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莲雾中AOMT基因家族的全基因组鉴定及其对花青素甲基化的功能表征

Genome-wide identification of the AOMT gene family in wax apple and functional characterization of to anthocyanin methylation.

作者信息

Wei Xiuqing, Li Liang, Xu Ling, Zeng Lihui, Xu Jiahui

机构信息

College of Horticulture, Fujian Agriculture and Forestry University, Fuzhou, China.

Fruit Research Institute, Fujian Academy of Agricultural Sciences, Fuzhou, Fujian, China.

出版信息

Front Plant Sci. 2023 Sep 26;14:1213642. doi: 10.3389/fpls.2023.1213642. eCollection 2023.

Abstract

INTRODUCTION

Anthocyanins are major pigments in the peels of red-series wax apple fruits, and two principal components of them, namely, the cyanin and the peonidin, are non-methoxylated and methoxylated anthocyanins, respectively. Anthocyanin O-methyltransferases (AOMTs) are an important group of enzymes that have the ability to catalyze anthocyanins methylation to promote the solubility, stability, and bioactivity of anthocyanins. Although AOMT genes have been studied in a variety of plants, the function of them in wax apple is generally not well understood.

METHODS

The anthocyanin composition in peels of two wax apple cultivars was determined by High Performance Liquid Chromatography Tandem Mass Spectrometry (HPLS-MS). The genome-wide analysis of the AOMT genes was performed with bioinformatics technology, and the expression patterns of different plant tissues, cultivars, fruit ripening stages, and exogenous abscisic acid (ABA) treatments were analyzed by transcriptome sequencing analysis and real-time quantitative PCR verification. An initial functional evaluation was carried out using recombinant the Anthocyanin O-methyltransferase Gene 5 of S. samarangense (SsAOMT5) protein.

RESULTS

Only two main compositions of anthocyanin were found in peels of two wax apple cultivars, and it was worth noting that Tub Ting Jiang cultivar contained non-methoxylated anthocyanin (Cy3G) only, whereas Daye cultivar contained both non-methoxylated and methoxylated (Pn3G) anthocyanins. A total of six SsAOMT genes were identified in the whole genome of wax apple, randomly distributing on three chromosomes. A phylogenic analysis of the protein sequences divided the SsAOMT gene family into three subgroups, and all SsAOMTs had highly conserved domains of AOMT family. In total, four types of stress- related and five types of hormone- related cis-elements were discovered in the promoter region of the . Expression pattern analysis showed that and were expressed in all tissues to varying degrees; notably, the expression of was high in the flower and fruit and significantly higher in Daye peels than those of other cultivars in the fruit ripening period. Exogenous ABA treatment significantly increased anthocyanin accumulation, but the increase of methoxylated anthocyanin content did not reach significant level compared with those without ABA treatment, whereas the expression of upregulated under ABA treatment. We identified two homologous genes from Daye cultivar () and Tub Ting Jiang cultivar (); the results of functional analyses to two SsAOMT5 recombinant proteins demonstrated that showed methylation modification activity, but did not.

CONCLUSION

In conclusion, SsAOMT5 was responsible for methylated anthocyanin accumulation in the peels of wax apple and played an important role in red coloration in wax apple peels.

摘要

引言

花青素是红皮系列莲雾果实果皮中的主要色素,其两种主要成分,即花青素和芍药色素,分别为非甲氧基化和甲氧基化花青素。花青素O - 甲基转移酶(AOMTs)是一类重要的酶,能够催化花青素甲基化,从而提高花青素的溶解度、稳定性和生物活性。尽管已在多种植物中对AOMT基因进行了研究,但它们在莲雾中的功能通常还不太清楚。

方法

采用高效液相色谱串联质谱法(HPLS - MS)测定两个莲雾品种果皮中的花青素成分。利用生物信息学技术对AOMT基因进行全基因组分析,并通过转录组测序分析和实时定量PCR验证,分析不同植物组织、品种、果实成熟阶段及外源脱落酸(ABA)处理下的表达模式。使用重组的人心果花青素O - 甲基转移酶基因5(SsAOMT5)蛋白进行初步功能评估。

结果

在两个莲雾品种的果皮中仅发现两种主要的花青素成分,值得注意的是,“土亭姜”品种仅含有非甲氧基化花青素(Cy3G),而“大叶”品种同时含有非甲氧基化和甲氧基化(Pn3G)花青素。在莲雾全基因组中总共鉴定出6个SsAOMT基因,随机分布在3条染色体上。对蛋白质序列的系统发育分析将SsAOMT基因家族分为三个亚组,所有SsAOMTs均具有AOMT家族高度保守的结构域。在其启动子区域总共发现了4种与胁迫相关和5种与激素相关的顺式作用元件。表达模式分析表明,SsAOMT1和SsAOMT2在所有组织中均有不同程度的表达;值得注意的是,SsAOMT2在花和果实中表达量较高,在果实成熟时期,“大叶”品种果皮中的表达量显著高于其他品种。外源ABA处理显著增加了花青素的积累,但与未进行ABA处理相比,甲氧基化花青素含量的增加未达到显著水平,而SsAOMT2在ABA处理下表达上调。我们从“大叶”品种(DsAOMT5)和“土亭姜”品种(TsAOMT5)中鉴定出两个同源基因;对两种SsAOMT重组蛋白的功能分析结果表明,DsAOMT5具有甲基化修饰活性,而TsAOMT5没有。

结论

总之,SsAOMT5负责莲雾果皮中甲基化花青素的积累,并在莲雾果皮红色形成中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39ec/10562569/eaeb4ef53702/fpls-14-1213642-g001.jpg

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