根据自然和气候因素模拟枯草芽孢杆菌菌株在软质小麦栽培中的效果

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摘要

摘要 研究旨在确定2017-2022年可影响枯草芽孢杆菌菌株在形态指标和软小麦产量以及病害发展方面的效力(功效)的自然和气候因素。列宁格勒6号k-64900春小麦对微生物制剂Vitaplan、SP(活细胞滴度×1011 CFU/g)和枯草芽孢杆菌菌株VKM B-2604D和枯草芽孢杆菌VKM B-2605D(活细胞滴度×1010 CFU/mL,比例为1:1)的液体培养物(LC)的反应。小麦种子在播种前进行了处理;随后在俄罗斯联邦西北部的田间条件下,在生长季节对植株进行了三次喷洒。细菌菌株对生产力和特别有害的小麦病害的功效在更大程度上取决于生长季节的水分供应指标。多维标度以及指标的相关性和因子分析结果证实了这一点。在 F1 中使用 Vitaplan、SP(DF,干制剂)的变体在以下方面表现出较高的正因子负荷:6 月、7 月和 8 月的降水量;7 月的 HTC;6 月的相对湿度(0.73-0.93);植株阶段;植株高度;旗叶和旗前叶面积;植株无性部分的重量(0.71-0.80)。利用 LC B. subtilis VKM V-2604D + B. subtilis VKM B-2605D,6 月和 8 月的降水量、7 月和 8 月的 HTC(0.71-0.88)、生产分蘖潜力、根重、穗长、每穗小穗数、每穗粒数和粒重、生物产量和潜在产量(0.71-0.85)的正因子载荷较高。应用枯草芽孢杆菌菌株后,生物产量和潜在产量分别提高了(32.5 ± 7.2% )和(24.3 ± 7.0% ),并降低了病害的发展程度(根腐病降低了(11.7 ± 1.6% ),白粉病降低了(7.6 ± 0.7% ))以及褐锈病和黄锈病。不过,细菌菌株的功效在很大程度上取决于小麦生长季节的气候因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling the Effectiveness of Bacillius subtilis Strains Depending on Natural and Climatic Factors in Soft Wheat Cultivation

Abstract

The studies were conducted to identify the natural and climatic factors that can influence the effectiveness (efficacy) of B. subtilis strains with respect to morphometric indicators and soft wheat productivity as well as development of the diseases in 2017–2022. A response of Leningradka 6, k‑64900 spring wheat to the microbiological formulation Vitaplan, SP (titer of viable cells ×1011 CFU/g) and liquid culture (LC) of the B. subtilis strains VKM B‑2604D and B. subtilis VKM B‑2605D (at a 1 : 1 ratio with the titer of viable cells ×1010 CFU/mL). Wheat seeds were treated before sowing; the plants were subsequently sprayed three times during the growing season in the field conditions of the northwestern Russian Federation. The efficacy of bacterial strains in terms of the productivity and particularly harmful wheat diseases depended to a greater degree on the indicators of moisture availability during the growing season. This was confirmed by the results of multidimensional scaling as well the correlation and factor analyses of the indicators. The variant with Vitaplan, SP (DF, dry formulation) in F1 demonstrated high positive factor loadings for the precipitation amount in June, July, and August; HTC in July; relative humidity in June (0.73–0.93); plant stage; plant height; area of flag and preflag leaves; and weight of a vegetative portion of the plant (0.71–0.80). Using the LC B. subtilis VKM V‑2604D + B. subtilis VKM B‑2605D, high positive factor loadings were identified for the precipitation amount in June and August; HTC in July and August (0.71–0.88); productive tillering potential; root weight; spike length; spikelet number per spike; number and weight of grains per spike; and the biological and potential yield (0.71–0.85). The B. subtilis strains’ application improved biological and potential yield by 32.5 ± 7.2% and 24.3 ± 7.0%, respectively, and reduced the intensity of diseases’ progression (by 11.7 ± 1.6% for root rot and by 7.6 ± 0.7% for powdery mildew) as well as brown and yellow rust. The efficacy of the bacterial strains, however, significantly depended on the climatic factors of the wheat growing season.

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