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评估彩色豆马勃在增强桉树抗盐胁迫能力方面的有效性。

Evaluating the effectiveness of Pisolithus tinctorius in enhancing the Eucalyptus' resistance to salt stress.

作者信息

Zayed Mona S, Ahmed Aya G A, Selim Shawky M, Abd El-Fattah Dalia A

机构信息

Department of Agricultural Microbiology, Faculty of Agriculture, Ain Shams University, Cairo, Egypt.

Central Laboratory for Agricultural Climate, Agricultural Research Center, Dokki, Giza, Egypt.

出版信息

AMB Express. 2025 Jan 4;15(1):4. doi: 10.1186/s13568-024-01799-w.

Abstract

Afforestation projects on saline land, using Eucalyptus trees and ectomycorrhizal fungi, are crucial for restoring affected areas and promoting ecological and economic benefits, particularly in saline-affected areas. This study was conducted to isolate Pisolithus sp. and estimate its potential to improve the growth performance of Eucalyptus globulus seedlings under salt-stress conditions. Pisolithus sp. was isolated from mature sporocarps and identified through 18S rDNA. Pisolithus sp. was evaluated for its response to varying pH values, temperatures, and salinity levels. A pot experiment was conducted to assess the Pisolithus strain's effectiveness in reducing soil salinity's impact on the growth of Eucalyptus globulus seedlings in sandy soil. The identified Pisolithus tinctorius with an accession number of OM125275 revealed the highest mycelium dry weight of 0.09 g/100 ml medium at pH 5.8, 0.08 g/100 ml medium at 28 °C, and 0.12 g/100 ml medium at 4% NaCl. Eucalyptus globulus seedlings inoculated with Pisolithus tinctorius demonstrated significant improvement in most parameters compared to non-mycorrhizal (control) seedlings under salt stress. The seedlings inoculated with Pisolithus tinctorius and irrigated with 6 dS/m saline water revealed the highest shoot height (55.670 cm), root length (42.33 cm), shoot fresh weight (6.44 g/plant), root fresh weight (1.84 g/plant), shoot dry weight (2.37 g/plant), and root dry weight (0.810 g/plant) when compared to all treatments. Our findings suggest that selecting appropriate fungal strains is crucial for improving plant performance in saline conditions.

摘要

利用桉树和外生菌根真菌开展的盐碱地造林项目,对于恢复受影响地区以及促进生态和经济效益至关重要,尤其是在盐碱化地区。本研究旨在分离皮氏盘菌属菌种,并评估其在盐胁迫条件下改善蓝桉幼苗生长性能的潜力。从成熟子实体中分离出皮氏盘菌属菌种,并通过18S rDNA进行鉴定。评估了皮氏盘菌属菌种对不同pH值、温度和盐度水平的反应。进行了盆栽试验,以评估皮氏盘菌菌株在减轻土壤盐分对沙质土壤中蓝桉幼苗生长影响方面的有效性。鉴定出的编号为OM125275的彩色豆马勃在pH 5.8时菌丝体干重最高,为0.09 g/100 ml培养基;在28℃时为0.08 g/100 ml培养基;在4% NaCl时为0.12 g/100 ml培养基。与盐胁迫下的非菌根(对照)幼苗相比,接种彩色豆马勃的蓝桉幼苗在大多数参数上有显著改善。接种彩色豆马勃并用6 dS/m盐水灌溉的幼苗,与所有处理相比,其株高最高(55.670厘米)、根长最长(42.33厘米)、地上部鲜重最大(6.44克/株)、根鲜重最大(1.84克/株)、地上部干重最大(2.37克/株)、根干重最大(0.810克/株)。我们的研究结果表明,选择合适的真菌菌株对于改善盐碱条件下的植物性能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bebc/11700078/b317a4dbc0fd/13568_2024_1799_Fig1_HTML.jpg

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