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鉴定甜樱桃(Prunus avium L.)漆酶样多铜氧化酶基因家族及其在六个古老托斯卡纳品种中的表达分析。

Identification of the laccase-like multicopper oxidase gene family of sweet cherry (Prunus avium L.) and expression analysis in six ancient Tuscan varieties.

机构信息

Department of Life Sciences, University of Siena, via P.A. Mattioli 4, 53100, Siena, Italy.

Trees and timber institute-National research council of Italy (CNR-IVALSA), via Aurelia 49, 58022, Follonica, GR, Italy.

出版信息

Sci Rep. 2019 Mar 5;9(1):3557. doi: 10.1038/s41598-019-39151-z.

Abstract

Laccase-like multicopper oxidases (LMCOs) are versatile enzymes used as biocatalysts performing the oxidation of different substrates of industrial relevance, with or without the intervention of a mediator. They have attracted a lot of interest for biotechnological applications in light of their eco-friendliness: they indeed oxidize the substrate(s) by coupling the four electron reduction of the final acceptor, molecular oxygen (O), to water. Plant LMCOs represent a still poorly studied, important class of oxidoreductases controlling e.g. the post-harvest quality of fruits and enabling the tailoring of designer energy crops. We here sought to identify the LMCOs in Prunus avium L., whose fruits are rich in bioactive molecules, but are also highly perishable. The goal was to analyze them using bioinformatics (phylogenetic and in silico structural analyses) and to perform a targeted expression study on a subset of genes in six ancient varieties from Tuscany, all threatened by genetic erosion. These sweet cherry varieties contain higher amount of bioactive molecules, as compared to commercial counterparts. The results shown demonstrate strikingly different gene expression patterns in the six ancient varieties ('Benedetta', 'Carlotta', 'Crognola', 'Maggiola', 'Morellona', 'Moscatella') belonging to the Tuscan Regional Bank of Germplasm, as compared to a widely used commercial one ('Durone'). The motivation of this study is the economic importance of P. avium and the involvement of LMCOs in post-harvest fruit parameters, like color. The results presented pave the way to follow-up researches on LMCOs of sweet cherry exploring post-harvest fruit parameters (e.g. anthocyanin stability responsible for pericarp browning and the preservation of the appealing red color), as well as developmental processes, like stony pit formation.

摘要

漆酶样多铜氧化酶(LMCOs)是一类多功能酶,可用作生物催化剂,在有或没有介体的情况下氧化具有工业相关性的不同底物。鉴于其环保特性,它们在生物技术中的应用引起了广泛关注:它们确实通过将最终受体(分子氧(O))的四电子还原与水偶联来氧化底物。植物 LMCO 是一个研究较少但很重要的氧化还原酶类,可控制水果的采后品质,使设计的能源作物能够适应。我们在这里试图鉴定李属樱桃中的 LMCO,其果实富含生物活性分子,但也极易腐烂。目的是使用生物信息学(系统发育和计算机结构分析)对来自托斯卡纳的六个古老品种的一组基因进行分析,这些品种都受到遗传侵蚀的威胁。这些甜樱桃品种含有比商业品种更高的生物活性分子。结果表明,在属于托斯卡纳地区种质银行的六个古老品种(“Benedetta”、“Carlotta”、“Crognola”、“Maggiola”、“Morellona”和“Moscatella”)中,基因表达模式明显不同,与广泛使用的商业品种(“Durone”)相比。本研究的动机是李属樱桃的经济重要性以及 LMCOs 参与采后水果参数(如颜色)。所呈现的结果为后续研究甜樱桃的 LMCOs 铺平了道路,探索采后水果参数(如负责果皮褐变的花青素稳定性和诱人红色的保持)以及发育过程(如石细胞形成)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3877/6401077/386dd0c442eb/41598_2019_39151_Fig1_HTML.jpg

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