Department of Horticultural Genetics & Biotechnology, Mediterranean Agronomic Institute at Chania, P.O. Box 85, Chania 73100, Greece.
Plant Physiol Biochem. 2012 Mar;52:112-8. doi: 10.1016/j.plaphy.2011.12.001. Epub 2011 Dec 8.
Arabinogalactan proteins (AGPs) are highly glycosylated members of the superfamily of hydroxyproline-rich glycoproteins (HRGPs). Despite their implication in many aspects of plant growth and development little is known about their role in tomato fruit ripening (Solanum lycopersicum) and their response to abiotic stress in tomato fruits. A search of the currently available tomato genome database resulted in the identification of 34 genes encoding putative AGPs, with at least 20 of them being expressed in fruit. We monitored the abundance of AGPs bound by JIM8 and JIM13 monoclonal antibodies as well as the gene expression profiles of the Lys-rich LeAGP1 and two classical AGPs, SlAGP2 and SlAGP4. The JIM8- and JIM13-bound AGPs showed constitutive expression during fruit ripening and under hypoxic conditions, slight up-regulation to mechanical wounding in excised tomato fruit pericarp discs and up-regulation under anoxia indicating functional roles for these proteins in the developmental program of ripening and in response to abiotic stresses. Moreover, the SlAGP2 mRNA was significantly up-regulated during fruit ripening following the climacteric ethylene production, a pattern of expression similar to that of tomato fruit PG. The SlAGP4 and LeAGP1 mRNAs were up-regulated in response to mechanical wounding while under anoxia only the SlAGP4 transcript was induced. The protein and mRNA levels of these AGPs were induced under mechanical wounding while only JIM8-bound AGPs and SIAGP4 expression were induced under anoxic conditions. Our results indicate that selected tomato AGPs seem to play a role in fruit ripening as well as in response to mechanical wounding and anoxia.
阿拉伯半乳聚糖蛋白(AGPs)是高度糖基化的羟脯氨酸丰富糖蛋白(HRGPs)超家族成员。尽管它们在植物生长和发育的许多方面都有涉及,但对它们在番茄果实成熟(Solanum lycopersicum)中的作用以及对番茄果实非生物胁迫的反应知之甚少。在现有的番茄基因组数据库中搜索,鉴定出 34 个编码假定 AGP 的基因,其中至少 20 个在果实中表达。我们监测了与 JIM8 和 JIM13 单克隆抗体结合的 AGP 的丰度,以及富含赖氨酸的 LeAGP1 和两个经典 AGP(SlAGP2 和 SlAGP4)的基因表达谱。JIM8 和 JIM13 结合的 AGP 在果实成熟和缺氧条件下表现出组成型表达,在切除的番茄果皮圆盘机械损伤下略有上调,在缺氧下上调,表明这些蛋白质在成熟的发育程序和对非生物胁迫的反应中具有功能作用。此外,SlAGP2 mRNA 在果实成熟过程中随着呼吸跃变乙烯的产生而显著上调,这种表达模式与番茄果实 PG 相似。SlAGP4 和 LeAGP1 mRNA 对机械损伤有上调反应,而在缺氧条件下仅 SlAGP4 转录物被诱导。这些 AGP 的蛋白和 mRNA 水平在机械损伤下被诱导,而仅在缺氧条件下 JIM8 结合的 AGP 和 SlAGP4 的表达被诱导。我们的结果表明,选定的番茄 AGP 似乎在果实成熟以及对机械损伤和缺氧的反应中发挥作用。