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两个成熟阶段鲜食葡萄采后贮藏中的低温和短期高二氧化碳处理:对转录组分析的影响

Low Temperature and Short-Term High-CO2 Treatment in Postharvest Storage of Table Grapes at Two Maturity Stages: Effects on Transcriptome Profiling.

作者信息

Rosales Raquel, Romero Irene, Fernandez-Caballero Carlos, Escribano M Isabel, Merodio Carmen, Sanchez-Ballesta M Teresa

机构信息

Departamento de Caracterización, Calidad y Seguridad, Instituto de Ciencia y Tecnología de Alimentos y Nutrición, ICTAN-CSIC, Ciudad Universitaria Madrid, Spain.

出版信息

Front Plant Sci. 2016 Jul 13;7:1020. doi: 10.3389/fpls.2016.01020. eCollection 2016.

Abstract

Table grapes (Vitis vinifera cv. Cardinal) are highly perishable and their quality deteriorates during postharvest storage at low temperature mainly because of sensitivity to fungal decay and senescence of rachis. The application of a 3-day CO2 treatment (20 kPa CO2 + 20 kPa O2 + 60 kPa N2) at 0°C reduced total decay and retained fruit quality in early and late-harvested table grapes during postharvest storage. In order to study the transcriptional responsiveness of table grapes to low temperature and high CO2 levels in the first stage of storage and how the maturity stage affect these changes, we have performed a comparative large-scale transcriptional analysis using the custom-made GrapeGen GeneChip®. In the first stage of storage, low temperature led to a significantly intense change in grape skin transcriptome irrespective of fruit maturity, although there were different changes within each stage. In the case of CO2 treated samples, in comparison to fruit at time zero, only slight differences were observed. Functional enrichment analysis revealed that major modifications in the transcriptome profile of early- and late-harvested grapes stored at 0°C are linked to biotic and abiotic stress-responsive terms. However, in both cases there is a specific reprogramming of the transcriptome during the first stage of storage at 0°C in order to withstand the cold stress. Thus, genes involved in gluconeogenesis, photosynthesis, mRNA translation and lipid transport were up-regulated in the case of early-harvested grapes, and genes related to protein folding stability and intracellular membrane trafficking in late-harvested grapes. The beneficial effect of high CO2 treatment maintaining table grape quality seems to be an active process requiring the induction of several transcription factors and kinases in early-harvested grapes, and the activation of processes associated to the maintenance of energy in late-harvested grapes.

摘要

鲜食葡萄(欧亚种葡萄品种“绯红无核”)极易腐烂,在低温下采后贮藏期间其品质会下降,主要原因是对真菌腐烂和果梗衰老敏感。在0℃下进行3天的二氧化碳处理(20千帕二氧化碳 + 20千帕氧气 + 60千帕氮气)可减少采后贮藏期间早采和晚采鲜食葡萄的总腐烂率并保持果实品质。为了研究鲜食葡萄在贮藏第一阶段对低温和高二氧化碳水平的转录反应以及成熟阶段如何影响这些变化,我们使用定制的葡萄基因芯片进行了大规模的比较转录分析。在贮藏的第一阶段,低温导致葡萄果皮转录组发生显著强烈变化,与果实成熟度无关,尽管每个阶段内部存在不同变化。对于经过二氧化碳处理的样品,与贮藏开始时的果实相比,仅观察到轻微差异。功能富集分析表明,在0℃下贮藏的早采和晚采葡萄转录组图谱的主要变化与生物和非生物胁迫响应术语有关。然而,在这两种情况下,在0℃贮藏的第一阶段转录组都有特定的重编程,以抵御冷胁迫。因此,在早采葡萄中,参与糖异生、光合作用、mRNA翻译和脂质转运的基因上调,而在晚采葡萄中,与蛋白质折叠稳定性和细胞内膜运输相关的基因上调。高二氧化碳处理对保持鲜食葡萄品质的有益作用似乎是一个活跃的过程,需要在早采葡萄中诱导几种转录因子和激酶,并在晚采葡萄中激活与能量维持相关的过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cea/4942463/683ba37a6bbd/fpls-07-01020-g0001.jpg

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