Nivetha Nagarajan, Shukla Pushp Sheel, Nori Sri Sailaja, Kumar Sawan, Suryanarayan Shrikumar
Research and Development Division, Sea6 Energy Private Limited, Centre for Cellular and Molecular Platforms, NCBS-TIFR Campus, Bengaluru, India.
Front Microbiol. 2024 Apr 2;15:1330237. doi: 10.3389/fmicb.2024.1330237. eCollection 2024.
The overuse of chemical-based agricultural inputs has led to the degradation of soil with associated adverse effects on soil attributes and microbial population. This scenario leads to poor soil health and is reportedly on the rise globally. Additionally, chemical fertilizers pose serious risks to the ecosystem and human health. In this study, foliar sprays of biostimulant (AgroGain/LBS6) prepared from the cultivated, tropical red seaweed increased the phenotypic growth of in terms of greater leaf area, total plant height, and shoot fresh and dry weights. In addition, LBS6 improved the accumulation of chlorophyll a and b, total carotenoids, total soluble sugars, amino acids, flavonoids, and phenolics in the treated plants. LBS6 applications also improved the total bacterial and fungal count in rhizospheric soil. The V3-V4 region of 16S rRNA gene from the soil metagenome was analyzed to study the abundance of bacterial communities which were increased in the rhizosphere of LBS6-treated plants. Treatments were found to enrich beneficial soil bacteria, i.e., Proteobacteria, especially the classes Alphaproteobacteria, Cyanobacteria, Firmicutes, Actinobacteriota, Verrucomicrobiota, Chloroflexi, and Acidobacteriota and several other phyla related to plant growth promotion. A metagenomic study of those soil samples from LBS6-sprayed plants was correlated with functional potential of soil microbiota. Enrichment of metabolisms such as nitrogen, sulfur, phosphorous, plant defense, amino acid, co-factors, and vitamins was observed in soils grown with LBS6-sprayed plants. These results were further confirmed by a significant increase in the activity of soil enzymes such as urease, acid phosphatase, FDAse, dehydrogenase, catalase, and biological index of fertility in the rhizosphere of LBS6-treated corn plant. These findings conclude that the foliar application of LBS6 on improves and recruits beneficial microbes and alters soil ecology in a sustainable manner.
基于化学的农业投入品的过度使用导致了土壤退化,对土壤属性和微生物种群产生了相关的不利影响。这种情况导致土壤健康状况不佳,据报道在全球范围内呈上升趋势。此外,化肥对生态系统和人类健康构成严重风险。在本研究中,由养殖的热带红海藻制备的生物刺激剂(AgroGain/LBS6)进行叶面喷施,从更大的叶面积、总株高以及地上部分鲜重和干重方面提高了[植物名称未提及]的表型生长。此外,LBS6提高了处理后植株中叶绿素a和b、总类胡萝卜素、总可溶性糖、氨基酸、黄酮类化合物和酚类物质的积累。LBS6的施用还提高了根际土壤中细菌和真菌的总数。对土壤宏基因组中16S rRNA基因的V3-V4区域进行分析,以研究LBS6处理植株根际中细菌群落的丰度增加情况。发现处理能够富集有益土壤细菌,即变形菌门,特别是α-变形菌纲、蓝细菌纲、厚壁菌门、放线菌门、疣微菌门、绿弯菌门和酸杆菌门以及其他几个与植物生长促进相关的门。对来自LBS6喷施植株的土壤样本进行宏基因组研究,并与土壤微生物群的功能潜力相关联。在LBS6喷施植株生长的土壤中观察到氮、硫、磷、植物防御、氨基酸、辅因子和维生素等代谢途径的富集。这些结果通过LBS6处理的玉米植株根际中脲酶、酸性磷酸酶、FDA酶、脱氢酶、过氧化氢酶等土壤酶活性以及肥力生物指标的显著增加得到进一步证实。这些发现表明,在[植物名称未提及]上叶面喷施LBS6能够以可持续的方式改善和招募有益微生物,并改变土壤生态。