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鉴定和分析生菜(Lactuca sativa cv. 'Salinas')糖酸氧化酶基因家族及其在各种生物、非生物和发育胁迫下的响应。

Identification and characterization of Glycolate oxidase gene family in garden lettuce (Lactuca sativa cv. 'Salinas') and its response under various biotic, abiotic, and developmental stresses.

机构信息

Department of Horticulture, University of the Punjab, Lahore, Pakistan.

Department of Biotechnology, The Islamia University of Bahawalpur, Bahawalpur, Pakistan.

出版信息

Sci Rep. 2023 Nov 11;13(1):19686. doi: 10.1038/s41598-023-47180-y.

Abstract

Glycolate oxidase (GLO) is an FMN-containing enzyme localized in peroxisomes and performs in various molecular and biochemical mechanisms. It is a key player in plant glycolate and glyoxylate accumulation pathways. The role of GLO in disease and stress resistance is well-documented in various plant species. Although studies have been conducted regarding the role of GLO genes from spinach on a microbial level, the direct response of GLO genes to various stresses in short-season and leafy plants like lettuce has not been published yet. The genome of Lactuca sativa cultivar 'Salinas' (v8) was used to identify GLO gene members in lettuce by performing various computational analysis. Dual synteny, protein-protein interactions, and targeted miRNA analyses were conducted to understand the function of GLO genes. The identified GLO genes showed further clustering into two groups i.e., glycolate oxidase (GOX) and hydroxyacid oxidase (HAOX). Genes were observed to be distributed unevenly on three chromosomes, and syntenic analysis revealed that segmental duplication was prevalent. Thus, it might be the main reason for GLO gene diversity in lettuce. Almost all LsGLO genes showed syntenic blocks in respective plant genomes under study. Protein-protein interactions of LsGLO genes revealed various functional enrichments, mainly photorespiration, and lactate oxidation, and among biological processes oxidative photosynthetic carbon pathway was highly significant. Results of in-depth analyses disclosed the interaction of GLO genes with other members of the glycolate pathway and the activity of GLO genes in various organs and developmental stages in lettuce. The extensive genome evaluation of GLO gene family in garden lettuce is believed to be a reference for cloning and studying functional analyses of GLO genes and characterizing other members of glycolate/glyoxylate biosynthesis pathway in various plant species.

摘要

乙醇酸氧化酶(GLO)是一种含有 FMN 的酶,定位于过氧化物酶体中,参与多种分子和生化机制。它是植物乙醇酸和乙醛酸积累途径中的关键酶。GLO 在各种植物物种的疾病和抗胁迫中的作用已有大量研究报道。尽管已经在微生物水平上对菠菜 GLO 基因的作用进行了研究,但尚未发表关于短季生菜等植物中 GLO 基因对各种胁迫的直接反应的研究。通过进行各种计算分析,使用 Lactuca sativa 品种‘Salinas’(v8)的基因组来鉴定生菜中的 GLO 基因成员。进行了双重基因同线性、蛋白质-蛋白质相互作用和靶向 miRNA 分析,以了解 GLO 基因的功能。鉴定出的 GLO 基因进一步聚类为乙醇酸氧化酶(GOX)和羟基酸氧化酶(HAOX)两组。基因不均匀分布在三条染色体上,并且共线性分析表明片段重复普遍存在。因此,这可能是生菜 GLO 基因多样性的主要原因。在所研究的植物基因组中,几乎所有的 LsGLO 基因都显示出基因同线性块。LsGLO 基因的蛋白质-蛋白质相互作用揭示了各种功能富集,主要是光呼吸和乳酸氧化,在生物过程中,氧化光合碳途径具有高度显著性。深入分析的结果揭示了 GLO 基因与其他乙醛酸途径成员的相互作用,以及 GLO 基因在生菜不同器官和发育阶段的活性。对花园生菜 GLO 基因家族的广泛基因组评估被认为是克隆和研究 GLO 基因功能分析以及表征其他植物物种中乙醛酸/乙醛酸生物合成途径成员的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99f3/10640638/11fe47c32509/41598_2023_47180_Fig1_HTML.jpg

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