阿根廷氮螺旋菌Az19对玉米抗旱的保护需要海藻糖的积累

IF 3.9 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Applied Microbiology and Biotechnology Pub Date : 2024-12-27 DOI:10.1007/s00253-024-13391-0
Julia E. García, Luciana A. Pagnussat, Melina B. Amenta, E. Mabel Casanovas, Pablo R. Diaz, María M. Labarthe, María V. Martino, María D. Groppa, Cecilia M. Creus, Guillermo A. Maroniche
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引用次数: 0

摘要

Azospirillum argentinense Az19是一种促进植物生长的耐渗透细菌,可以保护玉米植株免受干旱。在这项工作中,我们探讨了海藻糖在胁迫下Az19优越性能中的作用。海藻酶编码基因treF通过miniTn7系统在Az19中组成性表达。重组菌株Az19F不积累海藻糖,其应对盐、渗透和紫外线胁迫的能力受到影响,并表现出更高的活性氧水平。在正常条件下也观察到生理变化,如生物膜生长增加,运动性增强,生长素分泌减少。即便如此,无论是在正常条件下还是在干旱条件下,Az19F在玉米根系上的定殖能力都没有受到影响。在正常灌溉条件下,Az19和Az19F菌株对玉米生长的促进作用相似。然而,与Az19不同,缺乏海藻糖的Az19F在干旱条件下不能提高玉米植株的高度、空气鲜重和相对含水量。值得注意的是,Az19F引发了植物氧化反应的加剧,导致抗氧化剂和酚类化合物的水平升高。我们得出结论,海藻糖代谢在A. argentinense Az19中的作用超越了胁迫耐受性,在干旱条件下对正常细菌生理和植物生长促进活性也很重要。海藻糖是Az19对盐、渗透和紫外线胁迫的完全耐受性所必需的。海藻糖积累的限制改变了Az19正常细胞的生理机能。海藻糖对az19诱导的干旱条件下玉米生长有促进作用。
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Maize drought protection by Azospirillum argentinense Az19 requires bacterial trehalose accumulation

Azospirillum argentinense Az19 is an osmotolerant plant growth-promoting bacterium that protects maize plants from drought. In this work, we explored the role of trehalose in the superior performance of Az19 under stress. The trehalase-coding gene treF was constitutively expressed in Az19 through a miniTn7 system. The resulting recombinant strain, Az19F, did not accumulate trehalose, was affected in its capacity to cope with salt-, osmotic-, and UV-stress, and showed higher reactive oxygen species levels. Physiological alterations were also observed under normal conditions, such as increased growth in biofilms, higher motility, and decreased auxin secretion. Even so, the capacity of Az19F to colonize maize roots was not affected, either under normal or drought conditions. When inoculated in maize, both Az19 and Az19F strains promoted plant growth similarly under normal irrigation. However, unlike Az19, the trehalose-deficient strain Az19F could not improve the height, aerial fresh weight, or relative water content of maize plants under drought. Notably, Az19F triggered an exacerbated oxidative response in the plants, resulting in higher levels of antioxidant and phenolic compounds. We conclude that the role of trehalose metabolism in A. argentinense Az19 transcends stress tolerance, being also important for normal bacterial physiology and its plant growth-promoting activity under drought.

Trehalose is required by Az19 for full tolerance to salt-, osmotic-, and UV-stress.

A restriction in trehalose accumulation alters Az19 normal cell physiology.

Trehalose contributes to Az19-induced maize growth promotion under drought.

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来源期刊
Applied Microbiology and Biotechnology
Applied Microbiology and Biotechnology 工程技术-生物工程与应用微生物
CiteScore
10.00
自引率
4.00%
发文量
535
审稿时长
2 months
期刊介绍: Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.
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