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在北非内盖夫沙漠的刺山柑和哈马达·斯科帕里亚根系区的微型真菌群落多样性。

Microfungal-community diversity in Zygophyllum dumosum and Hammada scoparia root zones in the northern Negev Desert.

机构信息

The Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan, Israel.

出版信息

J Basic Microbiol. 2013 Apr;53(4):390-400. doi: 10.1002/jobm.201100597. Epub 2012 Jun 26.

Abstract

The soil dilution plate method was used to determine the influences of perennial shrubs on the species diversity and density of cultivable microfungal communities inhabiting the root zones of two perennial shrubs, Zygophyllum dumosum and Hammada scoparia, in the northern Negev Desert, Israel. Soil samples were collected under the canopies of shrubs and the open spaces between them (serving as control) from five depths (0-10, 10-20, 20-30, 30-40, and 40-50 cm) during the wet and dry seasons of 2010. Fifty-one species belonging to 31 genera were identified from Zygomycota, teleomorphic and anamorphic Ascomycota, including Coelomycetes. During the wet and dry seasons, 4-10 and 2-6 species were identified at different soil depths beneath perennial shrubs and in the open spaces, while the corresponding colony-forming units (CFUs) varied from 3071 to 27687 and from 3201 to 15247 g(-1) dry soil. More diverse microfungal communities were collected in the vicinity of perennial shrubs compared to the open spaces during the wet season, while a reverse trend was observed during the dry season. Further study is needed to provide insights into the correlation between compounds of litter and root exudates of perennial shrubs and microfungal-community structure by a combination of molecular and physiological tools.

摘要

采用土壤稀释平板法,研究了多年生灌木对分布于以色列内盖夫北部荒漠两种多年生灌木(Zygophyllum dumosum 和 Hammada scoparia)根区可培养微生物群落物种多样性和密度的影响。于 2010 年旱、雨季,分别在灌木冠层下和冠层间(对照)采集 0-10、10-20、20-30、30-40 和 40-50 cm 等 5 个土层的土壤样品。从接合菌门、有性型和无性型子囊菌门中鉴定出 51 个种,归属于 31 个属,包括外囊菌目。旱、雨季,在不同土壤深度下,于灌木冠层下和冠层间分别鉴定出 4-10 种和 2-6 种微生物,相应的菌落形成单位(CFU)范围分别为 3071-27687 和 3201-15247 g(-1) 干土。与旱季相比,雨季时,在灌木周围采集到的微生物群落多样性更高,而在旱季则相反。需要进一步研究,利用分子和生理工具,深入了解枯枝落叶化合物与多年生灌木根渗出物与微生物群落结构之间的相关性。

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