García-Espinoza Fabián, Quesada-Moraga Enrique, García Del Rosal María José, Yousef-Yousef Meelad
Departamento de Agronomía (DAUCO María de Maeztu Unit of Excellence 2021-2023), Campus de Rabanales, Universidad de Córdoba, Edif. C4, 14071 Cordoba, Spain.
Departamento de Parasitología, Universidad Autónoma Agraria Antonio Narro-Unidad Laguna, Periférico Raúl López Sánchez S/N, Torreón 27054, Coahuila, Mexico.
J Fungi (Basel). 2023 Feb 15;9(2):258. doi: 10.3390/jof9020258.
Endophytic insect pathogenic fungi have a multifunctional lifestyle; in addition to its well-known function as biocontrol agents, it may also help plants respond to other biotic and abiotic stresses, such as iron (Fe) deficiency. This study explores EAMa 01/58-Su strain attributes for Fe acquisition. Firstly, direct attributes include siderophore exudation (in vitro assay) and Fe content in shoots and in the substrate (in vivo assay) were evaluated for three strains of and . The EAMa 01/58-Su strain showed a great ability to exudate iron siderophores (58.4% surface siderophores exudation) and provided higher Fe content in both dry matter and substrate compared to the control and was therefore selected for further research to unravel the possible induction of Fe deficiency responses, Ferric Reductase Activity (FRA), and relative expression of Fe acquisition genes by qRT-PCR in melon and cucumber plants.. In addition, root priming by EAMa 01/58-Su strain elicited Fe deficiency responses at transcriptional level. Our results show an early up-regulation (24, 48 or 72 h post inoculation) of the Fe acquisition genes , , , , and as well as the FRA. These results highlight the mechanisms involved in the Fe acquisition as mediated by IPF EAMa 01/58-Su strain.
内生昆虫病原真菌具有多功能的生活方式;除了作为生物防治剂这一广为人知的功能外,它还可能帮助植物应对其他生物和非生物胁迫,如缺铁胁迫。本研究探索了EAMa 01/58-Su菌株获取铁的特性。首先,对三株[具体菌株名称未给出]的直接特性进行了评估,包括铁载体分泌(体外测定)以及地上部和基质中的铁含量(体内测定)。EAMa 01/58-Su菌株表现出很强的分泌铁载体的能力(表面铁载体分泌率为58.4%),与对照相比,其干物质和基质中的铁含量更高,因此被选用于进一步研究,以揭示甜瓜和黄瓜植株中缺铁反应、铁还原酶活性(FRA)以及铁获取基因相对表达可能的诱导情况,并通过qRT-PCR进行检测。此外,EAMa 01/58-Su菌株的根际促生作用在转录水平引发了缺铁反应。我们 的结果显示,铁获取基因[具体基因名称未给出]以及FRA在接种后24、48或72小时出现早期上调。这些结果突出了IPF EAMa 01/58-Su菌株介导的铁获取所涉及的机制。