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Loss of VPS9b enhances vps9a-2 phenotypes

机译:VPS9B的丧失增强VPS9A-2表型

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Plant innate immunity enables plants to defend themselves against infectious pathogens. While membrane trafficking and release of exosomes are considered vital for correct execution of innate immunity, the mechanisms behind remain elusive. Recently, we have shown that VPS9a, the general guanine-nucleotide exchange factor activating Rab5 GTPases, is required for both pre- and post-invasive immunity against powdery mildew fungi in Arabidopsis thaliana. Yet, the Arabidopsis genome contains a close homologue of VPS9a, which potentially plays specific roles in innate immunity. Here we show that this gene, VPS9b, while weakly expressed, contributes to regulating development and disease resistance, which is predominantly regulated by VPS9a. Based on these observations, we suggest that VPS9b has no specialized functionality, but rather is becoming a non-expressed pseudogene.
机译:植物天生免疫使植物能够防御抗病病原体。 虽然膜贩运和释放外来体被认为是对正确执行先天免疫力的至关重要,但仍然难以捉摸的机制。 最近,我们已经表明,vps9a,普通鸟嘌呤核苷酸交换因子激活Rab5 GTP酶,对于拟南芥粉末状霉菌的粉末状霉菌的前后免疫需要。 然而,拟南芥基因组含有vps9a的密切同源物,这可能在先天免疫中发挥特定作用。 在这里,我们显示该基因,VPS9B,同时弱表达,有助于调节发育和抗病性,这主要由VPS9A调节。 基于这些观察,我们建议vps9b没有专门的功能,而是成为非表达的伪基因。

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