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Characterization of glutathione-gold <t>nanoclusters</t> <t>(GSH-Au</t> NCs) and growth parameters under normal and heat stress conditions. <t>A</t> <t>HR-TEM</t> image of GSH-Au NCs (scale bar: 2 nm), B zeta potential of GSH-Au NCs, C representative phenotypes of vegetable sweet potato under different treatments (CK: control, GA: 2 mg L − 1 GSH-Au NCs, HS: heat stress, GAHS: 2 mg L − 1 GSH-Au NCs + heat stress). and D-K) quantitative growth parameters: D plant height (cm plant − 1 ), E leaf area (cm 2 ), F number of leaves plant − 1 , G relative water content, H shoot fresh weight (g plant − 1 ), I shoot dry weight (g plant − 1 ), J root fresh weight (g plant − 1 ), and ( K ) root dry weight (g plant − 1 ). Data are mean ± SE from biological triplicates. Different letters indicate significant differences (Duncan’s test, P < 0.05)
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Characterization of glutathione-gold <t>nanoclusters</t> <t>(GSH-Au</t> NCs) and growth parameters under normal and heat stress conditions. <t>A</t> <t>HR-TEM</t> image of GSH-Au NCs (scale bar: 2 nm), B zeta potential of GSH-Au NCs, C representative phenotypes of vegetable sweet potato under different treatments (CK: control, GA: 2 mg L − 1 GSH-Au NCs, HS: heat stress, GAHS: 2 mg L − 1 GSH-Au NCs + heat stress). and D-K) quantitative growth parameters: D plant height (cm plant − 1 ), E leaf area (cm 2 ), F number of leaves plant − 1 , G relative water content, H shoot fresh weight (g plant − 1 ), I shoot dry weight (g plant − 1 ), J root fresh weight (g plant − 1 ), and ( K ) root dry weight (g plant − 1 ). Data are mean ± SE from biological triplicates. Different letters indicate significant differences (Duncan’s test, P < 0.05)
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Characterization of glutathione-gold <t>nanoclusters</t> <t>(GSH-Au</t> NCs) and growth parameters under normal and heat stress conditions. <t>A</t> <t>HR-TEM</t> image of GSH-Au NCs (scale bar: 2 nm), B zeta potential of GSH-Au NCs, C representative phenotypes of vegetable sweet potato under different treatments (CK: control, GA: 2 mg L − 1 GSH-Au NCs, HS: heat stress, GAHS: 2 mg L − 1 GSH-Au NCs + heat stress). and D-K) quantitative growth parameters: D plant height (cm plant − 1 ), E leaf area (cm 2 ), F number of leaves plant − 1 , G relative water content, H shoot fresh weight (g plant − 1 ), I shoot dry weight (g plant − 1 ), J root fresh weight (g plant − 1 ), and ( K ) root dry weight (g plant − 1 ). Data are mean ± SE from biological triplicates. Different letters indicate significant differences (Duncan’s test, P < 0.05)
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Characterization of glutathione-gold nanoclusters (GSH-Au NCs) and growth parameters under normal and heat stress conditions. A HR-TEM image of GSH-Au NCs (scale bar: 2 nm), B zeta potential of GSH-Au NCs, C representative phenotypes of vegetable sweet potato under different treatments (CK: control, GA: 2 mg L − 1 GSH-Au NCs, HS: heat stress, GAHS: 2 mg L − 1 GSH-Au NCs + heat stress). and D-K) quantitative growth parameters: D plant height (cm plant − 1 ), E leaf area (cm 2 ), F number of leaves plant − 1 , G relative water content, H shoot fresh weight (g plant − 1 ), I shoot dry weight (g plant − 1 ), J root fresh weight (g plant − 1 ), and ( K ) root dry weight (g plant − 1 ). Data are mean ± SE from biological triplicates. Different letters indicate significant differences (Duncan’s test, P < 0.05)

Journal: BMC Plant Biology

Article Title: Glutathione-gold nanoclusters enhance sweet potato thermotolerance through improved photosynthesis, redox homeostasis, and cellular integrity

doi: 10.1186/s12870-026-08417-w

Figure Lengend Snippet: Characterization of glutathione-gold nanoclusters (GSH-Au NCs) and growth parameters under normal and heat stress conditions. A HR-TEM image of GSH-Au NCs (scale bar: 2 nm), B zeta potential of GSH-Au NCs, C representative phenotypes of vegetable sweet potato under different treatments (CK: control, GA: 2 mg L − 1 GSH-Au NCs, HS: heat stress, GAHS: 2 mg L − 1 GSH-Au NCs + heat stress). and D-K) quantitative growth parameters: D plant height (cm plant − 1 ), E leaf area (cm 2 ), F number of leaves plant − 1 , G relative water content, H shoot fresh weight (g plant − 1 ), I shoot dry weight (g plant − 1 ), J root fresh weight (g plant − 1 ), and ( K ) root dry weight (g plant − 1 ). Data are mean ± SE from biological triplicates. Different letters indicate significant differences (Duncan’s test, P < 0.05)

Article Snippet: GSH-Au NCs were characterized using HR-TEM (S-4800, Hitachi, Tokyo, Japan).

Techniques: Zeta Potential Analyzer, Control