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一种来自塞拉多土壤的放线菌菌株可促进大豆植株的磷溶解和生长。

An Actinobacterium Strain From Soil of Cerrado Promotes Phosphorus Solubilization and Plant Growth in Soybean Plants.

作者信息

Vargas Hoyos Harold Alexander, Chiaramonte Josiane Barros, Barbosa-Casteliani Ana Gabriele, Fernandez Morais Jorge, Perez-Jaramillo Juan Esteban, Nobre Santos Suikinai, Nascimento Queiroz Sonia Claudia, Soares Melo Itamar

机构信息

Program for the Study and Control of Tropical Diseases-PECET, School of Medicine, University of Antioquia, Medellín, Colombia.

Laboratory of Environmental Microbiology, Embrapa Environment, Jaguariúna, Brazil.

出版信息

Front Bioeng Biotechnol. 2021 Apr 22;9:579906. doi: 10.3389/fbioe.2021.579906. eCollection 2021.

Abstract

The huge biological diversity of the Brazilian Cerrado is an important source of economically interesting microbial agents. The phylum Actinobacteria plays an important role in nutrient cycling, potentially improving their availability to plants. In this study, we isolated an actinobacteria (strain 3AS4) from wheat rhizospheres of crops cultivated in the Cerrado biome. Strain 3AS4 was identified as belonging to the genus and had phosphorus mobilization ability, mineralizing approximately 410 μg ml from phytate, 300 μg ml from calcium phosphate, and 200 μg ml from rock phosphate. The analysis of the actinobacteria crude extract by spectrometric techniques revealed the presence of gluconic and 2-ketogluconic acid, and a greenhouse experiment was carried out to evaluate its plant growth promotion activity in soybean. Soil in its natural condition (with no phosphorus addition), 40 kg ha rock phosphate from Bayovar (RP) added to soil, and triple super phosphate (SPT) added to soil were used. Significant differences in plant height were observed at 6 weeks when the plants were inoculated with the 3AS4 strain. The growth of inoculated plants in natural condition was promoted in 17% compared with the RP and SPT non-inoculated conditions, suggesting that inoculation can enable plants to grow with lower chemical P fertilizers. In the plants that were inoculated with the 3AS4 strain in the RP condition, the plant height increased by approximately 80% and the shoot:root ratio was approximately 30% higher compared to control conditions (non-inoculated plants in natural conditions). 3AS4 has P-solubilizing potential and can be exploited as an inoculant for soybean cultivation. These results suggest that this actinobacterium is a valuable resource for sustainable agriculture and will allow the reduction of phosphate fertilization in the future.

摘要

巴西塞拉多地区丰富的生物多样性是具有经济价值的微生物制剂的重要来源。放线菌门在养分循环中发挥着重要作用,可能会提高植物对养分的可利用性。在本研究中,我们从塞拉多生物群落种植的小麦根际中分离出一种放线菌(菌株3AS4)。菌株3AS4被鉴定属于该属,具有磷活化能力,能从植酸盐中矿化约410μg/ml的磷、从磷酸钙中矿化300μg/ml的磷以及从磷矿粉中矿化200μg/ml的磷。通过光谱技术对放线菌粗提物的分析揭示了葡萄糖酸和2 - 酮葡萄糖酸的存在,并进行了温室试验以评估其对大豆的植物生长促进活性。使用了自然状态的土壤(不添加磷)、添加到土壤中的来自巴约瓦尔的40kg/公顷磷矿粉(RP)以及添加到土壤中的重过磷酸钙(SPT)。当用3AS4菌株接种植物时,在6周时观察到株高有显著差异。与未接种RP和SPT的条件相比,接种植物在自然条件下的生长促进了17%,这表明接种可以使植物在使用较低化学磷肥的情况下生长。在RP条件下接种3AS4菌株的植物中,株高增加了约80%,地上部与根部的比值比对照条件(自然条件下未接种的植物)高出约30%。3AS4具有解磷潜力,可作为大豆种植的接种剂加以利用。这些结果表明,这种放线菌是可持续农业的宝贵资源,未来将有助于减少磷肥的使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2ea/8100043/377c363687bf/fbioe-09-579906-g001.jpg

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