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盐度和基因型对枣椰树苗根际真菌群落的影响。

The Effects of Salinity and Genotype on the Rhizospheric Mycobiomes in Date Palm Seedlings.

作者信息

Yaish Mahmoud W, Al-Busaidi Aya, Glick Bernard R, Ahmed Talaat, Alatalo Juha M

机构信息

Department of Biology, College of Sciences, Sultan Qaboos University, P.O. Box 36, Muscat 123, Oman.

Department of Biology, University of Waterloo, Waterloo, ON N2L 3G1, Canada.

出版信息

Biology (Basel). 2024 Mar 15;13(3):190. doi: 10.3390/biology13030190.

Abstract

Salinity severely affects the health and productivity of plants, with root-associated microbes, including fungi, potentially playing a crucial role in mitigating this effect and promoting plant health. This study employed metagenomics to investigate differences in the structures of the epiphyte mycobiomes in the rhizospheres of seedlings of two distinct date palm cultivars with contrasting salinity tolerances, the susceptible cultivar, 'Zabad', and the tolerant cultivar, 'Umsila'. Next-generation sequencing (NGS) of the internal transcribed spacer (ITS) rRNA was utilized as a DNA barcoding tool. The sequencing of 12 mycobiome libraries yielded 905,198 raw sequences of 268,829 high-quality reads that coded for 135 unique and annotatable operational taxonomic units (OTUs). An OTU analysis revealed differences in the rhizofungal community structures between the treatments regardless of genotype, and non-metric dimensional scaling (N-MDS) analyses demonstrated distinct separations between the cultivars under saline stress. However, these differences were not detected under the control environmental conditions, i.e., no salinity. The rhizospheric fungal community included four phyla (Ascomycota, Basidiomycota, Chytridiomycota, and Mucoromycota), with differences in the abundances of , , and genera in response to salinity, regardless of the genotype. Differential pairwise comparisons showed that and increased in abundance under saline conditions, providing potential future in vitro isolation guidelines for plant growth-promoting fungi. This study highlights the intricate dynamics of the rhizosphere microbial communities in date palms and their responses to salt stress. Additionally, we found no support for the hypothesis that indigenous epiphytic fungal communities are significantly involved in salinity tolerance in date palms.

摘要

盐度严重影响植物的健康和生产力,与根系相关的微生物,包括真菌,可能在减轻这种影响和促进植物健康方面发挥关键作用。本研究采用宏基因组学方法,调查了两个耐盐性不同的枣椰树品种幼苗根际附生真菌群落结构的差异,这两个品种分别是敏感品种“Zabad”和耐盐品种“Umsila”。利用内部转录间隔区(ITS)rRNA的下一代测序(NGS)作为DNA条形码工具。对12个真菌群落文库进行测序,产生了905,198条原始序列,其中268,829条高质量读段编码了135个独特且可注释的操作分类单元(OTU)。OTU分析表明,无论基因型如何,处理之间的根际真菌群落结构存在差异,非度量多维尺度分析(N-MDS)表明,在盐胁迫下,两个品种之间存在明显的分离。然而,在对照环境条件下,即无盐度条件下,未检测到这些差异。根际真菌群落包括四个门(子囊菌门、担子菌门、壶菌门和毛霉门),无论基因型如何,响应盐度时,、和属的丰度存在差异。差异成对比较表明,在盐胁迫条件下,和的丰度增加,为促进植物生长的真菌提供了未来潜在的体外分离指导。本研究突出了枣椰树根际微生物群落的复杂动态及其对盐胁迫的响应。此外,我们没有找到支持本土附生真菌群落显著参与枣椰树耐盐性这一假设的证据。

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