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阐明多聚半乳糖醛酸酶基因在草莓果实软化中的作用。

Elucidating the role of polygalacturonase genes in strawberry fruit softening.

作者信息

Paniagua Candelas, Ric-Varas Pablo, García-Gago Juan A, López-Casado Gloria, Blanco-Portales Rosario, Muñoz-Blanco Juan, Schückel Julia, Knox J Paul, Matas Antonio J, Quesada Miguel A, Posé Sara, Mercado José A

机构信息

Instituto de Hortofruticultura Subtropical y Mediterránea 'La Mayora' (IHSM-UMA-CSIC), Departamento de Botánica y Fisiología Vegetal, Universidad de Málaga, Málaga, Spain.

Departamento de Bioquímica y Biología Molecular, Universidad de Córdoba, Córdoba, Spain.

出版信息

J Exp Bot. 2020 Dec 31;71(22):7103-7117. doi: 10.1093/jxb/eraa398.

Abstract

To disentangle the role of polygalacturonase (PG) genes in strawberry softening, the two PG genes most expressed in ripe receptacles, FaPG1 and FaPG2, were down-regulated. Transgenic ripe fruits were firmer than those of the wild type when PG genes were silenced individually. Simultaneous silencing of both PG genes by transgene stacking did not result in an additional increase in firmness. Cell walls from ripe fruits were characterized by a carbohydrate microarray. Higher signals of homogalacturonan and rhamnogalacturonan I pectin epitopes in polysaccharide fractions tightly bound to the cell wall were observed in the transgenic genotypes, suggesting a lower pectin solubilization. At the transcriptomic level, the suppression of FaPG1 or FaPG2 alone induced few transcriptomic changes in the ripe receptacle, but the amount of differentially expressed genes increased notably when both genes were silenced. Many genes encoding cell wall-modifying enzymes were down-regulated. The expression of a putative high affinity potassium transporter was induced in all transgenic genotypes, indicating that cell wall weakening and loss of cell turgor could be linked. These results suggest that, besides the disassembly of pectins tightly linked to the cell wall, PGs could play other roles in strawberry softening, such as the release of oligogalacturonides exerting a positive feedback in softening.

摘要

为了厘清多聚半乳糖醛酸酶(PG)基因在草莓软化过程中的作用,对在成熟花托中表达量最高的两个PG基因FaPG1和FaPG2进行了下调。当PG基因单独沉默时,转基因成熟果实比野生型果实更硬。通过转基因叠加同时沉默两个PG基因并没有使果实硬度进一步增加。利用碳水化合物微阵列对成熟果实的细胞壁进行了表征。在转基因基因型中,观察到与细胞壁紧密结合的多糖组分中同型半乳糖醛酸和鼠李糖半乳糖醛酸I果胶表位的信号更高,这表明果胶的溶解程度较低。在转录组水平上,单独抑制FaPG1或FaPG2在成熟花托中引起的转录组变化很少,但当两个基因都被沉默时,差异表达基因的数量显著增加。许多编码细胞壁修饰酶的基因被下调。在所有转基因基因型中,一个假定的高亲和力钾转运体的表达被诱导,这表明细胞壁弱化和细胞膨压丧失可能有关联。这些结果表明,除了与细胞壁紧密相连的果胶的分解外,PGs在草莓软化过程中可能还发挥其他作用,例如释放寡聚半乳糖醛酸,在软化过程中发挥正反馈作用。

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