黄瓜生长中光晕和耐旱细菌分离株生长素、铁分子和氰化氢产量的定量估计。

IF 1.1 Q3 BIOLOGY
Zeinab Fotoohiyan, Ali Salehi Sardoei
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引用次数: 0

摘要

耐盐细菌可以通过多种机制促进植物生长,包括生长素、铁载体、氰化氢和不溶性磷酸盐的增溶作用。本研究研究了从干旱和盐碱地分离的耐盐和耐旱细菌对这些生长刺激因子的产生。最初,我们筛选了表现出这些因素最高水平的细菌菌株。然后评价了它们对黄瓜幼苗生长指标的改善作用。此外,我们优化了生长素、铁载体、氰化氢和磷酸盐增溶的分离方案,也可以应用于其他宿主根瘤菌,以评估其促进生长的化合物。•通过在实验室条件下向培养基中添加盐和聚乙二醇,鉴定出最耐盐和干旱的细菌分离株。•该方案可用于评估IAA、铁载体、氰化氢和耐盐和耐旱细菌的磷酸盐增溶的生产水平。•该方案也可用于评估温室条件下耐盐和耐旱细菌的植物促生长能力。•该方案可应用于其他宿主根细菌,以评估其促进生长的化合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantitative Estimation of Auxin, Siderophore, and Hydrogen Cyanide Production in Halo and Drought-Tolerant Bacterial Isolates for Cucumber Growth.

Salt-tolerant bacteria can enhance plant growth through various mechanisms, including the production of auxin, siderophores, hydrogen cyanide, and the solubilization of insoluble phosphate. This study investigated the production of these growth-stimulating factors by salt- and drought-tolerant bacteria isolated from the arid and saline farmlands of Jiroft. Initially, we screened for bacterial strains that exhibited the highest levels of these factors. We then evaluated their effects on improving the growth indices of cucumber seedlings. Additionally, we optimized the protocols for isolating auxin, siderophores, hydrogen cyanide, and phosphate solubilization, which can also be applied to other host rhizobacteria to assess their growth-promoting compounds. Key features • The most resistant bacterial isolates to salinity and drought are identified by adding salt and polyethylene glycol to the culture medium in laboratory conditions. • This protocol can be used to evaluate the production levels of IAA, siderophore, hydrogen cyanide, and phosphate solubilization by salt- and drought-tolerant bacteria. • This protocol can also be used to evaluating the plant growth-promoting ability of salt- and drought-tolerant bacteria under greenhouse conditions. • This protocol can be applied to other host rhizobacteria to assess their growth-promoting compounds.

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