College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, Zhejiang 310058, China.
Department of Pomology, Faculty of Agriculture, Alexandria University, Alexandria 21545, Egypt.
Plant Physiol. 2023 Jul 3;192(3):1982-1996. doi: 10.1093/plphys/kiad168.
Malate impacts fruit acidity and plays a vital role in stress tolerance. Malate accumulation is induced by salinity in various plants as a metabolite in coping with this stress. However, the exact molecular mechanism responsible for salinity-induced malate accumulation remains unclear. Here, we determined that salinity treatment induces malate accumulation in pear (Pyrus spp.) fruit, calli, and plantlets compared to the control. Genetic and biochemical analyses established the key roles of PpWRKY44 and ABRE-BINDING FACTOR3 (PpABF3) transcription factors in promoting malate accumulation in response to salinity. We found that PpWRKY44 is involved in salinity-induced malate accumulation by directly binding to a W-box on the promoter of the malate-associated gene aluminum-activated malate transporter 9 (PpALMT9) to activate its expression. A series of in-vivo and in-vitro assays revealed that the G-box cis-element in the promoter of PpWRKY44 was targeted by PpABF3, which further enhanced salinity-induced malate accumulation. Taken together, these findings suggest that PpWRKY44 and PpABF3 play positive roles in salinity-induced malate accumulation in pears. This research provides insights into the molecular mechanism by which salinity affects malate accumulation and fruit quality.
苹果酸盐影响果实酸度,在植物的胁迫耐受中起着至关重要的作用。在各种植物中,苹果酸盐的积累是由盐胁迫诱导的,作为一种应对这种胁迫的代谢物。然而,导致盐胁迫诱导苹果酸盐积累的确切分子机制尚不清楚。在这里,我们确定盐处理诱导梨(Pyrus spp.)果实、愈伤组织和植物在盐胁迫下比对照积累更多的苹果酸盐。遗传和生化分析确立了 PpWRKY44 和 ABRE-BINDING FACTOR3(PpABF3)转录因子在促进盐响应中苹果酸盐积累方面的关键作用。我们发现 PpWRKY44 通过直接结合苹果酸盐相关基因铝激活苹果酸盐转运蛋白 9(PpALMT9)启动子上的 W-box 参与盐诱导的苹果酸盐积累,从而激活其表达。一系列体内和体外实验表明,PpWRKY44 启动子中的 G-盒顺式元件是 PpABF3 的靶标,进一步增强了盐诱导的苹果酸盐积累。总之,这些发现表明 PpWRKY44 和 PpABF3 在梨的盐诱导苹果酸盐积累中发挥积极作用。这项研究为盐胁迫影响苹果酸盐积累和果实品质的分子机制提供了新的见解。