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膜联蛋白和钙调节豆科植物根细胞内共生感染的启动。

Annexin- and calcium-regulated priming of legume root cells for endosymbiotic infection.

作者信息

Guillory Ambre, Fournier Joëlle, Kelner Audrey, Hobecker Karen, Auriac Marie-Christine, Frances Lisa, Delers Anaïs, Pedinotti Léa, Le Ru Aurélie, Keller Jean, Delaux Pierre-Marc, Gutjahr Caroline, Frei Dit Frey Nicolas, de Carvalho-Niebel Fernanda

机构信息

LIPME, INRAE, CNRS, Université de Toulouse, Castanet-Tolosan, France.

Max-Planck-Institute of Molecular Plant Physiology, Potsdam-Golm, Germany.

出版信息

Nat Commun. 2024 Dec 6;15(1):10639. doi: 10.1038/s41467-024-55067-3.

Abstract

Legumes establish endosymbioses with arbuscular mycorrhizal (AM) fungi or rhizobia bacteria to improve mineral nutrition. Symbionts are hosted in privileged habitats, root cortex (for AM fungi) or nodules (for rhizobia) for efficient nutrient exchange. To reach these habitats, plants form cytoplasmic cell bridges, key to predicting and guiding fungal hyphae or rhizobia-filled infection thread (IT) root entry. However, the underlying mechanisms are poorly studied. Here we show that unique ultrastructural changes and calcium (Ca) spiking signatures, closely associated with Medicago truncatula Annexin 1 (MtAnn1) accumulation, accompany rhizobia-related bridge formation. Loss of MtAnn1 function in M. truncatula affects Ca spike amplitude, cytoplasmic configuration and rhizobia infection efficiency, consistent with a role of MtAnn1 in regulating infection priming. MtAnn1, which evolved in species establishing intracellular symbioses, is also AM-symbiosis-induced and required for proper arbuscule formation. Together, we propose that MtAnn1 is part of an ancient Ca-regulatory module for transcellular endosymbiotic infection.

摘要

豆科植物与丛枝菌根(AM)真菌或根瘤菌建立共生关系以改善矿物质营养。共生体存在于特殊的生境中,即根皮层(对于AM真菌而言)或根瘤(对于根瘤菌而言),以便进行有效的养分交换。为了到达这些生境,植物形成细胞质细胞桥,这是预测和引导真菌菌丝或充满根瘤菌的感染丝(IT)进入根部的关键。然而,其潜在机制研究较少。在这里,我们表明,与蒺藜苜蓿膜联蛋白1(MtAnn1)积累密切相关的独特超微结构变化和钙(Ca)尖峰信号,伴随着与根瘤菌相关的桥的形成。蒺藜苜蓿中MtAnn1功能的丧失会影响Ca尖峰幅度、细胞质构型和根瘤菌感染效率,这与MtAnn1在调节感染引发中的作用一致。MtAnn1在建立细胞内共生的物种中进化而来,也是AM共生诱导的,并且是丛枝正常形成所必需的。我们共同提出,MtAnn1是跨细胞内共生感染的古老钙调节模块的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7f7/11621553/a600a58c2282/41467_2024_55067_Fig1_HTML.jpg

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