Many plants interact symbiotically with arbuscular mycorrhizal fungi to enhance inorganic phosphorus uptake, and legumes also develop a nodule symbiosis with rhizobia for nitrogen acquisition. The establishment and functioning of both symbioses rely on a common plant signaling pathway activated by structurally related Myc and Nod factors. Recently, a SPARK receptor-like kinase (RLK)/receptor-like cytoplasmic kinase (RLCK) complex was shown to be essential for arbuscular mycorrhiza formation in both monocot and dicot plants. Here, we show that in Aeschynomene legumes, the RLCK component of this receptor complex has undergone a gene duplication event and mediates a unique nodule symbiosis that is independent of rhizobial Nod factors. In Aeschynomene evenia, AeRLCK2 is crucial for nodule initiation but not for arbuscular mycorrhiza symbiosis. Additionally, AeRLCK2 physically interacts with and is phosphorylated by the cysteine-rich RLK, AeCRK, which is also required for nodulation. This finding uncovers an important molecular mechanism that controls the establishment of nodulation and is associated with Nod-independent symbiosis.
The receptor-like cytoplasmic kinase AeRLCK2 mediates Nod-independent rhizobial symbiosis in Aeschynomene legumes.
受体样细胞质激酶 AeRLCK2 介导合萌豆属豆科植物中不依赖于 Nod 的根瘤菌共生
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作者:Araújo Natasha Horta, Landry David, Quilbé Johan, Pervent Marjorie, Nouwen Nico, Klopp Christophe, Cullimore Julie, Gully Djamel, Vicedo Céline, Gasciolli Virginie, Brottier Laurent, Pichereaux Carole, Racoupeau Martin, Rios Maëlle, Gressent Frédéric, Chaintreuil Clémence, Gough Clare, Giraud Eric, Lefebvre Benoit, Arrighi Jean-François
| 期刊: | Plant Cell | 影响因子: | 11.600 |
| 时间: | 2025 | 起止号: | 2025 Aug 4; 37(8):koaf201 |
| doi: | 10.1093/plcell/koaf201 | 研究方向: | 细胞生物学 |
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