Department of Botany, The Islamia University of Bahawalpur, Bahawalpur, Pakistan.
Department of Botany, University of Chakwal, Chakwal, Pakistan.
Sci Rep. 2023 Oct 28;13(1):18503. doi: 10.1038/s41598-023-45670-7.
Drought and cadmium (Cd) stress are both major issues that significantly affect the growth and development of wheat plants. Both drought stress and Cd toxicity disrupt physiological processes i.e., nutrient uptake, cell expansion, and enzymatic reactions resulting in poor crop growth. To overcome these issues, the use of activated carbon and gibberellic acid (GA3) are considered valuable amendments. However, the current study aimed to add value using GA3-enriched biochar (GA3-BC). That's why, a lab experiment was conducted on wheat to assess the effectiveness of GA3-BC against Cd and drought stress. For GA3 enrichment in biochar, 10 µg GA3/g biochar was mixed. There were 3 levels of GA3-BC i.e., 0, 0.6 (GA3-BC1), and 0.9% (GA3-BC). All levels were applied in 3 replicates under no stress (0Cd + no drought), drought stress (DS), and 6 mg Cd/ kg soil (6Cd). Results showed that GA3-BC2 caused a significant improvement in shoot length (44.99%), root length (99.73%), seedling length (60.13%) and shoot fresh weight (63.59%) over control at 6Cd + drought stress. A significant improvement in chlorophyll a, chlorophyll b, and total chlorophyll while a decrease in electrolyte leakage and regulation of antioxidants i.e., lipid peroxidation, SOD, CAT, APx, GR, GPx, GST, and DPHH also signified the effectiveness of GA3-BC2 compared to control at 6Cd + drought stress. In conclusion, GA3-BC2 is an efficacious amendment for simultaneously alleviating drought and Cd stress in wheat. More investigations are recommended at the field level on different cereal crops cultivated in different soil textures to declare GA3-BC2 as the best treatment for mitigation of drought stress and Cd toxicity.
干旱和镉(Cd)胁迫都是严重影响小麦生长发育的主要问题。干旱胁迫和 Cd 毒性都会破坏营养吸收、细胞扩张和酶反应等生理过程,导致作物生长不良。为了克服这些问题,使用活性炭和赤霉素(GA3)被认为是有价值的改良剂。然而,本研究旨在使用 GA3 丰富的生物炭(GA3-BC)来增加其价值。因此,进行了一项关于小麦的实验室实验,以评估 GA3-BC 对 Cd 和干旱胁迫的有效性。为了在生物炭中富集 GA3,将 10μg GA3/g 生物炭混合。GA3-BC 有 3 个水平,即 0、0.6(GA3-BC1)和 0.9%(GA3-BC)。所有水平在无胁迫(0Cd+无干旱)、干旱胁迫(DS)和 6mg Cd/kg 土壤(6Cd)下均进行了 3 次重复处理。结果表明,在 6Cd+干旱胁迫下,GA3-BC2 使株高(44.99%)、根长(99.73%)、苗长(60.13%)和地上部鲜重(63.59%)比对照显著提高。叶绿素 a、叶绿素 b 和总叶绿素显著增加,而电解质泄漏减少,抗氧化剂如脂质过氧化、SOD、CAT、APx、GR、GPx、GST 和 DPHH 的调节也表明,与对照相比,GA3-BC2 在 6Cd+干旱胁迫下更为有效。总之,GA3-BC2 是一种同时缓解小麦干旱和 Cd 胁迫的有效改良剂。建议在不同土壤质地的不同谷类作物的田间水平进行更多的研究,以宣布 GA3-BC2 是缓解干旱胁迫和 Cd 毒性的最佳处理方法。