Key Laboratory of Plant Resource Conservation and Germplasm Innovation in Mountainous Region (Ministry of Education), College of Life Sciences, Institute of Agro-bioengineering, Guizhou University, Guiyang, 550025, Guizhou Province, China.
BMC Plant Biol. 2024 Jun 12;24(1):536. doi: 10.1186/s12870-024-05267-2.
The heavy metal-associated isoprenylated plant protein (HIPP) is an important regulatory element in response to abiotic stresses, especially playing a key role in low-temperature response.
This study investigated the potential function of PavHIPP16 up-regulated in sweet cherry under cold stress by heterologous overexpression in tobacco. The results showed that the overexpression (OE) lines' growth state was better than wild type (WT), and the germination rate, root length, and fresh weight of OE lines were significantly higher than those of WT. In addition, the relative conductivity and malondialdehyde (MDA) content of the OE of tobacco under low-temperature treatment were substantially lower than those of WT. In contrast, peroxidase (POD), superoxide dismutase (SOD), catalase (CAT) activities, hydrogen peroxide (HO), proline, soluble protein, and soluble sugar contents were significantly higher than those of WT. Yeast two-hybrid assay (Y2H) and luciferase complementation assay verified the interactions between PavbHLH106 and PavHIPP16, suggesting that these two proteins co-regulated the cold tolerance mechanism in plants. The research results indicated that the transgenic lines could perform better under low-temperature stress by increasing the antioxidant enzyme activity and osmoregulatory substance content of the transgenic plants.
This study provides genetic resources for analyzing the biological functions of PavHIPPs, which is important for elucidating the mechanisms of cold resistance in sweet cherry.
重金属结合异戊烯基植物蛋白(HIPP)是应对非生物胁迫的重要调节因子,尤其在低温响应中发挥关键作用。
本研究通过在烟草中异源过表达来研究低温胁迫下甜樱桃中上调的 PavHIPP16 的潜在功能。结果表明,过表达(OE)系的生长状态优于野生型(WT),OE 系的发芽率、根长和鲜重均显著高于 WT。此外,低温处理下烟草 OE 的相对电导率和丙二醛(MDA)含量明显低于 WT。相比之下,过氧化物酶(POD)、超氧化物歧化酶(SOD)、过氧化氢酶(CAT)活性、过氧化氢(HO)、脯氨酸、可溶性蛋白和可溶性糖含量均显著高于 WT。酵母双杂交测定(Y2H)和荧光素酶互补测定验证了 PavbHLH106 和 PavHIPP16 之间的相互作用,表明这两种蛋白质共同调节植物的耐寒机制。研究结果表明,通过提高转基因植物的抗氧化酶活性和渗透调节物质含量,转基因系在低温胁迫下表现更好。
本研究为分析 PavHIPPs 的生物学功能提供了遗传资源,这对于阐明甜樱桃的抗寒机制具有重要意义。