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在亏缺灌溉条件下,使用生物炭改良土壤和施用钾腐殖酸盐可提高洋葱的生长、产量和营养价值。

Soil Amendment Using Biochar and Application of K-Humate Enhance the Growth, Productivity, and Nutritional Value of Onion ( L.) under Deficit Irrigation Conditions.

作者信息

Abdelrasheed Khaled G, Mazrou Yasser, Omara Alaa El-Dein, Osman Hany S, Nehela Yasser, Hafez Emad M, Rady Asmaa M S, El-Moneim Diaa Abd, Alowaiesh Bassam F, Gowayed Salah M

机构信息

Horticulture Department, Faculty of Agriculture and Natural Resources, Aswan University, Aswan 81528, Egypt.

Business Administration Department, Community College, King Khalid University, Abha 62529, Saudi Arabia.

出版信息

Plants (Basel). 2021 Nov 26;10(12):2598. doi: 10.3390/plants10122598.

Abstract

Water scarcity, due to physical shortage or inadequate access, is a major global challenge that severely affects agricultural productivity and sustainability. Deficit irrigation is a promising strategy to overcome water scarcity, particularly in arid and semiarid regions with limited freshwater resources. However, precise application of deficit irrigation requires a better understanding of the plant response to water/drought stress. In the current study, we investigated the potential impacts of biochar-based soil amendment and foliar potassium-humate application (separately or their combination) on the growth, productivity, and nutritional value of onion ( L.) under deficient irrigation conditions in two separate field trials during the 2018/2019 and 2019/2020 seasons. Our findings showed that deficit irrigation negatively affected onion resilience to drought stress. However, these harmful effects were diminished after soil amendment using biochar, K-humate foliar application, or their combination. Briefly, integrated biochar and K-humate application increased onion growth, boosted the content of the photosynthetic pigments, enhanced the water relations, and increased the yield traits of deficient irrigation onion plants. Moreover, it improved the biochemical response, enhanced the activities of antioxidant enzymes, and enriched the nutrient value of deficiently irrigated onion plants. Collectively, these findings highlight the potential utilization of biochar and K-humate as sustainable eco-friendly strategies to improve onion resilience to deficit irrigation.

摘要

由于水资源实际短缺或获取不足导致的缺水问题,是一项严重影响农业生产力和可持续性的重大全球挑战。亏缺灌溉是克服缺水问题的一项有前景的策略,特别是在淡水资源有限的干旱和半干旱地区。然而,精确应用亏缺灌溉需要更好地了解植物对水分/干旱胁迫的响应。在本研究中,我们在2018/2019年和2019/2020年两个单独的田间试验中,研究了基于生物炭的土壤改良剂和叶面喷施腐殖酸钾(单独或联合使用)对亏缺灌溉条件下洋葱(L.)生长、生产力和营养价值的潜在影响。我们的研究结果表明,亏缺灌溉对洋葱抵御干旱胁迫产生负面影响。然而,在使用生物炭改良土壤、叶面喷施腐殖酸钾或二者联合使用后,这些有害影响有所减轻。简而言之,生物炭和腐殖酸钾联合应用促进了洋葱生长,提高了光合色素含量,改善了水分关系,并增加了亏缺灌溉洋葱植株的产量性状。此外,它改善了生化反应,增强了抗氧化酶的活性,并提高了亏缺灌溉洋葱植株的营养价值。总体而言,这些研究结果凸显了生物炭和腐殖酸钾作为可持续的生态友好型策略来提高洋葱对亏缺灌溉的抵御能力的潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02a2/8709144/666d999f703a/plants-10-02598-g001.jpg

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