Institute of Food Crops, Hubei Academy of Agricultural Sciences/Hubei Key Laboratory of Food Crop Germplasm and Genetic, Wuhan, China.
Shanghai Agro-Biological Gene Center, Shanghai, China.
Sci Rep. 2021 Dec 9;11(1):23725. doi: 10.1038/s41598-021-03178-y.
Adzuki bean is an important legume crop due to its high-quality protein, fiber, vitamins, minerals as well as rich bioactive substances. However, it is vulnerable to drought at the germination stage. However, little information is available about the genetic control of drought tolerance during seed germination in adzuki bean. In this study, some differential expression proteins (DEPs) were identified during seed germination between the drought-tolerant variety 17235 and drought-sensitive variety 17033 in adzuki bean using iTRAQ method. A total of 2834 proteins were identified in the germinating seeds of these two adzuki beans. Compared with the variety 17033, 87 and 80 DEPs were increased and decreased accumulation in variety 17235 under drought, respectively. Meanwhile, in the control group, a few DEPs, including 9 up-regulated and 21 down-regulated proteins, were detected in variety 17235, respectively. GO, KEGG, and PPI analysis revealed that the DEPs related to carbohydrate metabolism and energy production were significantly increased in response to drought stresses. To validate the proteomic function, the ectopic overexpression of V-ATPase in tobacco was performed and the result showed that V-ATPase upregulation could enhance the drought tolerance of tobacco. The results provide valuable insights into genetic response to drought stress in adzuki bean, and the DEPs could be applied to develop biomarkers related to drought tolerant in adzuki bean breeding projects.
小豆是一种重要的豆类作物,因其高质量的蛋白质、纤维、维生素、矿物质以及丰富的生物活性物质而受到重视。然而,它在萌发阶段对干旱较为敏感。但是,关于小豆萌发过程中抗旱性的遗传控制,相关信息还很有限。在本研究中,我们采用 iTRAQ 方法,在小豆的耐旱品种 17235 和干旱敏感品种 17033 之间,鉴定了在种子萌发过程中一些差异表达蛋白(DEPs)。在这两个小豆的萌发种子中共鉴定出 2834 种蛋白质。与品种 17033 相比,在干旱胁迫下,品种 17235 中分别有 87 和 80 个 DEPs 增加和减少积累。同时,在对照组中,品种 17235 中检测到少数 DEPs,包括 9 个上调和 21 个下调蛋白。GO、KEGG 和 PPI 分析表明,与碳水化合物代谢和能量产生相关的 DEPs 显著增加,以响应干旱胁迫。为了验证蛋白质组学功能,在烟草中进行了 V-ATPase 的异位过表达,结果表明 V-ATPase 的上调可以增强烟草的抗旱性。研究结果为小豆对干旱胁迫的遗传响应提供了有价值的见解,这些 DEPs 可应用于小豆抗旱性相关的生物标志物的开发。