Coconut Research Institute, Chinese Academy of Tropical Agricultural Sciences, Wenchang, Hainan 571339, PR China.
Coconut Research Institute, Chinese Academy of Tropical Agricultural Sciences, Wenchang, Hainan 571339, PR China; College of Life Sciences, Chongqing Normal University, Chongqing 401331, PR China.
Plant Sci. 2024 Jul;344:112091. doi: 10.1016/j.plantsci.2024.112091. Epub 2024 Apr 12.
Procedural abscission of outer reproductive organs during flower and fruit development occurs in most plant lineages. Undesired abscission, such as fruitlet shedding causes considerable yield loss in many fruit-producing species. Ethylene is one of the key factors regulating organ abscission. However, the participants involved in the ethylene-mediated abscission pathway remains largely unidentified. In this study, we focused on the ethylene response transcription factors (ERFs) regulating fruitlet abscission in an industrial tree species, A. catechu. A total of 165 ERF genes have been found in the A. catechu genome and eight of these showed distinct expression between the "about-to-abscise" and "non-abscised" samples. An AcERF116 gene with high expression level in the fruit abscission zone (FAZ) was selected for further study. Overexpression of the AcERF116 gene accelerated cell separation in the abscission zone (AZ) and promoted pedicel abscission in transgenic tomato lines. The PG (ploygalacturonase) activity was enhanced in the FAZs of A. catechu fruitlets during ethylene-induced fruitlet abscission, while the PME (pectin methylesterase) activity was suppressed. In addition, cytosolic alkalization was observed in the AZs during abscission in both tomato and A. catechu. Our results suggest that AcERF116 plays a critical role in the crosstalk of ethylene and fruitlet abscission in A. catechu.
在花和果实发育过程中,大多数植物谱系都会发生外部生殖器官的程序性脱落。在许多产果物种中,不希望的脱落,如小果脱落,会导致相当大的产量损失。乙烯是调节器官脱落的关键因素之一。然而,参与乙烯介导的脱落途径的参与者在很大程度上仍未被确定。在这项研究中,我们专注于调节工业树种黄檀小果脱落的乙烯反应转录因子(ERFs)。在黄檀基因组中发现了总共 165 个 ERF 基因,其中 8 个基因在“即将脱落”和“未脱落”样本之间表现出明显的表达差异。一个在果实脱落区(FAZ)表达水平较高的 AcERF116 基因被选为进一步研究的对象。过表达 AcERF116 基因加速了脱落区(AZ)的细胞分离,并促进了转基因番茄品系的花梗脱落。在乙烯诱导的小果脱落过程中,黄檀小果的 FAZ 中的 PG(聚半乳糖醛酸酶)活性增强,而 PME(果胶甲酯酶)活性受到抑制。此外,在番茄和黄檀的 AZ 中都观察到细胞质碱化。我们的研究结果表明,AcERF116 在黄檀中乙烯和小果脱落的串扰中发挥着关键作用。