Department of Horticultural Sciences, Faculty of Agriculture, University of Tabriz, Tabriz, Iran.
Department of Plant Biotechnology, National Institute of Genetic Engineering and Biotechnology (NIGEB), Tehran, Iran.
Sci Rep. 2023 Feb 3;13(1):1968. doi: 10.1038/s41598-023-29059-0.
The long juvenile period of fruit trees makes their breeding costly and time-consuming. Therefore, flowering time engineering and shortening the juvenile phase have become a breeding priority for the genetic improvement of fruit tree crops. Many economically valuable fruit trees belong to the Rosaceae family including apples and strawberries. TEMPRANILLO (TEM) acts as a key player in flowering time control through inhibiting FT function. Two genes with high sequence similarity with the Arabidopsis TEM genes were isolated from apple (Malus domestica). Due to the complexity of carrying out functional studies in apple, we characterized their function in woodland strawberry as well as their expression in apple. The expression of MdTEM genes in apple tissues from juvenile plants was dramatically higher than that in the tissues from adult trees. In woodland strawberry, the overexpression of MdTEM genes down-regulated FvFT1, FvGA3OX1, and FvGA3OX2 genes in strawberry. The MdTEM-overexpressing lines exhibited delayed flowering, in terms of days to flowering and the number of leaves at flowering. While, RNAi-mediated silencing of TEM resulted in five days earlier flowering, with a lower number of leaves, a higher trichome density, and in some cases, caused in vitro flowering. According to these results and in silico analyses, it can be concluded that MdTEM1 and MdTEM2 can be considered as orthologs of FvTEM and probably AtTEM genes, which play an important role in regulating the juvenile phase and flowering time through regulating FT and GA biosynthetic pathway.
果树的幼年期较长,使其繁殖既昂贵又耗时。因此,开花时间工程和缩短幼年期已成为果树遗传改良的一个优先事项。许多具有经济价值的果树属于蔷薇科,包括苹果和草莓。TEMPRANILLO(TEM)通过抑制 FT 功能成为开花时间控制的关键因素。从苹果(Malus domestica)中分离出两个与拟南芥 TEM 基因具有高度序列相似性的基因。由于在苹果中进行功能研究的复杂性,我们在林地草莓中对其功能进行了描述,并在苹果中研究了它们的表达情况。在幼龄植株的苹果组织中,MdTEM 基因的表达显著高于成年树的组织。在林地草莓中,MdTEM 基因的过表达下调了 FvFT1、FvGA3OX1 和 FvGA3OX2 基因的表达。MdTEM 过表达系表现出开花时间延迟,表现在开花天数和开花时的叶片数上。而 TEM 的 RNAi 介导沉默导致开花提前了五天,叶片数减少,毛状体密度增加,在某些情况下,导致体外开花。根据这些结果和计算机分析,可以得出结论,MdTEM1 和 MdTEM2 可以被认为是 FvTEM 和 AtTEM 基因的同源物,它们通过调节 FT 和 GA 生物合成途径在调节幼年期和开花时间方面发挥重要作用。