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Molecular and Physiological Responses of Citrus sinensis Leaves to Long-Term Low pH Revealed by RNA-Seq Integrated with Targeted Metabolomics
Authors:Ning-Wei Lai  Zhi-Chao Zheng  Dan Hua  Jiang Zhang  Huan-Huan Chen  Xin Ye  Zeng-Rong Huang  Jiuxin Guo  Lin-Tong Yang  Li-Song Chen
Affiliation:College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou 350002, China; (N.-W.L.); (Z.-C.Z.); (D.H.); (J.Z.); (H.-H.C.); (X.Y.); (Z.-R.H.); (J.G.); (L.-T.Y.)
Abstract:Low pH-induced alterations in gene expression profiles and organic acids (OA) and free amino acid (FAA) abundances were investigated in sweet orange [Citrus sinensis (L.) Osbeck cv. Xuegan] leaves. We identified 503 downregulated and 349 upregulated genes in low pH-treated leaves. Further analysis indicated that low pH impaired light reaction and carbon fixation in photosynthetic organisms, thereby lowering photosynthesis in leaves. Low pH reduced carbon and carbohydrate metabolisms, OA biosynthesis and ATP production in leaves. Low pH downregulated the biosynthesis of nitrogen compounds, proteins, and FAAs in leaves, which might be conducive to maintaining energy homeostasis during ATP deprivation. Low pH-treated leaves displayed some adaptive responses to phosphate starvation, including phosphate recycling, lipid remodeling, and phosphate transport, thus enhancing leaf acid-tolerance. Low pH upregulated the expression of some reactive oxygen species (ROS) and aldehyde detoxifying enzyme (peroxidase and superoxidase) genes and the concentrations of some antioxidants (L-tryptophan, L-proline, nicotinic acid, pantothenic acid, and pyroglutamic acid), but it impaired the pentose phosphate pathway and VE and secondary metabolite biosynthesis and downregulated the expression of some ROS and aldehyde detoxifying enzyme (ascorbate peroxidase, aldo-keto reductase, and 2-alkenal reductase) genes and the concentrations of some antioxidants (pyridoxine and γ-aminobutyric acid), thus disturbing the balance between production and detoxification of ROS and aldehydes and causing oxidative damage to leaves.
Keywords:aldehydes   Citrus sinensis   free amino acids   leaves   low pH   organic acids   reactive oxygen species   RNA-Seq   secondary metabolites   targeted metabolomics
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