Key Laboratory of Sugarcane Biology and Genetic Breeding, Ministry of Agriculture, Fujian Agriculture and Forestry University, Fuzhou, 350002, Fujian, China.
State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou, 350002, Fujian, China.
Sci Rep. 2017 Aug 29;7(1):9868. doi: 10.1038/s41598-017-10497-6.
The coding sequence of P3N-PIPO was cloned by fusion PCR from Sugarcane mosaic virus (SCMV), a main causal agent of sugarcane (Saccharum spp. hybrid) mosaic disease. SCMV P3N-PIPO preferentially localized to the plasma membrane (PM) compared with the plasmodesmata (PD), as demonstrated by transient expression and plasmolysis assays in the leaf epidermal cells of Nicotiana benthamiana. The subcellular localization of the P3N-PIPO mutants P3N-PIPOT1 and P3N-PIPOT2 with 29 and 63 amino acids deleted from the C-terminus of PIPO, respectively, revealed that the 19 amino acids at the N-terminus of PIPO contributed to the PD localization. Interaction assays showed that the 63 amino acids at the C-terminus of PIPO determined the P3N-PIPO interaction with PM-associated Ca-binding protein 1, ScPCaP1, which was isolated from the SCMV-susceptible sugarcane cultivar Badila. Like wild-type P3N-PIPO, P3N-PIPOT1 and P3N-PIPOT2 could translocate to neighbouring cells and recruit the SCMV cylindrical inclusion protein to the PM. Thus, interactions with ScPCaP1 may contribute to, but not determine, SCMV Pm3N-PIPO's localization to the PM or PD. These results also imply the existence of truncated P3N-PIPO in nature.
P3N-PIPO 的编码序列通过融合 PCR 从甘蔗花叶病毒(SCMV)中克隆得到,SCMV 是甘蔗(甘蔗属杂种)花叶病的主要病原体。与胞间连丝(PD)相比,SCMV P3N-PIPO 优先定位于质膜(PM),这通过在本氏烟叶片表皮细胞中的瞬时表达和质壁分离测定得到证实。从 C 端缺失 29 个和 63 个氨基酸的 P3N-PIPO 突变体 P3N-PIPOT1 和 P3N-PIPOT2 的亚细胞定位表明,PIPO N 端的 19 个氨基酸有助于 PD 定位。相互作用测定表明,PIPO C 端的 63 个氨基酸决定了 P3N-PIPO 与 PM 相关的钙结合蛋白 1(ScPCaP1)的相互作用,ScPCaP1 是从 SCMV 敏感甘蔗品种 Badila 中分离得到的。与野生型 P3N-PIPO 一样,P3N-PIPOT1 和 P3N-PIPOT2 可以转移到邻近细胞,并将 SCMV 圆柱形包涵体蛋白募集到 PM 上。因此,与 ScPCaP1 的相互作用可能有助于,但不能决定,SCMV Pm3N-PIPO 在 PM 或 PD 的定位。这些结果还暗示自然中存在截短的 P3N-PIPO。