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中国白梨(Pyrus bretschneideri Rehd.)中()家族基因的分子特征、进化及表达谱分析

Molecular Characterization, Evolution, and Expression Profiling of the () Family Genes in Chinese White Pear ().

作者信息

Cheng Xi, Su Xueqiang, Muhammad Abdullah, Li Manli, Zhang Jinyun, Sun Yanming, Li Guohui, Jin Qing, Cai Yongping, Lin Yi

机构信息

School of Life Science, Anhui Agricultural University, Hefei, China.

Institute of Horticultural, Anhui Academy of Agricultural Sciences, Hefei, China.

出版信息

Front Genet. 2018 Apr 16;9:136. doi: 10.3389/fgene.2018.00136. eCollection 2018.

Abstract

Stone cells content and size are the key factors determining the internal quality of the pear fruit. Synthesis of lignin and thickening of secondary cell wall are the keys to the development of stone cells. The polymerization of monolignols and secondary cell wall formation requires the participation of dirigent proteins (DIRs). In recent years, family have been studied in higher plants, but lack of comprehensive study in the pear () family. This study focuses on the identification and analysis of family for the first time. We identified 35 s from the pear genome, 89% of which are intronless genes. Phylogenetic tree and chromosome localization analysis showed that 35 s were divided into four subfamilies (DIR-a, -b/d, -e, and -g) and irregularly distributed among 10 chromosomes. In addition, we identified 29, 26, and 14 DIRs from the other three Rosids (peach, Mei, and grape), respectively. Interspecies microsynteny analysis revealed the collinear gene pairs between pear and peach are the most. Temporal expression analysis showed that the expression changes of seven s (DIR-a subfamily: and ; DIR-b/d subfamily: ; DIR-g subfamily: ; DIR-e subfamily: and ) in fruits were consistent with the changes of fruit lignin and stone cells contents. In addition, the subfamily of s in fruits showed significant responses after treatment with ABA, SA, and MeJA. According to the protein tertiary structure, key amino acid residues and expression patterns analysis found that PbDIR4 might be involved in the metabolism of lignin and related to stone cells contents in pear fruits. In this study, we systematically analyzed the structure, evolution, function and expression of family, which not only confirmed the characteristics of family, but also laid the foundation for revealing the role of in pear stone cell development and lignin polymerization.

摘要

石细胞含量和大小是决定梨果实内在品质的关键因素。木质素的合成和次生细胞壁的加厚是石细胞发育的关键。单木质醇的聚合和次生细胞壁的形成需要导向蛋白(DIRs)的参与。近年来,该家族已在高等植物中得到研究,但在梨()家族中缺乏全面的研究。本研究首次聚焦于该家族的鉴定与分析。我们从梨基因组中鉴定出35个,其中89%为无内含子基因。系统发育树和染色体定位分析表明,35个被分为四个亚家族(DIR-a、-b/d、-e和-g),并不规则地分布在10条染色体上。此外,我们分别从其他三种蔷薇类植物(桃、梅和葡萄)中鉴定出29个、26个和14个DIRs。种间微同源性分析表明,梨和桃之间的共线基因对最多。时序表达分析表明,果实中7个(DIR-a亚家族:和;DIR-b/d亚家族:;DIR-g亚家族:;DIR-e亚家族:和)的表达变化与果实木质素和石细胞含量的变化一致。此外,果实中的亚家族在用脱落酸、水杨酸和茉莉酸甲酯处理后表现出显著反应。根据蛋白质三级结构、关键氨基酸残基和表达模式分析发现,PbDIR4可能参与梨果实中木质素的代谢并与石细胞含量有关。在本研究中,我们系统地分析了家族的结构、进化、功能和表达,这不仅证实了家族的特征,也为揭示其在梨石细胞发育和木质素聚合中的作用奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17db/5911567/c74899ad0ec1/fgene-09-00136-g001.jpg

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