Development of maize under different pH values, humidity and presence of Azospirillum brasilense.

Q2 Agricultural and Biological Sciences
Brazilian Journal of Biology Pub Date : 2025-01-31 eCollection Date: 2025-01-01 DOI:10.1590/1519-6984.287643
P E Schaefer, L A Tabaldi, T M Müller, L P Ribeiro, T N Martin
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引用次数: 0

Abstract

Abiotic factors play a crucial role in the productivity of agricultural systems, and stress resulting from these factors can significantly restrict crop yields. To address this challenge, the use of tools capable of mitigating adverse effects, such as growth-promoting bacteria, is essential. This study aimed to investigate the growth of maize plants inoculated or not with Azospirillum brasilense, subjected to variations in soil pH and moisture. Two experiments were conducted under controlled conditions, in which maize plants inoculated with A. brasilense were subjected to variations in (i) soil moisture (100, 75, 50, and 25% of field capacity) and (ii) hydrogenic potential (pH 4.5; 5.5; 5.0; 6.0; and 6.5). It was observed that low moisture favored root growth but limited the development of leaves and stems of maize plants at the V4 phenological stage. The increased root development provided by A. brasilense under conditions of water restriction resulted in a reduction in water use efficiency by the leaves. Additionally, more acidic and/or alkaline pH levels also reduced the dry mass of roots and aboveground parts, as well as the carboxylation efficiency of rubisco, but increased water use efficiency (At 25% FC water deficit, WUE increased by 9.5% in rhizobacterium-treated seeds and by 16% in the control). Inoculation with A. brasilense promoted greater development of maize plants, as evidenced by increased volume, root length, and leaf area. Although maize plants showed better initial development without water restriction and in soil with a pH of 5.9, A. brasilense allowed maize plant growth even at pH 5.1, without significant adverse impacts.

非生物因素对农业系统的生产力起着至关重要的作用,这些因素造成的压力会大大限制作物产量。为了应对这一挑战,必须使用能够减轻不利影响的工具,如促进生长的细菌。本研究旨在调查接种或未接种巴西天青霉(Azospirillum brasilense)的玉米植株在土壤 pH 值和湿度变化条件下的生长情况。研究人员在受控条件下进行了两项实验,分别在(i) 土壤湿度(100、75、50 和 25% 的田间容积)和(ii) 氢势(pH 值为 4.5、5.5、5.0、6.0 和 6.5)变化的条件下对接种了巴西鹅膏菌的玉米植株进行了试验。据观察,在 V4 物候期,低水分有利于根系生长,但限制了玉米植株叶片和茎的发育。在水分受限的条件下,A. brasilense 增加了根系的发育,但却降低了叶片的水分利用效率。此外,酸性和/或碱性更强的 pH 值也会降低根系和地上部分的干重以及 Rubisco 的羧化效率,但会提高水分利用效率(在 FC 缺水 25% 的情况下,根瘤菌处理过的种子的水分利用效率提高了 9.5%,而对照组提高了 16%)。接种巴西根瘤菌可促进玉米植株的生长发育,表现为体积、根长和叶面积的增加。虽然玉米植株在没有水分限制和土壤 pH 值为 5.9 的情况下表现出更好的初始发育,但即使在 pH 值为 5.1 的情况下,玉米根瘤菌也能促进玉米植株的生长,而不会产生明显的不利影响。
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来源期刊
CiteScore
2.40
自引率
0.00%
发文量
301
审稿时长
4-8 weeks
期刊介绍: The BJB – Brazilian Journal of Biology® is a scientific journal devoted to publishing original articles in all fields of the Biological Sciences, i.e., General Biology, Cell Biology, Evolution, Biological Oceanography, Taxonomy, Geographic Distribution, Limnology, Aquatic Biology, Botany, Zoology, Genetics, and Ecology. Priority is given to papers presenting results of researches in the Neotropical region. Material published includes research papers, review papers (upon approval of the Editorial Board), notes, book reviews, and comments.
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