因表达模式相关的315个上游序列基序,包括新型基序和与生物钟有关的基序以及对光周期,寒冷,脱水和ABA的响应。开花和内吸性之间的类比表明,类似于SQUAMOSA-PROBINTER BINDING蛋白样(SPL),Dormancy Associated MADS-BOX(DAM)和过表达抑制CONSTANS 1(SOC1)的基因具有重要作用。

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