2022
DOI: 10.1186/s12870-021-03375-x
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Metabolomic and transcriptomic analysis of Lycium chinese and L. ruthenicum under salinity stress

Abstract: Background High soil salinity often adversely affects plant physiology and agricultural productivity of almost all crops worldwide, such as the crude drug known as wolfberry. However, the mechanism of this action in wolfberry is not fully understood yet. Results Here in this study, we studied different mechanisms potentially in Chinese wolfberry (Lycium chinese, LC) and black wolfberry (L. ruthenicum, LR) under salinity stress, by analyzing their t… Show more

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Cited by 21 publications
(14 citation statements)
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“…Combining multi-omics approaches can elucidate gene functions and networks under physiological and environmental stresses ( Singh et al, 2013 ). Qin et al (2022) studied the response mechanism of two kinds of Lycium barbarum under salt stress through transcriptomics and metabolomics and revealed the intrinsic reason for the high salt tolerance of L. barbarum . By integrating metabolomic and transcriptomic studies, Peng et al (2021) revealed that flavonoids, abscisic acid, and nitric oxide jointly regulate the frost resistance of Liriope spicata and identified the involvement of the flavonoid pathway, abscisic acid biosynthesis, and the genes and metabolites of NO oxidative synthesis to construct a comprehensive network of frost resistance of L. spicata .…”
Section: Introductionmentioning
confidence: 99%
“…Combining multi-omics approaches can elucidate gene functions and networks under physiological and environmental stresses ( Singh et al, 2013 ). Qin et al (2022) studied the response mechanism of two kinds of Lycium barbarum under salt stress through transcriptomics and metabolomics and revealed the intrinsic reason for the high salt tolerance of L. barbarum . By integrating metabolomic and transcriptomic studies, Peng et al (2021) revealed that flavonoids, abscisic acid, and nitric oxide jointly regulate the frost resistance of Liriope spicata and identified the involvement of the flavonoid pathway, abscisic acid biosynthesis, and the genes and metabolites of NO oxidative synthesis to construct a comprehensive network of frost resistance of L. spicata .…”
Section: Introductionmentioning
confidence: 99%
“…These changes were correlated with lower contents of malondialdehyde (MDA), a commonly used indicator of lipid peroxidation and membrane damage ( Liu et al, 2011 ; Jiang et al, 2013 ; Tu et al, 2014 ; Fan et al, 2016a ). On the other hand, transcriptomic and metabolomic studies also highlight the upregulation of metabolic pathways involved not only in antioxidant defense, but also in the synthesis of free amino acids (usually proline, but also methionine, aspartic acid, and arginine, among others), organic acids (e.g., oxaloacetic acid, fumaric acid), polyhydric alcohols (myoinositol, inositol), soluble sugars, polyamines, flavonoids and/or late embryogenesis abundant (LEA) proteins (which are rich in hydrophilic amino acids), as biochemical mechanisms to protect cells from dehydration damage, both in salt-tolerant diploids (e.g., Li et al, 2021 ; Qin et al, 2022 and references therein) as well as in polyploids ( Wang et al, 2018 ; Sicilia et al, 2019 ; Zhao et al, 2022 ; see also below).…”
Section: Genome Duplication and Abiotic Stress Tolerancementioning
confidence: 99%
“…MAPK signaling and plant hormone signal transduction pathways were over-represented in wolfberry salt response genes. However, LR contains higher flavonoid and flavonoid concentrations than LC [ 17 ]. Cultivars with improved abiotic and biotic stress tolerance, increased nutritional value, and agronomic importance must be developed.…”
Section: Introductionmentioning
confidence: 99%