37 research outputs found

    Additional file 1 of Transcriptomics and physiology reveal the mechanism of potassium indole-3-butyrate (IBAK) mediating rice resistance to salt stress

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    Additional file 1: Fig. S1. K+, Na+, and Cl- content in rice leaves. CK, under freshwater conditions; CKY, under salt stress conditions; IBAKY, IBAK treatment under salt stress conditions. Fig. S2. Photosynthesis-related indicators in rice leaves. CK, under freshwater conditions; CKY, under salt stress conditions; IBAKY, IBAK treatment under salt stress conditions. Pn, net photosynthetic rate; Tr, transpiration rate; Ci, intercellular carbon dioxide concentration; Gs, stomatal conductance. Fig. S3. Antioxidant enzyme activities in rice leaves. CK, under freshwater conditions; CKY, under salt stress conditions; IBAKY, IBAK treatment under salt stress conditions. Fig. S4. GSH and soluble protein contents in rice leaves. CK, under freshwater conditions; CKY, under salt stress conditions; IBAKY, IBAK treatment under salt stress conditions. Table S1. Sample sequencing data quality summary. Table S2. Reference genome alignment statistics. Table S3. Validation of selected genes using qRT-PCR. Table S4. Statistical results of DEGs. Table S11. Internal control gene

    Additional file 2 of Transcriptomic analysis of Vigna radiata in response to chilling stress and uniconazole application

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    Additional file 2: Table S2. Effect of uniconazole on DEGs in mungbean leaves under chilling stress at the Rl stage

    Additional file 5 of Transcriptomic analysis of Vigna radiata in response to chilling stress and uniconazole application

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    Additional file 5: Figure S1. Effects of uniconazole on photosynthetic pigments in Lvfeng 5 under chillingstress at the R1 stage

    Additional file 4 of Transcriptomic analysis of Vigna radiata in response to chilling stress and uniconazole application

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    Additional file 4: Table S4. Expression level of genes associatedwith cutin, suberin and wax biosynthesis(Vra00073) in mung bean

    The alleviating effect of exogenous prohexadione-calcium (Pro-Ca) on the antioxidant enzyme activity of rice under salt stress.

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    The superoxide dismutase (SOD) activity in the X900 (left) and HHZ (right) leaves (a) and roots (b); The katalase (CAT) activity in the X900 (left) and HHZ (right) leaves (c) and roots (d); The ascorbate peroxidase (APX) activity in the X900 (left) and HHZ (right) leaves (e) and roots (f); The peroxidase (POD) activity in the X900 (left) and HHZ (right) leaves (g) and roots (h). Abbreviations: CK (water spraying + 0% NaCl), S (water spraying + 0.3% NaCl), Pro-Ca (100 mg∙L-1 Pro-Ca leaf spraying + 0.3% NaCl), and Pro-Ca + S (100 mg∙L-1 Pro-Ca leaf spraying + 0.3% NaCl). The numerical value represents the mean ± SE (n = 3), and different lowercase letters indicate significant differences according to Duncan’s test (p 0.05).</p

    Alleviating effect of exogenous prohexadione-calcium (Pro-Ca) on tillering ability of rice under salt stress.

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    The morphology (a), tiller number (b), number of leaves in the main stem (c), and shoot and root dry weight (d and e) of the X900 and HHZ varieties under different treatments. Abbreviations: CK (water spraying + 0% NaCl), S (water spraying + 0.3% NaCl), Pro-Ca (100 mg∙L-1 Pro-Ca leaf spraying + 0.3% NaCl), and Pro-Ca + S (100 mg∙L-1 Pro-Ca leaf spraying + 0.3% NaCl). The numerical value represents the mean ± SE (n = 3), and different lowercase letters indicate significant differences according to Duncan’s test (p 0.05).</p
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