Xuzhou Sweetpotato Research Center, Xuzhou Institute of Agricultural Sciences, Key Laboratory of Sweetpotato Biology and Genetic Breeding, Ministry of Agriculture, Xuzhou, China.
Plant Systems Engineering Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 125 Gwahak-ro, Daejeon, South Korea.
Plant Physiol Biochem. 2021 Dec;169:224-235. doi: 10.1016/j.plaphy.2021.11.027. Epub 2021 Nov 18.
Basic/helix-loop-helix (bHLH) transcription factors are involved in various metabolic and physiological processes in plants. Sweetpotato (Ipomoea batatas (L.) Lam.) is an important crop in China but is highly susceptible to cold stress. However, little information on the bHLH gene family is available, and the function of this family in response to cold stress has not been revealed in sweetpotato. Here, 110 IbbHLHs were identified and classified into 17 categories based on phylogenetic relationships, conserved motifs and gene structure analyses. Except for 5 IbbHLHs, 90 IbbHLHs were putative E-box-binding proteins including 70 IbbHLHs belonging to G-box, whereas 15 IbbHLHs were putative non-E box-binding proteins based on DNA-binding analysis. In total, 37 pairs of segmental duplicated genes and 5 pairs of tandem duplication genes were identified within the IbbHLH gene family. The transcript level of 20 IbbHLHs was regulated by cold stress based on RNA-seq data, and 8 genes were selected for further quantitative real-time PCR (qRT-PCR) analysis. IbHLH8 and IbHLH92 are involved in network interaction with several genes related to abiotic and biotic stresses under cold treatment. IbbHLH79, an ICE1-like gene, was isolated and overexpressed in sweetpotato. The IbbHLH79 protein can activate the CBF (C-repeat Binding Factor) pathway, and IbbHLH79-overexpressing transgenic plants display enhanced cold tolerance. Taken together, these results provide valuable information on the IbbHLH gene family; in addition, several IbbHLHs may regulate cold stress, and the results suggest IbbHLH79 will be useful for molecular breeding of enhanced cold tolerance in sweetpotato.
基本/螺旋-环-螺旋(bHLH)转录因子参与植物的各种代谢和生理过程。甘薯(Ipomoea batatas (L.) Lam.)是中国的一种重要作物,但对冷胁迫高度敏感。然而,关于 bHLH 基因家族的信息很少,该家族在甘薯响应冷胁迫中的功能尚未被揭示。在这里,根据系统发育关系、保守基序和基因结构分析,鉴定了 110 个 IbbHLHs,并将其分为 17 类。除了 5 个 IbbHLHs 之外,90 个 IbbHLHs是假定的 E 盒结合蛋白,包括 70 个属于 G 盒的 IbbHLHs,而 15 个 IbbHLHs是基于 DNA 结合分析的假定非 E 盒结合蛋白。总共在 IbbHLH 基因家族中鉴定出 37 对片段重复基因和 5 对串联重复基因。基于 RNA-seq 数据,20 个 IbbHLHs 的转录水平受冷胁迫调控,选择 8 个基因进行进一步的定量实时 PCR(qRT-PCR)分析。IbHLH8 和 IbHLH92 参与了冷处理下与非生物和生物胁迫相关的几个基因的网络互作。IbHLH79 是一个 ICE1 样基因,在甘薯中被分离并过表达。IbbHLH79 蛋白可以激活 CBF(C-repeat Binding Factor)途径,过表达 IbbHLH79 的转基因植物表现出增强的耐寒性。总之,这些结果为 IbbHLH 基因家族提供了有价值的信息;此外,几个 IbbHLHs 可能调节冷胁迫,结果表明 IbbHLH79 将有助于甘薯增强耐寒性的分子育种。