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牛粪堆肥和生物炭添加可改善水分胁迫条件下煤矿废弃地红豆草的生长。

Cattle manure compost and biochar supplementation improve growth of Onobrychis viciifolia in coal-mined spoils under water stress conditions.

作者信息

Roy Rana, Núñez-Delgado Avelino, Wang Jinxin, Kader Md Abdul, Sarker Tanwne, Hasan Ahmed Khairul, Dindaroglu Turgay

机构信息

College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi, 712100, People's Republic of China; Department of Agroforestry & Environmental Science, Sylhet Agricultural University, Sylhet, 3100, Bangladesh.

Department of Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Campus Univ., 27002, Lugo, University of Santiago de Compostela, Spain.

出版信息

Environ Res. 2022 Apr 1;205:112440. doi: 10.1016/j.envres.2021.112440. Epub 2021 Nov 26.

Abstract

Surface mining is a critical anthropogenic activity that significantly alters the ecosystem, while the use of appropriate revegetation techniques can be considered an important and feasible strategy in the way to improve the ecosystem services of degraded land. In the present study, we carried out a pot experiment to investigate the effects of three different variables on morpho-physiological and biochemical parameters of Onobrychis viciifolia to assess the capability of this species to be used for restoration purposes. Specifically, the variables studied were: (a) water (W) regime, working at five values as regards field capacity (FC) (i.e., 80% FC = highest, 72% FC = high, 60% FC = moderate, 48% FC = low, and 40% FC = very-low dose); and (b) rates of cattle manure compost (CMC) and wood biochar (BC) (weight/weight ratio), working at five rates (i.e., 4.0% = highest, 3.2% = high, 2.0% = moderate, 0.8% = low, and 0% = either no-CMC or no-BC dose). In addition, soil physical-chemical properties and enzyme activities were also investigated at the end of the experimental period. It was found that morphological growth attributes such as plant height, maximum root length, and dry biomass significantly increased with W, CMC and BC applications. Compared to control, moderate-to-high W, CMC and BC doses (WCMCBC) increased net photosynthesis rate (by 42%), stomatal conductance (by 50%), transpiration rate (by 29%), water use efficiency (by 10%), chlorophyll contents (by 73%), carotenoid content (by 81%), leaf relative water content (by 33%) and leaf membrane stability index (by 30%). Under low-W content, the application of CMC and BC enhanced osmotic adjustments by increasing the content of soluble sugar and the activities of superoxide dismutase, catalase, peroxidase and ascorbate peroxidase, decreasing the oxidative stress, as verified by low levels of hydrogen peroxide, superoxide anion, malondialdehyde and proline contents in leaf tissues. Moreover, application of W, CMC and BC significantly improved soil water holding capacity, available nitrogen, phosphorus and potassium, urease and catalase activities, which facilitate plant growth. These results would aid in designing an appropriate strategy for achieving a successful revegetation of O. viciifolia, providing optimum doses of W (64% field capacity), CMC (2.4%) and BC (1.7%), with the final aim of reaching ecological restoration in arid degraded lands.

摘要

露天采矿是一项关键的人为活动,会显著改变生态系统,而采用适当的植被恢复技术可被视为改善退化土地生态系统服务的一项重要且可行的策略。在本研究中,我们进行了一项盆栽试验,以研究三个不同变量对红豆草形态生理和生化参数的影响,从而评估该物种用于恢复目的的能力。具体而言,所研究的变量为:(a)水分(W)状况,针对田间持水量(FC)设置五个值(即80%FC = 最高,72%FC = 高,60%FC = 中等,48%FC = 低,40%FC = 极低剂量);以及(b)牛粪堆肥(CMC)和木生物炭(BC)的施用量(重量/重量比),设置五个施用量(即4.0% = 最高,3.2% = 高,2.0% = 中等,0.8% = 低,0% = 无CMC或无BC剂量)。此外,在试验期结束时还对土壤理化性质和酶活性进行了研究。结果发现,随着W、CMC和BC的施用,株高、最大根长和干生物量等形态生长指标显著增加。与对照相比,中高剂量的W、CMC和BC(WCMCBC)使净光合速率提高了42%,气孔导度提高了50%,蒸腾速率提高了29%,水分利用效率提高了10%,叶绿素含量提高了73%,类胡萝卜素含量提高了81%,叶片相对含水量提高了33%,叶片膜稳定性指数提高了30%。在低W含量条件下,CMC和BC的施用通过增加可溶性糖含量以及超氧化物歧化酶、过氧化氢酶、过氧化物酶和抗坏血酸过氧化物酶的活性来增强渗透调节,降低氧化应激,这在叶片组织中过氧化氢、超氧阴离子、丙二醛和脯氨酸含量较低得到了验证。此外,W、CMC和BC的施用显著提高了土壤持水量、有效氮、磷和钾含量以及脲酶和过氧化氢酶活性,有利于植物生长。这些结果将有助于设计出一种合适的策略,以成功实现红豆草的植被恢复,提供最佳剂量的W(64%田间持水量)、CMC(2.4%)和BC(1.7%),最终目标是在干旱退化土地上实现生态恢复。

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