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一种整合转录组学和蛋白质组学的方法,用于鉴定长货架期番茄近等基因系果实成熟潜在的基因。

An Integrative Transcriptomics and Proteomics Approach to Identify Putative Genes Underlying Fruit Ripening in Tomato near Isogenic Lines with Long Shelf Life.

作者信息

Di Giacomo Melisa, Vega Tatiana Alejandra, Cambiaso Vladimir, Picardi Liliana Amelia, Rodríguez Gustavo Rubén, Pereira da Costa Javier Hernán

机构信息

Instituto de Investigaciones en Ciencias Agrarias de Rosario (IICAR-CONICET-UNR), Campo Experimental Villarino, Facultad de Ciencias Agrarias, Universidad Nacional de Rosario, Zavalla S2125ZAA, Santa Fe, Argentina.

Cátedra de Genética, Facultad de Ciencias Agrarias, Universidad Nacional de Rosario, Zavalla S2125ZAA, Santa Fe, Argentina.

出版信息

Plants (Basel). 2023 Jul 29;12(15):2812. doi: 10.3390/plants12152812.

Abstract

The elucidation of the ripening pathways of climacteric fruits helps to reduce postharvest losses and improve fruit quality. Here, we report an integrative study on tomato ripening for two near-isogenic lines (NIL115 and NIL080) with LA0722 introgressions. A comprehensive analysis using phenotyping, molecular, transcript, and protein data were performed. Both NILs show improved fruit firmness and NIL115 also has longer shelf life compared to the cultivated parent. NIL115 differentially expressed a transcript from the APETALA2 ethylene response transcription factor family (AP2/ERF) with a potential role in fruit ripening. E4, another ERF, showed an upregulated expression in NIL115 as well as in the wild parent, and it was located physically close to a wild introgression. Other proteins whose expression levels changed significantly during ripening were identified, including an ethylene biosynthetic enzyme (ACO3) and a pectate lyase (PL) in NIL115, and an alpha-1,4 glucan phosphorylase (Pho1a) in NIL080. In this study, we provide insights into the effects of several genes underlying tomato ripening with potential impact on fruit shelf life. Data integration contributed to unraveling ripening-related genes, providing opportunities for assisted breeding.

摘要

对跃变型果实成熟途径的阐明有助于减少采后损失并提高果实品质。在此,我们报告了一项针对两个导入了LA0722的近等基因系(NIL115和NIL080)番茄成熟的综合研究。我们使用表型、分子、转录本和蛋白质数据进行了全面分析。与栽培亲本相比,两个近等基因系的果实硬度均有所提高,且NIL115的货架期也更长。NIL115差异表达了一个来自APETALA2乙烯反应转录因子家族(AP2/ERF)的转录本,该转录本在果实成熟中可能发挥作用。另一个ERF(E4)在NIL115以及野生亲本中表达上调,并且它在物理位置上靠近一个野生导入片段。还鉴定出了其他在成熟过程中表达水平发生显著变化的蛋白质,包括NIL115中的一种乙烯生物合成酶(ACO3)和一种果胶酸裂解酶(PL),以及NIL080中的一种α-1,4葡聚糖磷酸化酶(Pho1a)。在本研究中,我们深入了解了几个影响番茄成熟的基因对果实货架期潜在的作用。数据整合有助于揭示与成熟相关的基因,并为辅助育种提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a4a/10421356/39673b3cdebf/plants-12-02812-g001.jpg

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