Instituto de Biología Molecular y Celular de Plantas (UPV-CSIC), Universitat Politècnica de València, Ingeniero Fausto Elio s/n, 46011, Valencia, Spain.
Centro de Investigación en Biotecnología Agroalimentaria (BITAL). Universidad de Almería, 04120-Almería, Spain.
Plant Sci. 2021 Jan;302:110721. doi: 10.1016/j.plantsci.2020.110721. Epub 2020 Oct 16.
The screening of 862 T-DNA lines was carried out to approach the genetic dissection of indirect adventitious organogenesis in tomato. Several mutants defective in different phases of adventitious organogenesis, namely callus growth (tdc-1), bud differentiation (tdb-1, -2, -3) and shoot-bud development (tds-1) were identified and characterized. The alteration of the TDC-1 gene blocked callus proliferation depending on the composition of growth regulators in the culture medium. Calli from tds-1 explants differentiated buds but did not develop normal shoots. Histological analysis showed that their abnormal development is due to failure in the organization of normal adventitious shoot meristems. Interestingly, tdc-1 and tds-1 mutant plants were indistinguishable from WT ones, indicating that the respective altered genes play specific roles in cell proliferation from explant cut zones (TDC-1 gene) or in the organization of adventitious shoot meristems (TDS-1 gene). Unlike the previous, plants of the three mutants defective in the differentiation of adventitious shoot-buds (tdb-1, -2, -3) showed multiple changes in vegetative and reproductive traits. Cosegregation analyses revealed the existence of an association between the phenotype of the tdb-3 mutant and a T-DNA insert, which led to the discovery that the SlMAPKKK17 gene is involved in the shoot-bud differentiation process.
对 862 个 T-DNA 系进行了筛选,以探讨番茄间接不定器官发生的遗传解析。鉴定并表征了几个在不定器官发生的不同阶段有缺陷的突变体,即愈伤组织生长(tdc-1)、芽分化(tdb-1、-2、-3)和芽发育(tds-1)。TDC-1 基因的改变根据培养基中生长调节剂的组成阻止愈伤组织增殖。来自 tds-1 外植体的愈伤组织分化出芽,但不能发育出正常的芽。组织学分析表明,它们的异常发育是由于正常不定芽分生组织的组织失败。有趣的是,tdc-1 和 tds-1 突变体植物与 WT 植物无法区分,表明各自改变的基因在从外植体切割区的细胞增殖(TDC-1 基因)或不定芽分生组织的组织(TDS-1 基因)中发挥特定作用。与之前的不同,在不定芽发育缺陷的三个突变体(tdb-1、-2、-3)的植物中,表现出多种营养和生殖性状的变化。共分离分析表明,tdb-3 突变体的表型与 T-DNA 插入之间存在关联,这导致发现 SlMAPKKK17 基因参与芽分化过程。