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番茄()果胶甲酯酶的特性:进化、同工型活性及果实成熟过程中的表达

Characterization of the Tomato () Pectin Methylesterases: Evolution, Activity of Isoforms and Expression During Fruit Ripening.

作者信息

Wen Bo, Zhang Feng, Wu Xiaozhen, Li Huan

机构信息

School of Horticulture, Anhui Agricultural University, Hefei, China.

出版信息

Front Plant Sci. 2020 Mar 3;11:238. doi: 10.3389/fpls.2020.00238. eCollection 2020.

Abstract

Pectin methylesterase (PME, EC 3.1.1.11) is a hydrolytic enzyme of pectin that plays multiple roles in different plant development processes and responses to biotic stress. To characterize the molecular evolution and functional divergence of the PME gene family, a genome-wide analysis of the PME gene family in the tomato was performed. In total, 57 non-redundant PME genes were identified, and these PME genes were divided into five groups based on their phylogeneny; their classification was supported by similar gene structures and domain distributions. The PME genes were found to be unevenly distributed among 12 chromosomes of the tomato. In addition, 11 segmental duplication and 11 tandem duplication events occurred in these PME genes, implying that both contributed to the expansion of the tomato PME gene family. Non-synonymous/synonymous mutation ratio analysis revealed that positive selection played a key role in the functional divergence of PME genes. Interspecific collinear analysis indicated a large divergence in the PME gene family after the divergence of monocot and dicot plants in ancient times. Gene expression pattern analysis suggested that PMEs plays roles in the different parts of the tomato plant, including the fruit. Three newly identified candidate genes (Solyc03g083360, Solyc07g071600, and Solyc12g098340) may have functions during fruit ripening. Immunoassays suggested that the tomato isoform PE1 and PE2 may change pectin structure at cell junctions, which could be associated with fruit softening. In addition, our analysis indicate that two undescribed PE isoforms might be active in leaves and fruits. This study increases our understanding of the PME gene family in the tomato and may facilitate further functional analyses to elucidate PME function, especially during fruit ripening.

摘要

果胶甲酯酶(PME,EC 3.1.1.11)是一种果胶水解酶,在植物不同的发育过程以及对生物胁迫的响应中发挥多种作用。为了阐明PME基因家族的分子进化和功能差异,对番茄中的PME基因家族进行了全基因组分析。共鉴定出57个非冗余PME基因,这些PME基因根据系统发育关系分为五组;它们的分类得到了相似基因结构和结构域分布的支持。发现PME基因在番茄的12条染色体上分布不均。此外,这些PME基因中发生了11次片段重复和11次串联重复事件,这表明二者都对番茄PME基因家族的扩张有贡献。非同义/同义突变率分析表明,正选择在PME基因的功能分化中起关键作用。种间共线性分析表明,在古代单子叶植物和双子叶植物分化后,PME基因家族存在很大差异。基因表达模式分析表明,PME在番茄植株的不同部位发挥作用,包括果实。三个新鉴定的候选基因(Solyc03g083360、Solyc07g071600和Solyc12g09,8340)可能在果实成熟过程中发挥作用。免疫分析表明,番茄异构体PE1和PE2可能会改变细胞连接处的果胶结构,这可能与果实软化有关。此外,我们的分析表明,两种未描述的PE异构体可能在叶片和果实中具有活性。这项研究增进了我们对番茄中PME基因家族的了解,并可能有助于进一步的功能分析,以阐明PME的功能,尤其是在果实成熟过程中的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/103e/7063471/57aead5e91d5/fpls-11-00238-g001.jpg

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