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探究生物质衍生生物炭对印度小麦品种 HD 2967 缓解对流层臭氧诱导的植物毒性的有效性。

Examining the effectiveness of biomass-derived biochar for the amelioration of tropospheric ozone-induced phytotoxicity in the Indian wheat cultivar HD 2967.

机构信息

Laboratory of Air Pollution and Global Climate Change, Department of Botany, Institute of Science, Banaras Hindu University, Varanasi 221005, Uttar Pradesh, India.

Laboratory of Air Pollution and Global Climate Change, Department of Botany, Institute of Science, Banaras Hindu University, Varanasi 221005, Uttar Pradesh, India.

出版信息

J Hazard Mater. 2021 Apr 15;408:124968. doi: 10.1016/j.jhazmat.2020.124968. Epub 2020 Dec 25.

DOI:10.1016/j.jhazmat.2020.124968
PMID:33418522
Abstract

A pot study was performed to evaluate the influence of O stress with different biochar treatments on a wheat cultivar (HD 2967). Plants were subjected to ambient and elevated (ambient+20 ppb) O along with three doses of biochar (0%, 2.5%, and 5%). Elevated ozone alone reduced most of the growth parameters, negatively affecting the test cultivar's physiology. Although enzymatic antioxidants were up-regulated by elevated O, damage to the membrane integrity was evident by higher MDA content in the wheat leaves. Besides, the uptake of nutrients was observed to be reduced under elevated O due to the reduced phyto-availability of the soil's nutrients and cation exchange capacity. Such limitation of assimilates and nutrients marked a trade-off between growth and defence, translating to grain yield loss. However, applying biochar as a soil conditioner ameliorated the detrimental effects of O with respect to the economic yield of wheat. Biochar alone improved soil properties and nutrient phyto-availability, which translated to better plant growth, stronger physiological capacity, and higher crop productivity. Thus, the study inferred that altered nutrient phyto-availablity and its uptake, likely associated with biochar-induced improved soil properties, relayed stronger plant physiology and antioxidative defence system to combat O induced oxidative stress.

摘要

进行了一项盆栽研究,以评估不同生物炭处理对小麦品种(HD 2967)的 O 胁迫的影响。植物受到环境和升高(环境+20 ppb)O 以及三种生物炭剂量(0%、2.5%和 5%)的处理。单独升高的臭氧降低了大多数生长参数,对试验品种的生理机能产生负面影响。尽管升高的 O 上调了酶促抗氧化剂,但小麦叶片中较高的 MDA 含量表明膜完整性受到了损害。此外,由于土壤养分的植物有效性和阳离子交换能力降低,在升高的 O 下观察到养分的吸收减少。这种同化产物和养分的限制在生长和防御之间形成了一种权衡,导致谷物产量损失。然而,将生物炭作为土壤改良剂应用可以减轻 O 对小麦经济产量的不利影响。生物炭本身可以改善土壤性质和养分的植物有效性,从而促进植物生长、增强生理能力和提高作物生产力。因此,该研究推断,改变的养分植物有效性及其吸收,可能与生物炭诱导的土壤性质改善有关,从而传递更强的植物生理学和抗氧化防御系统来抵御 O 诱导的氧化应激。

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