Transcriptome analysis in Aegilops tauschii unravels further insights into genetic control of stripe rust resistance

被引:3
作者
Davoudnia, Behnam [1 ]
Dadkhodaie, Ali [1 ]
Moghadam, Ali [2 ]
Heidari, Bahram [1 ]
Yassaie, Mohsen [3 ]
机构
[1] Shiraz Univ, Sch Agr, Dept Plant Prod & Genet, Shiraz 7144165186, Iran
[2] Shiraz Univ, Inst Biotechnol, Sch Agr, Shiraz, Iran
[3] AREEO, Fars Agr & Nat Resources Res & Educ Ctr, Seed & Plant Improvement Res Dept, Shiraz, Iran
关键词
Differentially expressed genes; Effector-triggered immunity; NBS-LRRs; Puccinia striiformis; RNA-seq; Wheat wild relatives; Yellow rust; LEAF RUST; DIFFERENTIAL EXPRESSION; GENOME ANNOTATION; SALICYLIC-ACID; WHEAT; INTROGRESSION; SUPPRESSION; MECHANISMS; INVERTASE; SEQUENCE;
D O I
10.1007/s00425-024-04347-9
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Stripe rust, caused by Puccinia striiformis f. sp. tritici (Pst) is one of wheat's most destructive fungal diseases that causes a severe yield reduction worldwide. The most effective and economically-friendly strategy to manage this disease is genetic resistance which can be achieved through deploying new and effective resistance genes. Aegilops tauschii, due to its small genome and co-evolution with Pst, can provide detailed information about underlying resistance mechanisms. Hence, we used RNA-sequencing approach to identify the transcriptome variations of two contrasting resistant and susceptible Ae. tauschii accessions in interaction with Pst and differentially expressed genes (DEGs) for resistance to stripe rust. Gene ontology, pathway analysis, and search for functional domains, transcription regulators, resistance genes, and protein-protein interactions were used to interpret the results. The genes encoding NBS-LRR, CC-NBS-kinase, and phenylalanine ammonia-lyase, basic helix-loop-helix (bHLH)-, basic-leucine zipper (bZIP)-, APETALA2 (AP2)-, auxin response factor (ARF)-, GATA-, and LSD-like transcription factors were up-regulated exclusively in the resistant accession. The key genes involved in response to salicylic acid, amino sugar and nucleotide sugar metabolism, and hypersensitive response contributed to plant defense against stripe rust. The activation of jasmonic acid biosynthesis and starch and sucrose metabolism pathways under Pst infection in the susceptible accession explained the colonization of the host. Overall, this study can fill the gaps in the literature on host-pathogen interaction and enrich the Ae. tauschii transcriptome sequence information. It also suggests candidate genes that could guide future breeding programs attempting to develop rust-resistant cultivars.
引用
收藏
页数:20
相关论文
共 88 条
[1]  
Alexa A., 2020, TOPGO ENRICHMENT ANA
[2]   Shifting the limits in wheat research and breeding using a fully annotated reference genome [J].
Appels, Rudi ;
Eversole, Kellye ;
Feuillet, Catherine ;
Keller, Beat ;
Rogers, Jane ;
Stein, Nils ;
Pozniak, Curtis J. ;
Choulet, Frederic ;
Distelfeld, Assaf ;
Poland, Jesse ;
Ronen, Gil ;
Sharpe, Andrew G. ;
Pozniak, Curtis ;
Barad, Omer ;
Baruch, Kobi ;
Keeble-Gagnere, Gabriel ;
Mascher, Martin ;
Ben-Zvi, Gil ;
Josselin, Ambre-Aurore ;
Himmelbach, Axel ;
Balfourier, Francois ;
Gutierrez-Gonzalez, Juan ;
Hayden, Matthew ;
Koh, ChuShin ;
Muehlbauer, Gary ;
Pasam, Raj K. ;
Paux, Etienne ;
Rigault, Philippe ;
Tibbits, Josquin ;
Tiwari, Vijay ;
Spannagl, Manuel ;
Lang, Daniel ;
Gundlach, Heidrun ;
Haberer, Georg ;
Mayer, Klaus F. X. ;
Ormanbekova, Danara ;
Prade, Verena ;
Simkova, Hana ;
Wicker, Thomas ;
Swarbreck, David ;
Rimbert, Helene ;
Felder, Marius ;
Guilhot, Nicolas ;
Kaithakottil, Gemy ;
Keilwagen, Jens ;
Leroy, Philippe ;
Lux, Thomas ;
Twardziok, Sven ;
Venturini, Luca ;
Juhasz, Angela .
SCIENCE, 2018, 361 (6403) :661-+
[3]   The NONEXPRESSOR OF PATHOGENESIS-RELATED GENES 1 (NPR1) and Related Family: Mechanistic Insights in Plant Disease Resistance [J].
Backer, Robert ;
Naidoo, Sanushka ;
van den Berg, Noelani .
FRONTIERS IN PLANT SCIENCE, 2019, 10
[4]   MEME SUITE: tools for motif discovery and searching [J].
Bailey, Timothy L. ;
Boden, Mikael ;
Buske, Fabian A. ;
Frith, Martin ;
Grant, Charles E. ;
Clementi, Luca ;
Ren, Jingyuan ;
Li, Wilfred W. ;
Noble, William S. .
NUCLEIC ACIDS RESEARCH, 2009, 37 :W202-W208
[5]   An EDS1 heterodimer signalling surface enforces timely reprogramming of immunity genes in Arabidopsis [J].
Bhandari, Deepak D. ;
Lapin, Dmitry ;
Kracher, Barbara ;
von Born, Patrick ;
Bautor, Jaqueline ;
Niefind, Karsten ;
Parker, Jane E. .
NATURE COMMUNICATIONS, 2019, 10 (1)
[6]   Salicylic Acid Regulates Systemic Defense Signaling in Chickpea During Fusarium oxysporum f. sp ciceri Race 1 Infection [J].
Bhar, Anirban ;
Chatterjee, Moniya ;
Gupta, Sumanti ;
Das, Sampa .
PLANT MOLECULAR BIOLOGY REPORTER, 2018, 36 (02) :162-175
[7]   Trimmomatic: a flexible trimmer for Illumina sequence data [J].
Bolger, Anthony M. ;
Lohse, Marc ;
Usadel, Bjoern .
BIOINFORMATICS, 2014, 30 (15) :2114-2120
[8]   The evolving battle between yellow rust and wheat: implications for global food security [J].
Bouvet, Laura ;
Holdgate, Sarah ;
James, Lucy ;
Thomas, Jane ;
Mackay, Ian J. ;
Cockram, James .
THEORETICAL AND APPLIED GENETICS, 2022, 135 (03) :741-753
[9]   Assigning roles to DNA regulatory motifs using comparative genomics [J].
Buske, Fabian A. ;
Boden, Mikael ;
Bauer, Denis C. ;
Bailey, Timothy L. .
BIOINFORMATICS, 2010, 26 (07) :860-866
[10]   How salicylic acid takes transcriptional control over jasmonic acid signaling [J].
Caarls, Lotte ;
Pieterse, Corne M. J. ;
Van Wees, Saskia C. M. .
FRONTIERS IN PLANT SCIENCE, 2015, 6