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菜豆PvNPC4的非特异性磷脂酶C调节根和根瘤的发育。

The non-specific phospholipase C of common bean PvNPC4 modulates roots and nodule development.

作者信息

Pacheco Ronal, Juárez-Verdayes M A, Chávez-Martínez A I, Palacios-Martínez Janet, Leija Alfonso, Nava Noreide, Cárdenas Luis, Quinto Carmen

机构信息

Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Avenida Universidad, Colonia Chamilpa, Cuernavaca, Morelos, Mexico.

Departamento de Ciencias Básica, Universidad Autónoma Agraria Antonio Narro, Calzada Antonio Narro, Saltillo, Coahuila, Mexico.

出版信息

PLoS One. 2025 May 5;20(5):e0306505. doi: 10.1371/journal.pone.0306505. eCollection 2025.

Abstract

Plant phospholipase C (PLC) proteins are phospholipid-degrading enzymes classified into two subfamilies: phosphoinositide-specific PLCs (PI-PLCs) and non-specific PLCs (NPCs). PI-PLCs have been widely studied in various biological contexts, including responses to abiotic and biotic stresses and plant development; NPCs have been less thoroughly studied. No PLC subfamily has been characterized in relation to the symbiotic interaction between Fabaceae (legume) species and the nitrogen-fixing bacteria called rhizobia. However, lipids are reported to be crucial to this interaction, and PLCs may therefore contribute to regulating legume-rhizobia symbiosis. In this work, we functionally characterized NPC4 from common bean (Phaseolus vulgaris L.) during rhizobial symbiosis, findings evidence that NPC4 plays an important role in bean root development. The knockdown of PvNPC4 by RNA interference (RNAi) resulted in fewer and shorter primary roots and fewer lateral roots than were seen in control plants. Importantly, this phenotype seems to be related to altered auxin signaling. In the bean-rhizobia symbiosis, PvNPC4 transcript abundance increased 3 days after inoculation with Rhizobium tropici. Moreover, the number of infection threads and nodules, as well as the transcript abundance of PvEnod40, a regulatory gene of early stages of symbiosis, decreased in PvNPC4-RNAi roots. Additionally, transcript abundance of genes involved in autoregulation of nodulation (AON) was altered by PvNPC4 silencing. These results indicate that PvNPC4 is a key regulator of root and nodule development, underscoring the participation of PLC in rhizobial symbiosis.

摘要

植物磷脂酶C(PLC)蛋白是一类磷脂降解酶,分为两个亚家族:磷酸肌醇特异性磷脂酶C(PI-PLC)和非特异性磷脂酶C(NPC)。PI-PLC已在各种生物学背景中得到广泛研究,包括对非生物和生物胁迫的响应以及植物发育;而NPC的研究则相对较少。目前尚未有关于豆科(豆科植物)物种与称为根瘤菌的固氮细菌之间共生相互作用的PLC亚家族的特征描述。然而,据报道脂质对这种相互作用至关重要,因此PLC可能有助于调节豆科植物与根瘤菌的共生关系。在这项研究中,我们对菜豆(Phaseolus vulgaris L.)根瘤菌共生过程中的NPC4进行了功能鉴定,结果表明NPC4在菜豆根系发育中起重要作用。通过RNA干扰(RNAi)敲低PvNPC4导致主根数量减少、长度变短,侧根数量也比对照植株少。重要的是,这种表型似乎与生长素信号传导改变有关。在菜豆与根瘤菌的共生过程中,接种热带根瘤菌3天后,PvNPC4转录本丰度增加。此外,PvNPC4-RNAi根中感染线和根瘤的数量以及共生早期调控基因PvEnod40的转录本丰度均降低。此外,PvNPC4沉默改变了参与结瘤自动调节(AON)的基因的转录本丰度。这些结果表明,PvNPC4是根和根瘤发育的关键调节因子,强调了PLC参与根瘤菌共生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/beb6/12052164/61b4640d5969/pone.0306505.g001.jpg

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