College of Horticulture and Plant Protection, Henan University of Science and Technology, Luoyang, China.
Department of Horticulture, Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Zhejiang University, Hangzhou, China.
Physiol Plant. 2021 Sep;173(1):449-459. doi: 10.1111/ppl.13294. Epub 2020 Dec 16.
Heavy metal pollution not only decreases crop yield and quality, but also affects human health via the food chain. Ubiquitination-dependent protein degradation is involved in plant growth, development, and environmental interaction, but the functions of ubiquitin-ligase (E3) genes are largely unknown in tomato (Solanum lycopersicum L.). Here, we functionally characterized a RING E3 ligase gene, SlRING1, which positively regulates cadmium (Cd) tolerance in tomato plants. An in vitro ubiquitination experiment shows that SlRING1 has E3 ubiquitin ligase activity. The determination of the subcellular localization reveals that SlRING1 is localized at both the plasma membrane and the nucleus. Overexpression of SlRING1 in tomato increased the chlorophyll content, the net photosynthetic rate, and the maximal photochemical efficiency of photosystem II (Fv/Fm), but reduced the levels of reactive oxygen species and relative electrolyte leakage under Cd stress. Moreover, SlRING1 overexpression increased the transcript levels of CATALASE (CAT), DEHYDROASCORBATE REDUCTASE (DHAR), MONODEHYDROASCORBATE REDUCTASE (MDHAR), GLUTATHIONE (GSH1), and PHYTOCHELATIN SYNTHASE (PCS), which contribute to the antioxidant and detoxification system. Crucially, SlRING1 overexpression also reduced the concentrations of Cd in both shoots and roots. Thus, SlRING1-overexpression-induced enhanced tolerance to Cd is ascribed to reduced Cd accumulation and alleviated oxidative stress. Our findings suggest that SlRING1 is a positive regulator of Cd tolerance, which can be a potential breeding target for improving heavy metal tolerance in horticultural crops.
重金属污染不仅降低了作物的产量和质量,还通过食物链影响人类健康。泛素依赖性蛋白降解参与植物的生长、发育和环境相互作用,但在番茄(Solanum lycopersicum L.)中,泛素连接酶(E3)基因的功能在很大程度上尚不清楚。在这里,我们对一个 RING E3 连接酶基因 SlRING1 进行了功能表征,该基因正向调控番茄植物对镉(Cd)的耐受性。体外泛素化实验表明 SlRING1 具有 E3 泛素连接酶活性。亚细胞定位的测定表明 SlRING1 定位于质膜和细胞核。在番茄中过表达 SlRING1 增加了叶绿素含量、净光合速率和最大光化学效率(Fv/Fm),但在 Cd 胁迫下降低了活性氧水平和相对电解质渗漏。此外,SlRING1 过表达增加了 CATALASE(CAT)、DEHYDROASCORBATE REDUCTASE(DHAR)、MONODEHYDROASCORBATE REDUCTASE(MDHAR)、GLUTATHIONE(GSH1)和 PHYTOCHELATIN SYNTHASE(PCS)的转录水平,这些都有助于抗氧化和解毒系统。至关重要的是,SlRING1 过表达还降低了地上部和根部 Cd 的浓度。因此,SlRING1 过表达诱导增强的 Cd 耐受性归因于 Cd 积累减少和氧化应激缓解。我们的研究结果表明,SlRING1 是 Cd 耐受性的正向调节剂,可作为提高园艺作物重金属耐受性的潜在育种目标。