Selection of Carrier Materials to Formulate Bioinoculant Package for Promoting Seed Germination

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引用次数: 2

Abstract

Biofertilizers are a novel technique for Indian agriculture that has the potential to address many of the shortcomings of chemical-based technology. Plant growth-promoting (PGP) traits such as IAA, P-solubilization, ACC deaminase, NH3, HCN, EPS, siderophore synthesis, and biofilm formation have been demonstrated in two salt-tolerant PGPR, BST YS1 42 (Bacillus cereus) and CHR JH203 (Bacillus marisflavi). They are most commonly utilized to make carrier-based compositions. This study aimed to evaluate how different carrier-based formulations of salt-tolerant PGPR performed in seedlings of pea and maize plants. The chosen PGPR was mass replicated in the lab and put into seedlings via a variety of carriers, including charcoal powder, dry pea peel powder, tea leaf powder, hay+2%peptone, and cowdung powder. The influence of bio inoculants on seedling growth of Pisum sativum and Zea mays seedlings was investigated. There was a substantial variation in seedling germination in both pea and maize. The result was different depending on the type of carrier materials utilized in the bioformulation process. The results showed that seedling germination was better with the bioformulation made with charcoal and tea leaf powder. As a result, we believe it might be used to alleviate abiotic stresses in a cost-effective and environmentally friendly manner.
促进种子萌发的生物接种剂包装载体材料的选择
生物肥料是印度农业的一种新技术,它有可能解决化学技术的许多缺点。在两种耐盐PGPR BST ys142(蜡样芽孢杆菌)和CHR JH203 (marisflavi芽孢杆菌)中发现了IAA、p溶解、ACC脱氨酶、NH3、HCN、EPS、铁载体合成和生物膜形成等植物生长促进(PGP)性状。它们最常用于制造基于载体的组合物。本研究旨在评估不同的耐盐PGPR载体配方在豌豆和玉米幼苗中的表现。选择的PGPR在实验室大量复制,并通过木炭粉、干豌豆皮粉、茶叶粉、干草+2%蛋白胨和牛粪粉等多种载体植入幼苗。研究了生物接种剂对油菜和玉米幼苗生长的影响。豌豆和玉米的幼苗发芽率有很大差异。根据在生物制剂过程中使用的载体材料的类型,结果是不同的。结果表明,以木炭和茶叶粉配制的生物制剂能较好地促进幼苗萌发。因此,我们相信它可以以一种成本效益和环境友好的方式来缓解非生物压力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.40
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