Yuan Fang, Leng Bingying, Zhang Haonan, Wang Xi, Han Guoliang, Wang Baoshan
Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Ji'nan, China.
Maize Research Institute, Shandong Academy of Agricultural Sciences, Jinan, China.
Front Plant Sci. 2019 Nov 12;10:1456. doi: 10.3389/fpls.2019.01456. eCollection 2019.
The WD40-repeat protein () controls epidermis development, playing opposite roles in trichome differentiation and root hair formation. We isolated and characterized (encoding a WD40-repeat protein with high sequence similarity to TTG1) from the recretohalophyte , which actively excretes absorbed salt a salt gland. The complete open reading frame of was 1,095 bp, encoding a protein of 364 amino acids, and showed highest expression during the salt gland initiation stage. We heterologously expressed in wild type and plants to verify the protein's function, and the copies of LbTTG1 were identified in transgenic strains using southern blotting. Trichomes were extremely induced on the first true leaves of plants heterologously expressing , whereas no trichomes were produced by plants. Conversely, plants heterologously expressing produced fewer root hairs than plants. In plants heterologously expressing LbTTG1 compared to controls, epidermis differentiation genes ( and ) were up-regulated while genes encoding negative regulators of trichome development ( and ) were down-regulated. Under increased NaCl concentrations, both of the transgenic lines showed enhanced germination and root length, and accumulated less malondialdehyde (MDA) and Na and produced more proline, soluble sugar, and higher glutathione S-transferase activity, compared with the mutant. These results indicate that LbTTG1 participates in epidermis development in , similarly to other WD40-repeat proteins, and specifically increases salt tolerance of transgenic by reducing ion accumulation and increasing osmolyte levels.
WD40重复蛋白()控制表皮发育,在毛状体分化和根毛形成中发挥相反作用。我们从泌盐盐生植物中分离并鉴定了(编码一种与TTG1具有高度序列相似性的WD40重复蛋白),该植物通过盐腺主动分泌吸收的盐分。的完整开放阅读框为1095 bp,编码一个364个氨基酸的蛋白质,在盐腺起始阶段表达最高。我们在野生型和植物中异源表达以验证该蛋白的功能,并使用Southern印迹法在转基因菌株中鉴定LbTTG1的拷贝数。在异源表达的植物的第一片真叶上毛状体极度诱导,而植物不产生毛状体。相反,异源表达的植物比植物产生的根毛更少。与对照相比,在异源表达LbTTG1的植物中,表皮分化基因(和)上调,而编码毛状体发育负调控因子的基因(和)下调。在增加的NaCl浓度下,与突变体相比,两个转基因株系均表现出增强的发芽率和根长,积累较少的丙二醛(MDA)和Na,并产生更多的脯氨酸、可溶性糖和更高的谷胱甘肽S-转移酶活性。这些结果表明,LbTTG1与其他WD40重复蛋白类似,参与了的表皮发育,并通过减少离子积累和增加渗透调节物质水平来特异性提高转基因的耐盐性。