State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Zhejiang-Malaysia Joint Research Laboratory for Agricultural Product Processing and Nutrition, College of Food and Pharmaceutical Sciences, Ningbo University, Ningbo, 315800, China.
State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Zhejiang-Malaysia Joint Research Laboratory for Agricultural Product Processing and Nutrition, College of Food and Pharmaceutical Sciences, Ningbo University, Ningbo, 315800, China.
Plant Physiol Biochem. 2023 Sep;202:107972. doi: 10.1016/j.plaphy.2023.107972. Epub 2023 Aug 16.
Brassinosteroids (BRs) are phytohormones that play numerous roles in a plant's response to environmental stress. While BES/BZR transcription factors are essential components in BR signaling, their role in regulating postharvest fruit responses to cold stress is largely unknown. In this study, the application of 24-epibrassinolide (EBR) to peaches alleviated chilling injury (CI) during postharvest cold storage. We further characterized a key BES/BZR gene, PpBZR1, which regulates peach cold resistance. Transient expression PpBZR1 in peaches showed that PpBZR1 inhibits PpVIN2 expression and VIN activity, resulting in an elevated level of sucrose, which protects fruit from CI. Arabidopsis thaliana expressing PpBZR1 that had a high germination and seedling survival rate at low temperatures, which may be due to higher level of sucrose and lower oxidative damage. Mechanistically, we confirmed that PpBZR1 directly binds to the PpVIN2 promoter and functions as a negative regulator for sucrose metabolism. In addition, PpCBF1/5/6 were induced by EBR treatment and AtCBFs were upregulated in PpBZR1 transgenic Arabidopsis thaliana. Combined with previous findings, we hypothesize that PpBZR1 regulates PpVIN2 and may also be mediated by CBF. In conclusion, PpBZR1 expression is induced by EBR treatment during cold storage, which futher inhibite sucrose degradation gene PpVIN2 transcription via direct binding its promoter and indirectly regulating PpVIN2, resulting in slower sucrose degradation and higher chilling tolerance of peach.
油菜素内酯(BRs)是植物对环境胁迫反应中发挥多种作用的植物激素。BES/BZR 转录因子是 BR 信号转导的重要组成部分,但它们在调节采后果实对冷胁迫的反应中的作用在很大程度上是未知的。在这项研究中,24-表油菜素内酯(EBR)的应用缓解了桃采后冷藏过程中的冷害(CI)。我们进一步研究了一个关键的 BES/BZR 基因 PpBZR1,它调节桃的抗寒性。在桃中瞬时表达 PpBZR1 表明,PpBZR1 抑制 PpVIN2 的表达和 VIN 活性,导致蔗糖水平升高,从而保护果实免受 CI 的影响。拟南芥表达 PpBZR1 可在低温下提高发芽率和幼苗存活率,这可能是由于蔗糖水平较高和氧化损伤较低。从机制上讲,我们证实 PpBZR1 直接结合 PpVIN2 启动子,并作为蔗糖代谢的负调节剂发挥作用。此外,EBR 处理诱导 PpCBF1/5/6,且 PpBZR1 转基因拟南芥中 AtCBFs 上调。结合以前的发现,我们假设 PpBZR1 调节 PpVIN2,也可能通过 CBF 介导。总之,在冷藏过程中,EBR 处理诱导 PpBZR1 表达,通过直接结合其启动子进一步抑制蔗糖降解基因 PpVIN2 的转录,并间接调节 PpVIN2,导致蔗糖降解速度减慢,桃的耐寒性提高。