A genome-wide study of the lipoxygenase gene families in Medicago truncatula and Medicago sativa reveals that MtLOX24 participates in the methyl jasmonate response
文献类型: 外文期刊
作者: Xu L.;Zhu X.;Yi F.;Liu Y.;Sod B.;Li M.;Chen L.;Kang J.;Yang Q.;Long R.
作者机构:
关键词: Arabidopsis thaliana;Lipoxygenase;Medicago;Methyl jasmonate;Overexpression
期刊名称: BMC Genomics
ISSN: 1471-2164
年卷期: 2024 年 25 卷 1 期
页码:
收录情况: SCIE(2024版)
摘要: Background: Lipoxygenase (LOX) is a multifunctional enzyme that is primarily related to plant organ growth and development, biotic and abiotic stress responses, and production of flavor-associated metabolites. In higher plants, the LOX family encompasses several isozymes with varying expression patterns between tissues and developmental stages. These affect processes including seed germination, seed storage, seedling growth, fruit ripening, and leaf senescence. LOX family genes have multiple functions in response to hormones such as methyl jasmonate (MeJA) and salicylic acid. Results: In this study, we identified 30 and 95 LOX homologs in Medicago truncatula and Medicago sativa, respectively. These genes were characterized with analyses of their basic physical and chemical properties, structures, chromosomal distributions, and phylogenetic relationships to understand structural variations and their physical locations. Phylogenetic analysis was conducted for members of the three LOX subfamilies (9-LOX, type I 13-LOX, and type II 13-LOX) in Arabidopsis thaliana, Glycine max, M. truncatula, and M. sativa. Analysis of predicted promoter elements revealed several relevant cis-acting elements in MtLOX and MsLOX genes, including abscisic acid (ABA) response elements (ABREs), MeJA response elements (CGTCA-motifs), and antioxidant response elements (AREs). Cis-element data combined with transcriptomic data demonstrated that LOX gene family members in these species were most likely related to abiotic stress responses, hormone responses, and plant development. Gene expression patterns were confirmed via quantitative reverse transcription PCR. Several MtLOX genes (namely MtLOX15, MtLOX16, MtLOX20, and MtLOX24) belonging to the type I 13-LOX subfamily and other LOX genes (MtLOX7, MtLOX11, MsLOX23, MsLOX87, MsLOX90, and MsLOX94) showed significantly different expression levels in the flower tissue, suggesting roles in reproductive growth. Type I 13-LOXs (MtLOX16, MtLOX20, MtLOX21, MtLOX24, MsLOX57, MsLOX84, MsLOX85, and MsLOX94) and type II 13-LOXs (MtLOX5, MtLOX6, MtLOX9, MtLOX10, MsLOX18, MsLOX23, and MsLOX30) were MeJA-inducible and were predicted to function in the jasmonic acid signaling pathway. Furthermore, exogenous MtLOX24 expression in Arabidopsis verified that MtLOX24 was involved in MeJA responses, which may be related to insect-induced abiotic stress. Conclusions: We identified six and four LOX genes specifically expressed in the flowers of M. truncatula and M. sativa, respectively. Eight and seven LOX genes were induced by MeJA in M. truncatula and M. sativa, and the LOX genes identified were mainly distributed in the type I and type II 13-LOX subfamilies. MtLOX24 was up-regulated at 8 h after MeJA induction, and exogenous expression in Arabidopsis demonstrated that MtLOX24 promoted resistance to MeJA-induced stress. This study provides valuable new information regarding the evolutionary history and functions of LOX genes in the genus Medicago. © The Author(s) 2024.
分类号:
- 相关文献
作者其他论文 更多>>
-
Family Net Income, Input Factor Prices and Agriculture Services Selection Behavior of Maize Farmers
作者:Yang Q.;Zhang N.;Lu Q.;Han X.
关键词:agricultural production services;behavioral decision making;grain farmers;influencing factors
-
Discrimination between the Triglyceride Form and the Ethyl Ester Form of Fish Oil Using Chromatography–Mass Spectrometry
作者:Liu M.;Liu Y.;Wang X.
关键词:chromatography;discrimination;ethyl ester;fish oil;mass spectrometry (MS);triglyceride
-
Application of CRISPR/Cas9 for Rapid Genome Editing of Pseudorabies Virus and Bovine Herpesvirus-1
作者:Yu W.;Liu J.;Liu Y.;Forlenza M.;Chen H.
关键词:CRISPR/Cas9;gene editing;herpesvirus;recombination
-
AwSclB regulates a network for Aspergillus westerdijkiae asexual sporulation and secondary metabolism independent of the fungal light control
作者:Wang G.;Liu Y.;Hu Y.;Pan J.;Wei Z.;Tai B.;Yang B.;Li E.;Xing F.
关键词:Asexual sporulation;Aspergillus westerdijkiae;Light control;Ochratoxin A;Secondary metabolism
-
MscI restriction enzyme cooperating recombinase-aided isothermal amplification for the ultrasensitive and rapid detection of low-abundance EGFR mutations on microfluidic chip
作者:Xu S.;Wang X.;Wu C.;Zhu X.;Deng X.;Wu Y.;Liu M.;Huang X.;Wu L.;Huang H.
关键词:(2-0-2)CRISPR-Cas12a;DNA point mutation;Lung cancer;Microfluidic chip;MscI restriction enzyme
-
Comparative effects of phosphorylation and acetylation on glycolysis and myofibrillar proteins degradation in postmortem muscle
作者:Ren C.;Chen L.;Bai Y.;Hou C.;Li X.;Schroyen M.;Zhang D.
关键词:Glycolysis;Meat;Protein acetylation;Protein degradation;Protein phosphorylation
-
Modulation of pectin on intestinal barrier function via changes in microbial functional potential and bile acid metabolism
作者:Yin C.;Wen X.;Dang G.;Zhong R.;Meng Q.;Feng X.;Liu L.;Wu S.;He J.;Chen L.;Zhang H.
关键词:bile acid;ileal microbiota;intestinal health;pectin