Institute of Integrative Plant Biology, School of Life Sciences, Jiangsu Normal University, Xuzhou, 221116, Jiangsu Province, China.
Jiangsu Key Laboratory of Phylogenomics & Comparative Genomics, School of Life Sciences, Jiangsu Normal University, Xuzhou, 221116, Jiangsu Province, China.
BMC Plant Biol. 2022 May 6;22(1):232. doi: 10.1186/s12870-022-03618-5.
The plant-specific GRAS transcription factors play pivotal roles in various adverse environmental conditions. Numerous GRAS genes have been explored and characterized in different plants, however, comprehensive survey on GRASs in sweetpotato is lagging.
In this study, 72 putative sweetpotato IbGRAS genes with uneven distribution were isolated on 15 chromosomes and classified into 12 subfamilies supported by gene structures and motif compositions. Moreover, both tandem duplication and segmental duplication events played critical roles in the expansion of sweetpotato GRAS genes, and the collinearity between IbGRAS genes and the related orthologs from nine other plants further depicted evolutionary insights into GRAS gene family. RNA-seq analysis under salt stress and qRT-PCR detection of 12 selected IbGRAS genes demonstrated their significant and varying inductions under multiple abiotic stresses (salt, drought, heat and cold) and hormone treatments (ABA, ACC and JA). Consistently, the promoter regions of IbGRAS genes harbored a series of stress- and hormone-associated cis-acting elements. Among them, IbGRAS71, the potential candidate for breeding tolerant plants, was characterized as having transactivation activity in yeasts, while IbGRAS-2/-4/-9 did not. Moreover, a complex interaction relationship between IbGRASs was observed through the interaction network analysis and yeast two-hybrid assays.
Our results laid a foundation for further functional identifications of IbGRAS genes, and multiple members may serve as potential regulators for molecular breeding of tolerant sweetpotato.
植物特异性 GRAS 转录因子在各种不利环境条件下发挥着关键作用。在不同的植物中已经探索和描述了许多 GRAS 基因,然而,甘薯中 GRAS 的综合调查还存在滞后。
本研究在 15 条染色体上分离出 72 个假定的甘薯 IbGRAS 基因,这些基因不均匀分布,并根据基因结构和基序组成分为 12 个亚家族。此外,串联重复和片段重复事件在甘薯 GRAS 基因的扩张中起着关键作用,甘薯 IbGRAS 基因与来自其他 9 种植物的相关同源基因之间的共线性进一步描绘了 GRAS 基因家族的进化见解。盐胁迫下的 RNA-seq 分析和 12 个选定 IbGRAS 基因的 qRT-PCR 检测表明,它们在多种非生物胁迫(盐、干旱、热和冷)和激素处理(ABA、ACC 和 JA)下表现出显著的不同诱导。一致地,IbGRAS 基因的启动子区域含有一系列与应激和激素相关的顺式作用元件。其中,IbGRAS71 是培育耐植物的潜在候选基因,其在酵母中具有转录激活活性,而 IbGRAS-2/-4/-9 则没有。此外,通过互作网络分析和酵母双杂交实验观察到 IbGRAS 之间存在复杂的相互作用关系。
我们的研究结果为进一步鉴定 IbGRAS 基因的功能奠定了基础,多个成员可能作为甘薯耐分子育种的潜在调控因子。