Multi-omics insights into the positive role of strigolactone perception in barley drought response

被引:5
作者
Daszkowska-Golec, Agata [1 ]
Mehta, Devang [2 ]
Uhrig, R. Glen [2 ]
Braszewska, Agnieszka [1 ]
Novak, Ondrej [3 ,4 ]
Fontana, Irene M. [5 ]
Melzer, Michael [5 ]
Plociniczak, Tomasz [1 ]
Marzec, Marek [1 ]
机构
[1] Univ Silesia Katowice, Fac Nat Sci, Inst Biol Biotechnol & Environm Protect, Jagiellonska 28, PL-40032 Katowice, Poland
[2] Univ Alberta, Dept Biol Sci, 11455 Saskatchewan Dr, Edmonton, AB T6G 2E9, Canada
[3] Palacky Univ, Fac Sci, Lab Growth Regulators, Olomouc, Czech Republic
[4] Czech Acad Sci, Inst Expt Bot, Olomouc, Czech Republic
[5] Leibniz Inst Plant Genet & Crop Plant Res IPK, D-06466 Gatersleben, OT, Germany
基金
加拿大创新基金会;
关键词
Abscisic acid; Barley (Hordeum vulgare); Drought; Phytohormone; Proteome; Strigolactone; Transcriptome; PROTEIN PHOSPHATASE 2C; ABSCISIC-ACID; COMPUTATIONAL PLATFORM; NEGATIVE REGULATOR; PLANT-RESPONSES; HORMONE; FAMILY; ROOTS; IDENTIFICATION; STEREOISOMERS;
D O I
10.1186/s12870-023-04450-1
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background Drought is a major environmental stress that affects crop productivity worldwide. Although previous research demonstrated links between strigolactones (SLs) and drought, here we used barley (Hordeum vulgare) SL-insensitive mutant hvd14 (dwarf14) to scrutinize the SL-dependent mechanisms associated with water deficit response.Results We have employed a combination of transcriptomics, proteomics, phytohormonomics analyses, and physiological data to unravel differences between wild-type and hvd14 plants under drought. Our research revealed that drought sensitivity of hvd14 is related to weaker induction of abscisic acid-responsive genes/proteins, lower jasmonic acid content, higher reactive oxygen species content, and lower wax biosynthetic and deposition mechanisms than wild-type plants. In addition, we identified a set of transcription factors (TFs) that are exclusively drought-induced in the wild-type barley.Conclusions Critically, we resolved a comprehensive series of interactions between the drought-induced barley transcriptome and proteome responses, allowing us to understand the profound effects of SLs in alleviating water-limiting conditions. Several new avenues have opened for developing barley more resilient to drought through the information provided. Moreover, our study contributes to a better understanding of the complex interplay between genes, proteins, and hormones in response to drought, and underscores the importance of a multidisciplinary approach to studying plant stress response mechanisms.
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页数:18
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