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双孢蘑菇小型分泌效应蛋白 MiSSP7.6 对建立外生菌根共生关系至关重要。

The small secreted effector protein MiSSP7.6 of Laccaria bicolor is required for the establishment of ectomycorrhizal symbiosis.

机构信息

College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China.

University of Lorraine, Institut National de la Recherche Agronomique, UMR Interactions Arbres/Microorganismes, Laboratoire d'Excellence ARBRE, Centre INRA-Grand Est, Champenoux, France.

出版信息

Environ Microbiol. 2020 Apr;22(4):1435-1446. doi: 10.1111/1462-2920.14959. Epub 2020 Mar 2.

Abstract

To establish and maintain a symbiotic relationship, the ectomycorrhizal fungus Laccaria bicolor releases mycorrhiza-induced small secreted proteins (MiSSPs) into host roots. Here, we have functionally characterized the MYCORRHIZA-iNDUCED SMALL SECRETED PROTEIN OF 7.6 kDa (MiSSP7.6) from L. bicolor by assessing its induced expression in ectomycorrhizae, silencing its expression by RNAi, and tracking in planta subcellular localization of its protein product. We also carried out yeast two-hybrid assays and bimolecular fluorescence complementation analysis to identify possible protein targets of the MiSSP7.6 effector in Populus roots. We showed that MiSSP7.6 expression is upregulated in ectomycorrhizal rootlets and associated extramatrical mycelium during the late stage of symbiosis development. RNAi mutants with a decreased MiSSP7.6 expression have a lower mycorrhization rate, suggesting a key role in the establishment of the symbiosis with plants. MiSSP7.6 is secreted, and it localizes both to the nuclei and cytoplasm in plant cells. MiSSP7.6 protein was shown to interact with two Populus Trihelix transcription factors. Furthermore, when coexpressed with one of the Trihelix transcription factors, MiSSP7.6 is localized to plant nuclei only. Our data suggest that MiSSP7.6 is a novel secreted symbiotic effector and is a potential determinant for ectomycorrhiza formation.

摘要

为了建立和维持共生关系,外生菌根真菌双色蜡蘑会将菌根诱导的小分泌蛋白(MiSSP)释放到宿主根系中。在这里,我们通过评估 MiSSP7.6 在共生中的诱导表达、通过 RNAi 沉默其表达以及追踪其蛋白产物在植物体内的亚细胞定位,对其进行了功能表征。我们还进行了酵母双杂交实验和双分子荧光互补分析,以鉴定 MiSSP7.6 效应物在杨树根系中的可能蛋白靶标。结果表明,MiSSP7.6 的表达在共生发育后期的外生菌根根毛和相关的外生菌丝中上调。MiSSP7.6 表达降低的 RNAi 突变体的菌根化率较低,表明其在与植物建立共生关系方面发挥关键作用。MiSSP7.6 是分泌蛋白,它在植物细胞中定位于细胞核和细胞质。研究表明 MiSSP7.6 蛋白与两个杨树 Trihelix 转录因子相互作用。此外,当与其中一个 Trihelix 转录因子共表达时,MiSSP7.6 仅定位于植物细胞核。我们的数据表明,MiSSP7.6 是一种新型的分泌共生效应物,是外生菌根形成的潜在决定因素。

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