Van Holle Sofie, Rougé Pierre, Van Damme Els J M
Laboratory of Biochemistry and Glycobiology, Department of Molecular Biotechnology, Ghent University, Coupure Links 653, 9000 Ghent, Belgium.
UMR 152 PHARMA-DEV, Université de Toulouse, IRD, UPS, Chemin des Maraîchers 35, 31400 Toulouse, France.
Ann Bot. 2017 Mar 1;119(5):901-914. doi: 10.1093/aob/mcw259.
The Nictaba family groups all proteins that show homology to Nictaba, the tobacco lectin. So far, Nictaba and an Arabidopsis thaliana homologue have been shown to be implicated in the plant stress response. The availability of more than 50 sequenced plant genomes provided the opportunity for a genome-wide identification of Nictaba -like genes in 15 species, representing members of the Fabaceae, Poaceae, Solanaceae, Musaceae, Arecaceae, Malvaceae and Rubiaceae. Additionally, phylogenetic relationships between the different species were explored. Furthermore, this study included domain organization analysis, searching for orthologous genes in the legume family and transcript profiling of the Nictaba -like lectin genes in soybean.
Using a combination of BLASTp, InterPro analysis and hidden Markov models, the genomes of Medicago truncatula , Cicer arietinum , Lotus japonicus , Glycine max , Cajanus cajan , Phaseolus vulgaris , Theobroma cacao , Solanum lycopersicum , Solanum tuberosum , Coffea canephora , Oryza sativa , Zea mays, Sorghum bicolor , Musa acuminata and Elaeis guineensis were searched for Nictaba -like genes. Phylogenetic analysis was performed using RAxML and additional protein domains in the Nictaba-like sequences were identified using InterPro. Expression analysis of the soybean Nictaba -like genes was investigated using microarray data.
Nictaba -like genes were identified in all studied species and analysis of the duplication events demonstrated that both tandem and segmental duplication contributed to the expansion of the Nictaba gene family in angiosperms. The single-domain Nictaba protein and the multi-domain F-box Nictaba architectures are ubiquitous among all analysed species and microarray analysis revealed differential expression patterns for all soybean Nictaba-like genes.
Taken together, the comparative genomics data contributes to our understanding of the Nictaba -like gene family in species for which the occurrence of Nictaba domains had not yet been investigated. Given the ubiquitous nature of these genes, they have probably acquired new functions over time and are expected to take on various roles in plant development and defence.
Nictaba家族包含所有与烟草凝集素Nictaba具有同源性的蛋白质。到目前为止,已证实Nictaba和一种拟南芥同源物与植物应激反应有关。50多个已测序植物基因组的可得性为在15个物种中进行全基因组范围的类Nictaba基因鉴定提供了机会,这些物种代表豆科、禾本科、茄科、芭蕉科、棕榈科、锦葵科和茜草科的成员。此外,还探究了不同物种之间的系统发育关系。此外,本研究还包括结构域组织分析、在豆科植物中寻找直系同源基因以及大豆中类Nictaba凝集素基因的转录谱分析。
使用BLASTp、InterPro分析和隐马尔可夫模型相结合的方法,在蒺藜苜蓿、鹰嘴豆、百脉根、大豆、木豆、菜豆、可可树、番茄、马铃薯、卡内弗拉咖啡、水稻、玉米、高粱、香蕉和油棕的基因组中搜索类Nictaba基因。使用RAxML进行系统发育分析,并使用InterPro鉴定类Nictaba序列中的其他蛋白质结构域。利用微阵列数据研究大豆类Nictaba基因的表达分析。
在所有研究物种中都鉴定出了类Nictaba基因,对重复事件的分析表明,串联重复和片段重复都有助于被子植物中Nictaba基因家族的扩展。单结构域Nictaba蛋白和多结构域F-box Nictaba结构在所有分析物种中普遍存在,微阵列分析揭示了所有大豆类Nictaba基因的差异表达模式。
总的来说,比较基因组学数据有助于我们理解尚未研究过Nictaba结构域出现情况的物种中的类Nictaba基因家族。鉴于这些基因的普遍性质,它们可能随着时间的推移获得了新功能,并有望在植物发育和防御中发挥各种作用。