Xu Miaoze, Jin Peng, Liu Tingting, Gao Shiqi, Zhang Tianye, Zhang Fan, Han Xiaolei, He Long, Chen Jianping, Yang Jian
State Key Laboratory for Quality and Safety of Agro-products, Institute of Plant Virology, Ningbo University, Ningbo, China.
PeerJ. 2021 Jun 15;9:e11594. doi: 10.7717/peerj.11594. eCollection 2021.
Ubiquitination is essential for plant growth and development. Deubiquitination cooperates with ubiquitination to regulate the ubiquitination levels of target proteins. The ubiquitin-specific protease (UBP) family is the largest group of deubiquitinases (DUBs), which perform extensive and significant roles in eukaryotic organisms. However, the genes in wheat () are not identified, and the functions of are unknown. The present study identified 97 genes in the whole genome of . . These genes were divided into 15 groups and non-randomly distributed on chromosomes of . . Analyses of evolutionary patterns revealed that mainly underwent purification selection. The studies of -acting regulatory elements indicated that they might be involved in response to hormones. Quantitative real-time PCR (qRT-PCR) results showed that were differentially expressed in different tissues. Besides, several were significantly up-regulated when plants were treated with salicylic acid (SA), implying that these DUBs may play a role in abiotic stress responses in plants and few displayed differential expression after viral infection. Furthermore, () silenced by virus-induced gene silencing (VIGS) facilitates (CWMV) infection in wheat, indicating that may be involved in a defense mechanism against viruses. This study comprehensively analyzed the gene family in wheat and provided a basis for further research of functions in wheat plant response to viral infection.
泛素化对于植物的生长和发育至关重要。去泛素化与泛素化协同作用以调节靶蛋白的泛素化水平。泛素特异性蛋白酶(UBP)家族是去泛素化酶(DUBs)中最大的一组,在真核生物中发挥着广泛而重要的作用。然而,小麦()中的基因尚未被鉴定,其功能也未知。本研究在.的全基因组中鉴定出97个基因。这些基因被分为15组,并非随机分布在.的染色体上。进化模式分析表明,主要经历了纯化选择。对顺式作用调控元件的研究表明,它们可能参与对激素的响应。实时定量PCR(qRT-PCR)结果显示,在不同组织中差异表达。此外,当用水杨酸(SA)处理植物时,几个基因显著上调,这意味着这些去泛素化酶可能在植物的非生物胁迫响应中发挥作用,并且在病毒感染后很少有基因显示出差异表达。此外,通过病毒诱导基因沉默(VIGS)沉默的()促进了小麦中(CWMV)的感染,表明可能参与了对病毒的防御机制。本研究全面分析了小麦中的基因家族,并为进一步研究其在小麦植株对病毒感染的响应中的功能提供了依据。