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对比转录程序控制苹果(Malus x domestica Borkh.)冷藏和乙烯阻断后的采后发育

Contrasting Transcriptional Programs Control Postharvest Development of Apples (Malus x domestica Borkh.) Submitted to Cold Storage and Ethylene Blockage.

作者信息

Storch Tatiane Timm, Finatto Taciane, Bruneau Maryline, Orsel-Baldwin Mathilde, Renou Jean-Pierre, Rombaldi Cesar Valmor, Quecini Vera, Laurens François, Girardi César Luis

机构信息

Embrapa Uva e Vinho , Bento Gonçalves, RS 95701-008, Brazil.

Departamento de Ciência e Tecnologia Agroindustrial, Faculdade de Agronomia Eliseu Maciel, Universidade Federal de Pelotas , Pelotas, RS 96050-500, Brazil.

出版信息

J Agric Food Chem. 2017 Sep 6;65(35):7813-7826. doi: 10.1021/acs.jafc.7b01425. Epub 2017 Aug 23.

DOI:10.1021/acs.jafc.7b01425
PMID:28771353
Abstract

Apple is commercially important worldwide. Favorable genomic contexts and postharvest technologies allow year-round availability. Although ripening is considered a unidirectional developmental process toward senescence, storage at low temperatures, alone or in combination with ethylene blockage, is effective in preserving apple properties. Quality traits and genome wide expression were integrated to investigate the mechanisms underlying postharvest changes. Development and conservation techniques were responsible for transcriptional reprogramming and distinct programs associated with quality traits. A large portion of the differentially regulated genes constitutes a program involved in ripening and senescence, whereas a smaller module consists of genes associated with reestablishment and maintenance of juvenile traits after harvest. Ethylene inhibition was associated with a reversal of ripening by transcriptional induction of anabolic pathways. Our results demonstrate that the blockage of ethylene perception and signaling leads to upregulation of genes in anabolic pathways. We also associated complex phenotypes to subsets of differentially regulated genes.

摘要

苹果在全球商业上具有重要意义。有利的基因组背景和采后技术使其能够全年供应。尽管成熟被认为是一个朝着衰老的单向发育过程,但低温储存,单独或与乙烯阻断相结合,对于保持苹果的特性是有效的。整合了品质性状和全基因组表达,以研究采后变化的潜在机制。发育和保存技术导致了转录重编程以及与品质性状相关的不同程序。大部分差异调节基因构成了一个参与成熟和衰老的程序,而较小的模块则由与收获后幼龄性状的重建和维持相关的基因组成。乙烯抑制与通过合成代谢途径的转录诱导使成熟逆转有关。我们的结果表明,乙烯感知和信号传导的阻断导致合成代谢途径中基因的上调。我们还将复杂的表型与差异调节基因的子集联系起来。

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