Selecting reasonable soil moisture-maintaining measures to improve the soil physicochemical properties and achieve high yield and quality of purple garlic in the China Hexi Corridor oasis agricultural area

IF 4.1 2区 生物学 Q1 PLANT SCIENCES
Xiaofan Pan, Hengjia Zhang, Haoliang Deng, Shouchao Yu, Chenli Zhou, Fuqiang Li
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Abstract

Agricultural plastic film, as an important agricultural production material in the China Hexi Corridor oasis agricultural area, is widely used in the intensive production process of purple garlic, which plays an important role in increasing yield, improving quality, ensuring supply, etc. However, the difference in decomposition characteristics between ordinary plastic film and degradable plastic film may affect soil moisture and temperature, thereby affecting soil biochemical properties. Therefore, we conducted a study to solve this problem. Specifically, in the Minle area of the Hexi Corridor, we selected 10 moisture-maintaining measures of ordinary transparent plastic film, transparent oxo-biodegradable plastic film (50-, 80-, and 110-day induction period), ordinary black plastic film, black oxo-biodegradable plastic film (50-, 80-, and 110-day induction period), wheat straw, and aubergine-super absorbent polymers and used the traditional open field without super absorbent polymers as a control. To analyze the effects of different moisture-maintaining measures on soil quality, garlic yield and quality, and water-fertilizer productivity in purple garlic farmland, and conduct a comprehensive evaluation of moisture-maintaining measures using principal component analysis. The results showed that all the moisture-maintaining measures could increase garlic yield, improve bulb quality and water–fertilizer productivity, improve the soil hydrothermal conditions, maintain soil fertility, increase the microbial quantity, and improve enzyme activity. Overall, transparent plastic film mulching was superior to black plastic film mulching, straw mulching, and A-SAP, with 110-day transparent oxo-biodegradable plastic film mulching being the most effective, and was not significantly different from the ordinary transparent plastic film. Compared with other moisture-maintaining measures, the yield, water productivity, irrigation water productivity, and nitrogen fertilizer partial factor productivity of purple garlic were significantly increased by 13.33% to 119.77%, 13.81% to 126.77%, 13.41% to 119.95%, and 13.33% to 119.76%, respectively. Meanwhile, the contents of allicin, soluble sugar, soluble protein, crude fiber, and amino acid content were increased by 1.44% to 14.66%, 4.64% to 36.46%, 0.38% to 28.27%, 1.89% to 26.29%, and 0.38% to 3.74%, and, due to the prolongation of oxo-biodegradable plastic film induction period, the soil microbial community changes from “fungi type” to “bacterium type,” reducing the occurrence of soil diseases and improving soil quality. On the basis of the Technique for Order Preference by Similarity to an Ideal Solution (TOPSIS) method, the soil quality was evaluated, and the yield, quality, and water productivity of garlic were comprehensively evaluated under each moisture-maintaining measure using principal component analysis. It was determined that the best soil quality and better bulb quality as well as higher garlic yield and water productivity were obtained when using the 110-day induction period transparent oxo-biodegradable plastic film. It can be used as a more reasonable moisture-maintaining measure and technical reference for the purple garlic industry in the China Hexi Corridor oasis agricultural area, which can ensure the improvement of quality and stabilization of yield and also solve the risk of environmental pollution caused by plastic film mulching at the source.
选择合理的土壤保墒措施,改善土壤理化性状,实现河西走廊绿洲农业区紫皮大蒜的高产优质
农用塑料薄膜作为中国河西走廊绿洲农业区重要的农业生产资料,广泛应用于紫皮大蒜集约化生产过程中,在提高产量、改善品质、保障供应等方面发挥着重要作用。然而,普通塑料薄膜与可降解塑料薄膜的分解特性不同,可能会影响土壤的水分和温度,从而影响土壤的生化特性。因此,我们开展了一项研究来解决这一问题。具体而言,我们在河西走廊民乐地区选择了普通透明塑料薄膜、透明氧化生物降解塑料薄膜(诱导期 50 天、80 天和 110 天)、普通黑色塑料薄膜、黑色氧化生物降解塑料薄膜(诱导期 50 天、80 天和 110 天)、小麦秸秆、奥贝尔超强吸水聚合物等 10 种保墒措施,并以不使用超强吸水聚合物的传统露地为对照。分析不同保墒措施对紫皮大蒜农田土壤质量、大蒜产量和质量、水肥生产率的影响,并利用主成分分析法对保墒措施进行综合评价。结果表明,所有保墒措施都能提高大蒜产量,改善鳞茎品质和水肥生产率,改善土壤水热条件,保持土壤肥力,增加微生物数量,提高酶活性。总体而言,透明塑料薄膜地膜覆盖优于黑色塑料薄膜地膜覆盖、秸秆地膜覆盖和 A-SAP 地膜覆盖,其中 110 天透明氧化生物降解塑料薄膜地膜覆盖效果最好,与普通透明塑料薄膜地膜覆盖无显著差异。与其他保墒措施相比,紫皮大蒜的产量、水分生产率、灌溉水生产率和氮肥全要素生产率分别显著提高了 13.33% 至 119.77%、13.81% 至 126.77%、13.41% 至 119.95%、13.33% 至 119.76%。同时,大蒜素、可溶性糖、可溶性蛋白质、粗纤维和氨基酸含量分别增加了 1.44% 至 14.66%、4.64% 至 36.46%、0.38% 至 28.27%、1.89% 至 26.29%、0.38% 至 3.74%。74%,并且由于氧化生物降解塑料膜诱导期的延长,土壤微生物群落由 "真菌型 "转变为 "细菌型",减少了土壤病害的发生,提高了土壤质量。根据与理想解相似度排序法(TOPSIS)对土壤质量进行了评价,并利用主成分分析法综合评价了各项保墒措施下大蒜的产量、品质和水分生产率。结果表明,使用诱导期为 110 天的透明氧化生物降解塑料薄膜时,土壤质量最佳,鳞茎质量更好,大蒜产量和水分生产率更高。可作为中国河西走廊绿洲农业区紫皮大蒜产业较为合理的保墒措施和技术参考,既能保证质量的提高和产量的稳定,又能从源头上解决塑料薄膜地膜覆盖带来的环境污染风险。
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来源期刊
Frontiers in Plant Science
Frontiers in Plant Science PLANT SCIENCES-
CiteScore
7.30
自引率
14.30%
发文量
4844
审稿时长
14 weeks
期刊介绍: In an ever changing world, plant science is of the utmost importance for securing the future well-being of humankind. Plants provide oxygen, food, feed, fibers, and building materials. In addition, they are a diverse source of industrial and pharmaceutical chemicals. Plants are centrally important to the health of ecosystems, and their understanding is critical for learning how to manage and maintain a sustainable biosphere. Plant science is extremely interdisciplinary, reaching from agricultural science to paleobotany, and molecular physiology to ecology. It uses the latest developments in computer science, optics, molecular biology and genomics to address challenges in model systems, agricultural crops, and ecosystems. Plant science research inquires into the form, function, development, diversity, reproduction, evolution and uses of both higher and lower plants and their interactions with other organisms throughout the biosphere. Frontiers in Plant Science welcomes outstanding contributions in any field of plant science from basic to applied research, from organismal to molecular studies, from single plant analysis to studies of populations and whole ecosystems, and from molecular to biophysical to computational approaches. Frontiers in Plant Science publishes articles on the most outstanding discoveries across a wide research spectrum of Plant Science. The mission of Frontiers in Plant Science is to bring all relevant Plant Science areas together on a single platform.
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