<p>Growth and biochemical compositions of plants are influenced by nutritional compositions of growth-media. This study elucidated the influence of guinea grass biochar levels (BL) (0.5–2.0%) on some morphometric and biochemical markers in African Spinach in 2024 and 2025. Ordinary water served as control (0% BL). Morphometric-markers, reactive oxygen species (ROS), antioxidant activities and nutritional compositions of the vegetables were assessed. 1.5% BL produced tallest plant height (51.50&#xa0;cm) in 2024 and highest number of leaves (29.77) in 2025. Malondialdehyde (18.95 µmol g<sup>−1</sup> FW) and (16.15 µmol g<sup>−1</sup> FW) was significantly higher in the leaves of control in 2024 and roots (16.88 µmol g<sup>−1</sup> FW, 18.15 µmol g<sup>−1</sup> FW) in 2025. Hydrogen peroxide in the leaves (37.79 nmol g<sup>−1</sup> DW) and roots (23.89 nmol g<sup>−1</sup> DW) of the group in 2024 and 37.79 nmol g<sup>−1</sup> DW and 25.59 nmol g<sup>−1</sup> DW at 0.5% BL in 2025 showed significant increase. Antioxidant activities significantly reduced in A. spinach at 2.0% BL. Ascorbic acid in the leaves (164.16 µmol g<sup>−1</sup> FW) and roots (211.13&#xa0;µmol&#xa0;g<sup>− 1</sup>&#xa0;FW) and total soluble sugar (29.05, 24.49&#xa0;mg g<sup>−1</sup> FW) in the vegetable grown under 1.5% BL, glutathione in the leaves (9.77 µmol min<sup>−1</sup> mg<sup>−1</sup>) and roots (8.89 µmol min<sup>−1</sup> mg<sup>−1</sup>) of the vegetables at 2.0% BL showed significant increase. Furthermore, 1.5 and 2.0% BL improved nutritional compositions in A. spinach. In conclusion, 1.5% BL enhanced morphometric-markers and nutritional compositions, while 2.0%BL regulated ROS and suppressed antioxidants in the vegetable.</p>

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Biochar -assisted mechanisms modulate differential changes on morphometric and biochemical markers as nutrient signaling indices in African spinach (Celosia argentea. L)

  • Anthony W. Ojewumi,
  • Oluwasegun O, Fawibe,
  • Kehinde T. Omolokun,
  • Abdullahi A. Adegoke,
  • Daniel O. Adelugba,
  • Samuel A. Ayoola,
  • Taiwo. H. Bakare,
  • Hannah T. Olawale

摘要

Growth and biochemical compositions of plants are influenced by nutritional compositions of growth-media. This study elucidated the influence of guinea grass biochar levels (BL) (0.5–2.0%) on some morphometric and biochemical markers in African Spinach in 2024 and 2025. Ordinary water served as control (0% BL). Morphometric-markers, reactive oxygen species (ROS), antioxidant activities and nutritional compositions of the vegetables were assessed. 1.5% BL produced tallest plant height (51.50 cm) in 2024 and highest number of leaves (29.77) in 2025. Malondialdehyde (18.95 µmol g−1 FW) and (16.15 µmol g−1 FW) was significantly higher in the leaves of control in 2024 and roots (16.88 µmol g−1 FW, 18.15 µmol g−1 FW) in 2025. Hydrogen peroxide in the leaves (37.79 nmol g−1 DW) and roots (23.89 nmol g−1 DW) of the group in 2024 and 37.79 nmol g−1 DW and 25.59 nmol g−1 DW at 0.5% BL in 2025 showed significant increase. Antioxidant activities significantly reduced in A. spinach at 2.0% BL. Ascorbic acid in the leaves (164.16 µmol g−1 FW) and roots (211.13 µmol g− 1 FW) and total soluble sugar (29.05, 24.49 mg g−1 FW) in the vegetable grown under 1.5% BL, glutathione in the leaves (9.77 µmol min−1 mg−1) and roots (8.89 µmol min−1 mg−1) of the vegetables at 2.0% BL showed significant increase. Furthermore, 1.5 and 2.0% BL improved nutritional compositions in A. spinach. In conclusion, 1.5% BL enhanced morphometric-markers and nutritional compositions, while 2.0%BL regulated ROS and suppressed antioxidants in the vegetable.