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FaBG3 在草莓果实成熟和灰霉病菌侵染中的作用。

The role of FaBG3 in fruit ripening and B. cinerea fungal infection of strawberry.

机构信息

College of Agronomy and Biotechnology, China Agricultural University, Beijing, 100193, China.

出版信息

Plant J. 2013 Oct;76(1):24-35. doi: 10.1111/tpj.12272. Epub 2013 Aug 3.

Abstract

In plants, β-glucosidases (BG) have been implicated in developmental and pathogen defense, and are thought to take part in abscisic acid (ABA) synthesis via hydrolysis of ABA glucose ester to release active ABA; however, there is no genetic evidence for the role of BG genes in ripening and biotic/abiotic stress in fruits. To clarify the role of BG genes in fruit, eight Fa/FvBG genes encoding β-glucosidase were isolated using information from the GenBank strawberry nucleotide database. Of the Fa/FvBG genes examined, expression of FaBG3 was the highest, showing peaks at the mature stage, coincident with the changes observed in ABA content. To verify the role of this gene, we suppressed the expression of FaBG3 via inoculation with Agrobacterium tumefaciens containing tobacco rattle virus carrying a FaBG3 fragment (RNAi). The expression of FaBG3 in FaBG3-RNAi-treated fruit was markedly reduced, and the ABA content was lower than that of the control. FaBG3-RNAi-treated fruit did not exhibit full ripening, and were firmer, had lower sugar content, and were pale compared with the control due to down-regulation of ripening-related genes. FaBG3-RNAi-treated fruit with reduced ABA levels were much more resistant to Botrytis cinerea fungus but were more sensitive to dehydration stress than control fruit. These results indicate that FaBG3 may play key roles in fruit ripening, dehydration stress and B. cinerea fungal infection in strawberries via modulation of ABA homeostasis and transcriptional regulation of ripening-related genes.

摘要

在植物中,β-葡萄糖苷酶(BG)被认为参与了发育和病原体防御,并通过水解 ABA 葡萄糖酯来释放活性 ABA,从而参与到脱落酸(ABA)的合成中;然而,BG 基因在果实成熟和生物/非生物胁迫中的作用还没有遗传证据。为了阐明 BG 基因在果实中的作用,我们利用 GenBank 草莓核苷酸数据库中的信息,分离了 8 个编码β-葡萄糖苷酶的 Fa/FvBG 基因。在所研究的 Fa/FvBG 基因中,FaBG3 的表达水平最高,在成熟阶段达到峰值,与 ABA 含量的变化一致。为了验证该基因的作用,我们通过接种携带 FaBG3 片段的烟草脆裂病毒的农杆菌来抑制 FaBG3 的表达(RNAi)。在 FaBG3-RNAi 处理的果实中,FaBG3 的表达明显降低,ABA 含量低于对照。FaBG3-RNAi 处理的果实没有完全成熟,与对照相比,果实更硬,含糖量更低,颜色更淡,这是由于与成熟相关的基因下调。由于 ABA 水平降低,FaBG3-RNAi 处理的果实对 Botrytis cinerea 真菌的抗性更强,但对脱水胁迫的敏感性比对照果实更强。这些结果表明,FaBG3 可能通过调节 ABA 平衡和成熟相关基因的转录调控,在草莓果实成熟、脱水胁迫和 B. cinerea 真菌感染中发挥关键作用。

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