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低温贮藏后南瓜果实的转录组变化:对冷敏感两种品种的差异响应。

Transcriptomic changes in Cucurbita pepo fruit after cold storage: differential response between two cultivars contrasting in chilling sensitivity.

机构信息

Department of Plant Physiology, Facultad de Ciencias, University of Granada, Fuentenueva s/n, 18071, Granada, Spain.

Department of Biology and Geology, Agrifood Campus of International Excellence (CeiA3), CIAIMBITAL, University of Almería, La Cañada de San Urbano s/n, 04120, Almería, Spain.

出版信息

BMC Genomics. 2018 Feb 7;19(1):125. doi: 10.1186/s12864-018-4500-9.

Abstract

BACKGROUND

Zucchini fruit is susceptible to chilling injury (CI), but the response to low storage temperature is cultivar dependent. Previous reports about the response of zucchini fruit to chilling storage have been focused on the physiology and biochemistry of this process, with little information about the molecular mechanisms underlying it. In this work, we present a comprehensive analysis of transcriptomic changes that take place after cold storage in zucchini fruit of two commercial cultivars with contrasting response to chilling stress.

RESULTS

RNA-Seq analysis was conducted in exocarp of fruit at harvest and after 14 days of storage at 4 and 20 °C. Differential expressed genes (DEGs) were obtained comparing fruit stored at 4 °C with their control at 20 °C, and then specific and common up and down-regulated DEGs of each cultivar were identified. Functional analysis of these DEGs identified similarities between the response of zucchini fruit to low temperature and other stresses, with an important number of GO terms related to biotic and abiotic stresses overrepresented in both cultivars. This study also revealed several molecular mechanisms that could be related to chilling tolerance, since they were up-regulated in cv. Natura (CI tolerant) or down-regulated in cv. Sinatra (CI sensitive). These mechanisms were mainly those related to carbohydrate and energy metabolism, transcription, signal transduction, and protein transport and degradation. Among DEGs belonging to these pathways, we selected candidate genes that could regulate or promote chilling tolerance in zucchini fruit including the transcription factors MYB76-like, ZAT10-like, DELLA protein GAIP, and AP2/ERF domain-containing protein.

CONCLUSIONS

This study provides a broader understanding of the important mechanisms and processes related to coping with low temperature stress in zucchini fruit and allowed the identification of some candidate genes that may be involved in the acquisition of chilling tolerance in this crop. These genes will be the basis of future studies aimed to identify markers involved in cold tolerance and aid in zucchini breeding programs.

摘要

背景

南瓜果实易受冷害(CI)影响,但对低温贮藏的反应取决于品种。先前关于南瓜果实对冷藏贮藏反应的报道主要集中在该过程的生理学和生物化学方面,对其分子机制的信息较少。在这项工作中,我们对两个商业品种南瓜果实冷藏后转录组变化进行了全面分析,这两个品种对冷胁迫的反应不同。

结果

在收获时和在 4 和 20°C 下贮藏 14 天后,对果皮进行了 RNA-Seq 分析。通过比较在 4°C 下贮藏的果实与在 20°C 下贮藏的对照果实,获得了差异表达基因(DEGs),然后鉴定了每个品种特异和共同上调和下调的 DEGs。对这些 DEGs 的功能分析发现,南瓜果实对低温和其他胁迫的反应之间存在相似性,两个品种中与生物和非生物胁迫相关的 GO 术语数量明显偏多。本研究还揭示了几种可能与耐冷性相关的分子机制,因为它们在 Natura 品种(耐冷)中上调或在 Sinatra 品种(敏感)中下调。这些机制主要与碳水化合物和能量代谢、转录、信号转导以及蛋白质运输和降解有关。在属于这些途径的 DEGs 中,我们选择了一些候选基因,这些基因可能调节或促进南瓜果实的耐冷性,包括转录因子 MYB76 样、ZAT10 样、DELLA 蛋白 GAIP 和 AP2/ERF 结构域蛋白。

结论

本研究提供了对南瓜果实应对低温胁迫的重要机制和过程的更广泛理解,并鉴定了一些可能参与该作物获得耐冷性的候选基因。这些基因将成为未来研究的基础,旨在鉴定与耐冷性相关的标记,并为南瓜的选育计划提供帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7ad/5804050/1c6764379e05/12864_2018_4500_Fig1_HTML.jpg

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