Isolation and characterization of cyanobacteria and microalgae from a sulfuric pond: Plant growth-promoting and soil bioconsolidation activities.

IF 2.7 Q3 MICROBIOLOGY AIMS Microbiology Pub Date : 2024-11-08 eCollection Date: 2024-01-01 DOI:10.3934/microbiol.2024041
Beatrice Farda, Rihab Djebaili, Enrico Sabbi, Giancarlo Pagnani, Paola Cacchio, Marika Pellegrini
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Abstract

Sustainable alternatives are essential to improving agriculture production to meet the growing world's critical demands. Cyanobacteria and microalgae are considered renewable resources with a wide range of potential uses in the agricultural sector. We aimed to isolate cyanobacteria and microalgae from the mud of a carbon dioxide-rich sulfur pond and to investigate their plant growth-promoting (PGP) and soil bio-consolidating ability. Mud samples were subjected to DNA extraction and 16S rRNA gene sequencing to characterize the prokaryotic community. Phototrophic culturable microbiota was isolated and evaluated for different PGP properties. The most relevant isolates were combined in a consortium and used for in vitro bioconsolidation activity. In a greenhouse experiment, the isolates were evaluated for their ability to promote salinity stress tolerance in sunflower plants. Metabarcoding results showed that most Amplicon Sequence Variants (ASV) were associated with Actinobacteriota (35%), Proteobacteria (19%), and Acidobacteriota (11%) at the phylum level and Unknown (32%) and uncultured (31%) lineages at the genus level. The culture-dependent method yielded eight isolates associated with cyanobacteria and microalgae genera. The isolates obtained showed interesting PGP activities. Isolates C1, C2, and M1 were selected based on phosphate solubilization (85.6 µg PO4 3- mL-1 on average), indoles (C1 and M1 0.54 µg mL-1 IAA equivalents on average), and ACC deaminase activity (C2 and M1 6.00 µmol α-KB mg proteins-1 h-1). The consortium efficiently consolidated sand particles in the presence of calcium carbonate by forming biomineralized aggregates. In planta results showed positive effects of the consortium on Helianthus annuus L., plant growth under normal conditions and salt stress. The positive effects on soil and plants indicated their effectiveness as bioconsolidants and biostimulant agents. Our findings highlight the interesting potential of cyanobacteria and microalgae applications in sustainable agriculture.

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硫酸池中蓝藻和微藻的分离与特性:植物生长促进和土壤生物固结活性。
可持续替代品对于提高农业生产以满足世界日益增长的关键需求至关重要。蓝藻和微藻被认为是可再生资源,在农业领域具有广泛的潜在用途。本研究旨在从富二氧化碳硫池的泥浆中分离出蓝藻和微藻,并研究其植物促生长(PGP)和土壤生物固结能力。对泥浆样品进行DNA提取和16S rRNA基因测序,以表征原核生物群落。分离了光养可培养微生物群,并对不同的PGP特性进行了评价。将最相关的分离物组合成一个联合体,并用于体外生物巩固活性。在温室试验中,对这些分离物促进向日葵耐盐胁迫的能力进行了评价。元条形码结果显示,大多数扩增子序列变异(Amplicon Sequence Variants, ASV)在门水平上与放线菌门(35%)、变形菌门(19%)和酸杆菌门(11%)相关,在属水平上与未知(32%)和未培养(31%)谱系相关。培养依赖的方法产生了8个与蓝藻和微藻属相关的分离株。获得的分离株显示出有趣的PGP活性。根据磷酸解析度(平均85.6µg PO4 3- mL-1)、吲哚(C1和M1平均0.54µg mL-1 IAA等价物)和ACC脱氨酶活性(C2和M1 6.00µmol α-KB mg蛋白-1 h-1)选择分离株C1、C2和M1。在碳酸钙存在的情况下,该联合体通过形成生物矿化聚集体有效地固结了砂粒。植物试验结果表明,该化合物对向日葵的生长、正常条件下的植株生长和盐胁迫均有积极影响。对土壤和植物的积极影响表明其作为生物固结剂和生物刺激剂的有效性。我们的研究结果突出了蓝藻和微藻在可持续农业中的应用潜力。
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来源期刊
AIMS Microbiology
AIMS Microbiology MICROBIOLOGY-
CiteScore
7.00
自引率
2.10%
发文量
22
审稿时长
8 weeks
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