Han Zhaolan, Shang Xiaowen, Shao Lingxia, Wang Ya, Zhu Xujun, Fang Wanping, Ma Yuanchun
College of Horticulture, Nanjing Agricultural University, Nanjing, Jiangsu, China.
PeerJ. 2021 Jun 8;9:e11268. doi: 10.7717/peerj.11268. eCollection 2021.
MYB proteins are a large group of transcription factors. The overexpression of MYB genes has been reported to improve abiotic stress tolerance in plant. However, due to the variety of plant species studied and the types of gene donors/recipients, along with different experimental conditions, it is difficult to interpret the roles of MYB in abiotic stress tolerance from published data.
Using meta-analysis approach, we investigated the plant characteristics involved in cold, drought, and salt stress in MYB-overexpressing plants and analyzed the degrees of influence on plant performance by experimental variables.
The results show that two of the four measured plant parameters in cold-stressed plants, two of the six in drought-stressed, and four of the 13 in salt-stressed were significantly impacted by MYB overexpression by 22% or more, and the treatment medium, donor/recipient species, and donor type significantly influence the effects of MYB-overexpression on drought stress tolerance. Also, the donor/recipient species, donor type, and stress duration all significantly affected the extent of MYB-mediated salt stress tolerance. In summary, this study compiles and analyzes the data across studies to help us understand the complex interactions that dictate the efficacy of heterologous MYB expression designed for improved abiotic stress tolerance in plants.
MYB蛋白是一大类转录因子。据报道,MYB基因的过表达可提高植物对非生物胁迫的耐受性。然而,由于所研究的植物物种种类繁多、基因供体/受体类型各异,以及实验条件不同,很难从已发表的数据中解读MYB在非生物胁迫耐受性中的作用。
我们采用荟萃分析方法,研究了过表达MYB的植物在冷、旱和盐胁迫下的植物特性,并分析了实验变量对植物性能的影响程度。
结果表明,在冷胁迫植物中,所测的四个植物参数中的两个、干旱胁迫植物中六个中的两个以及盐胁迫植物中13个中的四个受到MYB过表达的显著影响,影响程度达22%或更高,并且处理培养基、供体/受体物种和供体类型显著影响MYB过表达对干旱胁迫耐受性的作用。此外,供体/受体物种、供体类型和胁迫持续时间均显著影响MYB介导的盐胁迫耐受性程度。总之,本研究汇总并分析了各项研究的数据,以帮助我们理解那些决定为提高植物非生物胁迫耐受性而设计的异源MYB表达效果的复杂相互作用。