Mohan Narender, Pal Ajay, Saharan Vinod, Kumar Anuj, Vashishth Rahul, Prince Sabina Evan
Department of Biochemistry, College of Basic Sciences and Humanities, Chaudhary Charan Singh Haryana Agricultural University, Hisar, Haryana, 125 004, India.
Department of Molecular Biology and Biotechnology, Rajasthan College of Agriculture, Maharana Pratap University of Agriculture and Technology, Udaipur, Rajasthan, 313 001, India.
Heliyon. 2024 May 22;10(11):e31708. doi: 10.1016/j.heliyon.2024.e31708. eCollection 2024 Jun 15.
This study aimed to develop and characterize the chitosan bionanoconjugates (BNCs) loaded with zinc (Zn) and salicylic acid (SA) and test their efficacy on wheat seed exposed to chilling stress. BNCs developed were spherical (480 ± 6.0 nm), porous, and positively charged (+25.2 ± 2.4 mV) with regulated nutrient release properties. They possessed complexation efficiency of 78.4 and 58.9 % for Zn, and SA respectively. BET analysis further confirmed a surface area of 12.04 m/g. Release kinetics substantiated the release rates of Zn and SA, as 0.579 and 0.559 % per hour, along with a half-life of 119.7 and 124.0 h, respectively. BNCs positively affected the germination potential of wheat seeds under chilling stress as observed by significantly (p < 0.05) reduced mean emergence time (18 %), and increased germination rate (22 %), compared to the control. Higher activities of reserve mobilizing enzymes (α-amylase- 6.5 folds, protease -10.2 folds) as well as faster reserve mobilization of starch (64.4 %) and protein (63.5 %) molecules were also observed. The application further led to increased levels of the antioxidant enzymes (SOD and CAT) and reduced oxidative damage (MDA and HO). Thus, it is inferred that the developed BNCs could help substantially improve the germination and reserve mobilization potential, thereby increasing the crop yield.
本研究旨在开发并表征负载锌(Zn)和水杨酸(SA)的壳聚糖生物纳米共轭物(BNCs),并测试其对遭受低温胁迫的小麦种子的功效。所开发的BNCs呈球形(480±6.0纳米),多孔,带正电荷(+25.2±2.4毫伏),具有可控的养分释放特性。它们对锌和水杨酸的络合效率分别为78.4%和58.9%。BET分析进一步证实其比表面积为12.04平方米/克。释放动力学证实了锌和水杨酸的释放速率,分别为每小时0.579%和0.559%,半衰期分别为119.7小时和124.0小时。与对照相比,BNCs对低温胁迫下小麦种子的发芽潜力有积极影响,平均出苗时间显著缩短(18%,p<0.05),发芽率提高(22%)。还观察到储备动员酶(α-淀粉酶-6.5倍,蛋白酶-10.2倍)的活性更高,淀粉(64.4%)和蛋白质(63.5%)分子的储备动员更快。该应用还导致抗氧化酶(超氧化物歧化酶和过氧化氢酶)水平升高,氧化损伤(丙二醛和羟基自由基)降低。因此,可以推断所开发的BNCs有助于大幅提高发芽和储备动员潜力,从而提高作物产量。