Rolón-Cárdenas Gisela Adelina, Martínez-Martínez Joana Guadalupe, Arvizu-Gómez Jackeline Lizzeta, Soria-Guerra Ruth Elena, Alfaro-De la Torre Ma Catalina, Alatorre-Cobos Fulgencio, Rubio-Santiago Jesús, González-Balderas Regina de Montserrat, Carranza-Álvarez Candy, Macías-Pérez José Roberto, Aldaba-Muruato Liseth Rubí, Hernández-Morales Alejandro
Facultad de Ciencias Químicas, Universidad Autónoma de San Luis Potosí, San Luis Potosí 78210, Mexico.
Facultad de Estudios Profesionales Zona Huasteca, Universidad Autónoma de San Luis Potosí, Ciudad Valles, San Luis Potosí 79060, Mexico.
Plants (Basel). 2022 May 29;11(11):1447. doi: 10.3390/plants11111447.
The genus comprises plant species extensively studied for phytoremediation processes. Recently, GRC140, an IAA-producing bacterium, was isolated from roots. This bacterium stimulates the emergence of lateral roots of in the presence and absence of cadmium. However, the bacterial influence on cadmium accumulation by the plant has not been determined. Moreover, the GRC140 effect in Cd phytoextraction by remains poorly understood. In this work, an axenic hydroponic culture of was established. The plants were used to evaluate the effects of cadmium stress in axenic plants and determine the effects of GRC140 and exogenous indole acetic acid (IAA) on Cd tolerance and Cd uptake by . Biomass production, total chlorophyll content, root electrolyte leakage, catalase activity, total glutathione, and Cd content were determined. The results showed that Cd reduces shoot biomass and increases total glutathione and Cd content in a dose-dependent manner in root tissues. Furthermore, GRC140 increased Cd translocation to the shoots, while IAA increased the Cd accumulation in plant roots, indicating that both treatments increase Cd removal by plants. These results indicate that axenic plants in hydroponic systems are adequate to evaluate the Cd effects in plants and suggest that phytoextraction abilities could be improved by GRC140 and exogenous IAA application.
该属包含多种因植物修复过程而被广泛研究的植物物种。最近,从根部分离出了一种产吲哚 - 3 - 乙酸(IAA)的细菌GRC140。这种细菌在有镉和无镉的情况下都能刺激侧根的形成。然而,细菌对植物镉积累的影响尚未确定。此外,GRC140在镉植物提取中的作用仍知之甚少。在这项工作中,建立了一种无菌水培的[植物名称未提及]培养体系。这些植物被用于评估无菌植物中镉胁迫的影响,并确定GRC140和外源吲哚乙酸(IAA)对[植物名称未提及]镉耐受性和镉吸收的影响。测定了生物量产量、总叶绿素含量、根电解质渗漏、过氧化氢酶活性、总谷胱甘肽含量和镉含量。结果表明,镉以剂量依赖的方式降低地上部生物量,并增加根组织中的总谷胱甘肽和镉含量。此外,GRC140增加了镉向地上部的转运,而IAA增加了植物根部的镉积累,这表明两种处理都增加了[植物名称未提及]植物对镉的去除。这些结果表明,水培系统中的无菌植物足以评估镉对植物的影响,并表明通过应用GRC140和外源IAA可以提高[植物名称未提及]的植物提取能力。