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从小麦(Triticum aestivum L.)中分离出的具有生物肥料潜力的内生细菌的器官和生长阶段多样性。

Plant organ- and growth stage-diversity of endophytic bacteria with potential as biofertilisers isolated from wheat (Triticum aestivum L.).

机构信息

School of Life Sciences and Agricultural Engineering, Nanyang Normal University, Nanyang, 473061, Henan, People's Republic of China.

出版信息

BMC Plant Biol. 2022 Jun 6;22(1):276. doi: 10.1186/s12870-022-03615-8.

Abstract

BACKGROUND

Chemical fertilisers are extensively used for crop production, which may cause soil deterioration and water pollution. Endophytic bacteria with plant-growth-promoting (PGP) activities may provide a solution to sustainably improve crop yields, including in-demand staples such as wheat. However, the diversity of the PGP endophytic bacteria in wheat across plant organs and growth stages has not been thoroughly characterised.

RESULTS

Here, we report the isolation of endophytic bacteria from root, stem, leaf and seed of three winter wheat varieties at tillering, jointing, heading and seed-filling growth stages that were identified via 16S rRNA gene sequence analysis. Strains were screened for indole-3-acetic acid (IAA) production, potassium and phosphate solubilisation and the ability to grow on a nitrogen-free medium. Strain's capacity to stimulate various plant growth parameters, such as dry root weight, dry above-ground parts weight and plant height, was evaluated in pot trials. A total of 127 strains were randomly selected from 610 isolated endophytic bacterial cultures, representing ten genera and 22 taxa. Some taxa were organ-specific; others were growth-stage-specific. Bacillus aryabhattai, B. stratosphericus, Leclercia adecarboxylata and Pseudomonas oryzihabitans were detected as wheat endophytes for the first time. The IAA production, inorganic phosphorous solubilisation, organic phosphorus solubilisation, potassium solubilisation and growth on N-free medium were detected in 45%, 29%, 37%, 2.4% and 37.8% of the 127 strains, respectively. In pot trials, each strain showed variable effects on inoculated wheat plants regarding the evaluated growth parameters.

CONCLUSIONS

Wheat endophytic bacteria showed organ- and growth-stage diversity, which may reflect their adaptations to different plant tissues and seasonal variations, and differed in their PGP abilities. Bacillus was the most predominant bacterial taxa isolated from winter wheat plants. Our study confirmed wheat root as the best reservoir for screening endophytic bacteria with potential as biofertilisers.

摘要

背景

化肥被广泛应用于农作物生产,但可能导致土壤恶化和水污染。具有植物生长促进(PGP)活性的内生细菌可能是可持续提高作物产量的一种解决方案,包括对小麦等需求旺盛的主食作物。然而,不同小麦器官和生长阶段的 PGP 内生细菌的多样性尚未得到彻底描述。

结果

本研究从分蘖、拔节、抽穗和灌浆生长阶段的三个冬小麦品种的根、茎、叶和种子中分离内生细菌,通过 16S rRNA 基因序列分析进行鉴定。筛选菌株生产吲哚-3-乙酸(IAA)、溶钾和溶磷以及在无氮培养基上生长的能力。在盆栽试验中评估了菌株刺激各种植物生长参数的能力,如干根重、地上部分干重和株高。从 610 个分离的内生细菌培养物中随机选择了 127 株代表 10 个属和 22 个分类群的菌株。一些分类群是器官特异性的;其他是生长阶段特异性的。芽孢杆菌、短波单胞菌、莱氏乳杆菌和水稻假单胞菌首次被检测为小麦内生菌。在 127 株菌株中,分别有 45%、29%、37%、2.4%和 37.8%的菌株能产生 IAA、无机磷溶解、有机磷溶解、钾溶解和在无氮培养基上生长。在盆栽试验中,每个菌株对接种小麦植株的评价生长参数表现出不同的影响。

结论

小麦内生细菌表现出器官和生长阶段的多样性,这可能反映了它们对不同植物组织和季节性变化的适应,并且在 PGP 能力上有所不同。芽孢杆菌是从冬小麦植株中分离出的最主要的细菌分类群。我们的研究证实了小麦根是筛选具有生物肥料潜力的内生细菌的最佳储库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dad/9169407/4c04bae6b53a/12870_2022_3615_Fig1_HTML.jpg

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