State Key Laboratory of Hybrid Rice, Hubei Hongshan Laboratory, College of Life Sciences, Wuhan University, Wuhan, China.
State Key Laboratory of Wheat Breeding, College of Agronomy, Shandong Agricultural University, Tai'an, China.
Plant Biotechnol J. 2024 Aug;22(8):2186-2200. doi: 10.1111/pbi.14338. Epub 2024 Apr 8.
The clade III subfamily of OsSWEETs includes transmembrane proteins necessary for susceptibility to bacterial blight (BB). These genes are targeted by the specific transcription activator-like effector (TALE) of Xanthomonas oryzae pv. oryzae and mediate sucrose efflux for bacterial proliferation. However, the mechanism through which OsSWEETs regulate rice immunity has not been fully elucidated. Here, we demonstrated that the cytosolic carboxyl terminus of OsSWEET11a/Xa13 is required for complementing susceptibility to PXO99 in IRBB13 (xa13/xa13). Interestingly, the C-terminus of ZmXa13, the maize homologue of OsSWEET11a/Xa13, could perfectly substitute for the C-terminus of OsSWEET11a/Xa13. Furthermore, OsSWEET11a/Xa13 interacted with the high-mobility group B1 (OsHMGB1) protein and the small heat shock-like protein OsHsp20L through the same regions in the C-terminus. Consistent with the physical interactions, knockdown or knockout of either OsHMGB1 or OsHsp20L caused an enhanced PXO99-resistant phenotype similar to that of OsSWEET11a/OsXa13. Surprisingly, the plants in which OsHMGB1 or OsHsp20L was repressed developed increased resistance to PXO86, PXO61 and YN24, which carry TALEs targeting OsSWEET14/Xa41 or OsSWEET11a/Xa13. Additionally, OsHsp20L can interact with all six members of clade III OsSWEETs, whereas OsHMGB1 can interact with five other members in addition to OsSWEET12. Overall, we revealed that OsHMGB1 and OsHsp20L mediate conserved BB susceptibility by interacting with clade III OsSWEETs, which are candidates for breeding broad-spectrum disease-resistant rice.
III 组 OsSWEET 亚家族包括对细菌性条斑病(BB)易感性所必需的跨膜蛋白。这些基因是由水稻白叶枯病菌(Xanthomonas oryzae pv. oryzae)的特异转录激活子样效应物(TALE)靶向的,并介导蔗糖外排以促进细菌增殖。然而,OsSWEET 调节水稻免疫的机制尚未完全阐明。在这里,我们证明了 OsSWEET11a/Xa13 的细胞质羧基末端对于在 IRBB13(xa13/xa13)中补充对 PXO99 的敏感性是必需的。有趣的是,ZmXa13 的 C 末端,即 OsSWEET11a/Xa13 的玉米同源物,可以完美替代 OsSWEET11a/Xa13 的 C 末端。此外,OsSWEET11a/Xa13 通过 C 末端的相同区域与高迁移率族 B1(OsHMGB1)蛋白和小热休克样蛋白 OsHsp20L 相互作用。与物理相互作用一致,OsHMGB1 或 OsHsp20L 的敲低或敲除导致类似于 OsSWEET11a/OsXa13 的增强的 PXO99 抗性表型。令人惊讶的是,OsHMGB1 或 OsHsp20L 被抑制的植物对 PXO86、PXO61 和 YN24 表现出增加的抗性,这三种细菌携带靶向 OsSWEET14/Xa41 或 OsSWEET11a/Xa13 的 TALEs。此外,OsHsp20L 可以与 III 组的所有 6 个 OsSWEET 成员相互作用,而 OsHMGB1 除了与 OsSWEET12 相互作用之外,还可以与另外 5 个成员相互作用。总体而言,我们揭示了 OsHMGB1 和 OsHsp20L 通过与 III 组 OsSWEET 相互作用来介导保守的 BB 易感性,OsSWEET 是培育广谱抗病水稻的候选基因。