The Mechanisms Underlying Physiological and Molecular Responses to Waterlogging in Flax
Waterlogging due to excessive rainfall has become a factor limiting flax production in southern China. This has led to morphology alteration, and biomass and yield reduction in field crop production. Flax variety Zhongyama 1 was planted in sand culture, and the adaptive mechanisms of the responses t...
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Published in | Journal of natural fibers Vol. 20; no. 2 |
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18.08.2023
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Abstract | Waterlogging due to excessive rainfall has become a factor limiting flax production in southern China. This has led to morphology alteration, and biomass and yield reduction in field crop production. Flax variety Zhongyama 1 was planted in sand culture, and the adaptive mechanisms of the responses to waterlogging in the fast growth and harvest stage were determined. According to the results, height and total biomass decreased significantly under waterlogged conditions during the fast growth period; furthermore, in the harvest stage, flax height increased significantly, whereas the technical length, fork diameter, and weight decreased significantly. For gene expression, the gene of glucose, glutathione metabolism, was up-regulated in shoot, and the gene of phenylpropanoid metabolic, lignin, was up-regulated in root. The results suggested that the synthesis and degradation of lignin is involved in flax resistance to waterlogging, especially in terms of phenylpropanoid biosynthesis, glycolysis, and metabolism of plant hormone signal transduction. Furthermore, unpaired electrons flowing through the electron transport chain may react with oxygen to produce ROS and hamper plant growth, development, and survival. |
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AbstractList | Waterlogging due to excessive rainfall has become a factor limiting flax production in southern China. This has led to morphology alteration, and biomass and yield reduction in field crop production. Flax variety Zhongyama 1 was planted in sand culture, and the adaptive mechanisms of the responses to waterlogging in the fast growth and harvest stage were determined. According to the results, height and total biomass decreased significantly under waterlogged conditions during the fast growth period; furthermore, in the harvest stage, flax height increased significantly, whereas the technical length, fork diameter, and weight decreased significantly. For gene expression, the gene of glucose, glutathione metabolism, was up-regulated in shoot, and the gene of phenylpropanoid metabolic, lignin, was up-regulated in root. The results suggested that the synthesis and degradation of lignin is involved in flax resistance to waterlogging, especially in terms of phenylpropanoid biosynthesis, glycolysis, and metabolism of plant hormone signal transduction. Furthermore, unpaired electrons flowing through the electron transport chain may react with oxygen to produce ROS and hamper plant growth, development, and survival. |
Author | Kipshakpayeva, Gulden Peng, Dingxiang Begalina, Almagul Baitelenova, Aliya Chen, Jianhua Wang, Yufu Stybayev, Gani Qiu, Caisheng Qiu, HuaJiao Wu, Zhimin |
Author_xml | – sequence: 1 givenname: Caisheng surname: Qiu fullname: Qiu, Caisheng organization: National Bast Fiber Crop Germplasm Nursery – sequence: 2 givenname: HuaJiao surname: Qiu fullname: Qiu, HuaJiao organization: Chinese Academy of Agricultural Sciences – sequence: 3 givenname: Dingxiang surname: Peng fullname: Peng, Dingxiang organization: Huazhong Agricultural University – sequence: 4 givenname: Jianhua surname: Chen fullname: Chen, Jianhua organization: Chinese Academy of Agricultural Sciences – sequence: 5 givenname: Yufu surname: Wang fullname: Wang, Yufu organization: Chinese Academy of Agricultural Sciences – sequence: 6 givenname: Gani surname: Stybayev fullname: Stybayev, Gani organization: S.Seifullin Kazakh Agrotechnical University – sequence: 7 givenname: Aliya surname: Baitelenova fullname: Baitelenova, Aliya organization: S.Seifullin Kazakh Agrotechnical University – sequence: 8 givenname: Gulden surname: Kipshakpayeva fullname: Kipshakpayeva, Gulden organization: S.Seifullin Kazakh Agrotechnical University – sequence: 9 givenname: Almagul surname: Begalina fullname: Begalina, Almagul organization: S.Seifullin Kazakh Agrotechnical University – sequence: 10 givenname: Zhimin orcidid: 0000-0001-9965-7472 surname: Wu fullname: Wu, Zhimin email: 867568664@qq.com organization: Chinese Academy of Agricultural Sciences |
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CitedBy_id | crossref_primary_10_1016_j_jhydrol_2024_132036 crossref_primary_10_1186_s12870_023_04676_z crossref_primary_10_3390_agronomy13092215 crossref_primary_10_1016_j_stress_2024_100361 |
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SubjectTerms | Biomass Biosynthesis China Crop production Electron transport Electron transport chain field crops Flax Gene expression genes glucose Glucose metabolism Glutathione Glycolysis Height Lignin lignin synthesis and degradation Metabolism oxygen phenylpropanoid biosynthesis Plant growth Plant hormones rain Rainfall Reactive oxygen species resistant agriculture sand Signal transduction Waterlogging 亚麻 抗性农业 木质素的合成和降解 水涝 苯丙素生物合成 |
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Title | The Mechanisms Underlying Physiological and Molecular Responses to Waterlogging in Flax |
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