第一作者: | Liu, Lei |
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英文第一作者: | Liu, Lei |
联系作者: | Li, Xiangnan |
英文联系作者: | Li, Xiangnan |
发表年度: | 2023 |
卷: | 201 |
摘要: | To understand the physiological mechanisms involved in xanthine metabolism during salt priming for improving low-temperature tolerance, salt priming (SP), xanthine dehydrogenase inhibitor (XOI), exogenous allantoin (EA), and back-supplemented EA (XOI + EA) treatments were given and the low-temperature tolerance of sugar beet was tested. Under low-temperature stress, salt priming promoted the growth of sugar beet leaves and increased the maximum quantum efficiency of PS II (Fv/Fm). However, during salt priming, either XOI or EA treatment alone increased the content of reactive oxygen species (ROS), such as superoxide anion and hydrogen peroxide, in the leaves under low-temperature stress. XOI treatment increased allantoinase activity with its gene (BvallB) expression under low-temperature stress. Compared to the XOI treatment, the EA treatment alone and the XOI + EA treatment increased the activities of antioxidant enzymes. At low temperatures, the sucrose content and the activity of key carbohydrate enzymes (AGPase, Cylnv, and FK) were significantly reduced by XOI compared to the changes under salt priming. XOI also stimulated the expression of protein phosphatase 2C and sucrose nonfermenting1-related protein kinase (BvSNRK2). The results of a correlation network analysis showed that BvallB was positively correlated with malondialdehyde, D-Fructose-6-phosphate, and D-Glucose-6-phosphate, and negatively correlated with BvPOX42, BvSNRK2, dehydroascorbate reductase, and catalase. These results suggested that salt-induced xanthine metabolism modulated ROS metabolism, photosynthetic carbon assimilation, and carbohydrate metabolism, thus enhancing low-temperature tolerance in sugar beet. Additionally, xanthine and allantoin were found to play key roles in plant stress resistance. |
刊物名称: | PLANT PHYSIOLOGY AND BIOCHEMISTRY |
参与作者: | Liu,L(Liu,Lei)[1],[2];Zhang,PF(Zhang,Pengfei)[3];Feng,GZ(Feng,Guozhong)[1];Hou,WF(Hou,Wenfeng)[1];Liu,TH(Liu,Tianhao)[2];Gai,ZJ(Gai,Zhijia)[4];Shen,YH[5];Qiu,X[6];Li,XN[2],[7] |
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Salt priming induces low-temperature tolerance in sugar beet via xanthine metabolism
本站小编 Free考研考试/2024-01-13
Salt priming induces low-temperature tolerance in sugar beet via xanthine metabolism