Effects of poly-γ-glutamic acid on soil pore structure, maize grain filling, yield and water use efficiency under mulched drip irrigation

IF 5.6 1区 农林科学 Q1 AGRONOMY Field Crops Research Pub Date : 2024-08-07 DOI:10.1016/j.fcr.2024.109528
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Abstract

Poly-γ-glutamic acid (γ-PGA) is a biodegradable and non-toxic and harmless water retention agent, contributing significantly to in the sustainable development of agriculture. This study focused that investigated effect of γ-PGA on soil pore structure, maize growth, grain filling characteristics, maize yield and water use efficiency under mulched drip irrigation, and the optimal application strategy of γ-PGA. The effect of γ-PGA application rates (0, 40, and 80 kg ha−1) on soil structure was investigated using soil column experiments. Field experiments analyzed the effects of these γ-PGA rates (0, 20, 60 and 80 kg ha−1) on maize growth. The results showed that γ-PGA changed the position and number of soil pores; with the increase of γ-PGA application rate, the number of soil pores increased. The number of soil pores with an equivalent diameter smaller than 300μm increased by 9–14 times, and those with an equivalent diameter larger than 1000μm increased twelvefold. The soil water storage increased by 2∼27 %. γ-PGA prolonged active grain filling period by 1–3 days, increased the maximum grain filling rate (Vmax) by 3∼15 %, the average grain filling rate (Va) by 7∼27 %, and grain weight by 12∼37 %. γ-PGA treatments significantly increased maize plant height, stem diameter, leaf area index (LAI), ear width, grain number per row and 100-grain weight. Compared with P0, yield and water use efficiency for γ-PGA treatment were increased by 4.9∼21.8 % and 1.0∼18.1 %. Based on the Gaussian optimization model and considering local actual conditions, we recommend that the optimal rate of γ-PGA is 70 kg ha−1 in the region. This study provided a theoretical basis for water-saving irrigation of maize under mulched drip irrigation.

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聚γ-谷氨酸对地膜滴灌条件下土壤孔隙结构、玉米籽粒充实度、产量和用水效率的影响
聚γ-谷氨酸(γ-PGA)是一种可生物降解、无毒无害的保水剂,对农业可持续发展具有重要贡献。本研究主要探讨了地膜滴灌条件下γ-PGA对土壤孔隙结构、玉米生长、籽粒灌浆特性、玉米产量和水分利用效率的影响,以及γ-PGA的最佳施用策略。通过土柱实验研究了γ-PGA 施用量(0、40 和 80 千克/公顷)对土壤结构的影响。田间试验分析了这些 γ-PGA 施用量(0、20、60 和 80 千克/公顷)对玉米生长的影响。结果表明,γ-PGA 改变了土壤孔隙的位置和数量;随着γ-PGA 施用量的增加,土壤孔隙数量也随之增加。等效直径小于 300μm 的土壤孔隙数量增加了 9-14 倍,等效直径大于 1000μm 的孔隙数量增加了 12 倍。土壤储水量增加了 2∼27%。γ-PGA可使谷粒的有效灌浆期延长1-3天,最大灌浆率(Vmax)提高3∼15 %,平均灌浆率(Va)提高7∼27 %,粒重提高12∼37 %。γ-PGA处理显著提高了玉米株高、茎秆直径、叶面积指数(LAI)、穗宽、每行粒数和百粒重。与 P0 相比,γ-PGA 处理的产量和水分利用率分别提高了 4.9% ∼ 21.8% 和 1.0% ∼ 18.1%。根据高斯优化模型并结合当地实际情况,建议该地区γ-PGA 的最佳施用量为 70 kg ha。该研究为地膜滴灌玉米节水灌溉提供了理论依据。
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来源期刊
Field Crops Research
Field Crops Research 农林科学-农艺学
CiteScore
9.60
自引率
12.10%
发文量
307
审稿时长
46 days
期刊介绍: Field Crops Research is an international journal publishing scientific articles on: √ experimental and modelling research at field, farm and landscape levels on temperate and tropical crops and cropping systems, with a focus on crop ecology and physiology, agronomy, and plant genetics and breeding.
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