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Genome-wide analysis of polygalacturonase gene family from pear genome and identification of the member involved in pear softening

机译:从梨基因组聚氨酯酸盐酶基因家族的基因组分析及梨软化的成员鉴定

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Polygalacturonase (PG), as an important hydrolase participating in the degradation of pectin, plays an important role in softening process of fruit. However, information on PG gene family in pear genome and the specific member involved in fruit softening is still rudimentary. In this study, a total of 61 PG genes, which could be divided into six subclasses, were identified from the pear genome with diverse chromosome locations, gene structures, motifs and cis-acting elements. Most PbrPGs were derived from WGD/segmental duplication blocks, and purifying selection was the main driving force for their expansion. The expression profiles of PbrPGs in pear were tissue/development-stage/cultivar-dependent. During ‘Housui’ pear storage, associated with the reduction of firmness was the accumulation of PG activity. Totally, 28 PbrPGs were expressed during fruit storage, which could be classified into five categories based on different expression patterns; most demonstrated an increased trend. Of these, PbrPG6 were proposed to account for pear softening in combination of the phylogenetic and correlation analysis among firmness, PG activity and PbrPGs. By constructing the silencing vector, a higher firmness was observed in PbrPG6-silenced fruit when compared with that of the control (empty vector). In a further study, we found that the expression of PbrPG6 was regulated by postharvest 1-MCP/ethrel treatment, and several PbrERFs might function in this process. We identified 61 PbrPG genes from pear genome; of these, PbrPG6 was involved in fruit softening process; furthermore, the expression of PbrPG6 might be under the control of PbrERF. This study provides a foundation for future work aimed at elucidating the molecular mechanism underlying pear softening.
机译:作为参与果胶降解的重要水解酶的多肢乳糖酸酶(PG)在果实软化过程中起重要作用。然而,关于PG基因组的PG基因家族的信息和参与水果软化的特定成员仍然是基本的。在该研究中,通过多种染色体地点,基因结构,基序和顺式作用元件,共鉴定出总共61个PG基因,该基因可分为六个亚类。大多数PBRPGS来自WGD /节段性重复块,净化选择是其扩展的主要驱动力。 PBRPGS在梨中的表达谱是组织/发育阶段/品种依赖性。在“Housui”梨储存期间,与减少坚固性的关联是PG活性的积累。完全,在水果储存期间表达了28个PBRPG,可以根据不同的表达模式分为五类;最符合趋势的增加。其中,提出了PBRPG6,以应对所述强度,PG活性和PBRPGS之间的系统发育和相关分析的组合进行梨软化。通过构建沉默载体,与对照(空载体)相比,在PBRPG6-沉默的果实中观察到更高的坚固性。在进一步的研究中,我们发现PBRPG6的表达由前氨基5-MCP / Ethrel处理调节,并且几种PBroRF在该过程中可能起作用。我们确定了来自梨基因组的61个PBRPG基因;其中,PBRPG6参与了水果软化过程;此外,PBRPG6的表达可能在pBroRF的控制下。本研究为未来的作品提供了旨在阐明梨软化的分子机制的基础。

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