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首页> 外文期刊>Journal of Plant Biochemistry and Biotechnology >Identification and characterization of a beta-1, 3-glucanase gene, TcLr19Glu, involved in wheat resistance against Puccinia triticina
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Identification and characterization of a beta-1, 3-glucanase gene, TcLr19Glu, involved in wheat resistance against Puccinia triticina

机译:鉴定和鉴定涉及小麦抗小麦锈病的β-1、3-葡聚糖酶基因TcLr19Glu

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beta-1,3-glucanases represent a group of pathogenesis-related proteins (PRs) that have been extensively reported to be involved in plant defense response towards fungal pathogens infection. However, it remains unknown how these genes are involved in wheat against leaf rust pathogen Puccinia triticina. Here, we present the cloning and expression analysis of a full length beta-1,3-glucanase gene, TcLr19Glu, from the near isogenic wheat line TcLr19 infected by leaf rust pathogen. TcLr19Glu encodes a 342 amino acid protein with deduced molecular weight of 34.86 kDa that contains a conserved glycoside hydrolase family 17 domain widely existing in beta-1,3-glucanases family. The expression profile of TcLr19Glu detected by quantitative real-time PCR showed that the transcript was induced by P. triticina both in the compatible and incompatible interactions, but the accumulation level of transcript was statistically significant in the incompatible interaction compared with that in the compatible interaction. Subsequently, we demonstrated that the accumulation of TcLr19Glu transcript significantly differentiates in tested wheat organs and TcLr19Glu was noticeably induced by the signaling molecules including abscisic acid (ABA) and salicylic acid (SA). Furthermore, induction and quantification of TcLr19Glu protein in compatible and incompatible interactions was measured and the amount of protein was higher in the incompatible interaction than compatible interaction. All these results allow us to conclude that TcLr19Glu is involved in the Lr19-mediated defense response against rust pathogen.
机译:β-1,3-葡聚糖酶代表一组与病程相关的蛋白(PRs),已被广泛报道其参与植物对真菌病原体感染的防御反应。但是,尚不清楚这些基因如何参与小麦的抗叶锈病病原体小麦锈菌。在这里,我们介绍了来自被叶锈病病原体感染的近等基因小麦品系TcLr19的全长β-1,3-葡聚糖酶基因TcLr19Glu的克隆和表达分析。 TcLr19Glu编码一个342个氨基酸的蛋白质,推导的分子量为34.86 kDa,其中包含一个保守的糖苷水解酶家族17结构域,广泛存在于beta-1,3-葡聚糖酶家族中。实时荧光定量PCR检测TcLr19Glu的表达谱表明,该基因是由小麦假单胞菌在相容和不相容相互作用中诱导产生的,但是在不相容相互作用中,转录本的积累水平与相容相互作用相比有统计学意义。 。随后,我们证明了TcLr19Glu转录物的积累在受试小麦器官中显着分化,并且TcLr19Glu被包括脱落酸(ABA)和水杨酸(SA)在内的信号分子明显诱导。此外,测量了TcLr19Glu蛋白在相容和不相容相互作用中的诱导和定量,在不相容相互作用中蛋白质的含量高于相容相互作用。所有这些结果使我们得出结论,TcLr19Glu参与了Lr19介导的针对锈病病原体的防御反应。

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