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土壤湿度——丛枝菌根真菌群落组装及共生磷吸收的调节因子。

Soil moisture--a regulator of arbuscular mycorrhizal fungal community assembly and symbiotic phosphorus uptake.

作者信息

Deepika Sharma, Kothamasi David

机构信息

Laboratory of Soil Biology and Microbial Ecology, Department of Environmental Studies, University of Delhi, 110007, Delhi, India.

出版信息

Mycorrhiza. 2015 Jan;25(1):67-75. doi: 10.1007/s00572-014-0596-1. Epub 2014 Aug 2.

Abstract

Multiple species of arbuscular mycorrhizal fungi (AMF) can colonize roots of an individual plant species but factors which determine the selection of a particular AMF species in a plant root are largely unknown. The present work analysed the effects of drought, flooding and optimal soil moisture (15-20 %) on AMF community composition and structure in Sorghum vulgare roots, using PCR-RFLP. Rhizophagus irregularis (isolate BEG 21), and rhizosphere soil (mixed inoculum) of Heteropogon contortus, a perennial C4 grass, collected from the semi-arid Delhi ridge, were used as AMF inocula. Soil moisture functioned as an abiotic filter and affected AMF community assembly inside plant roots by regulating AMF colonization and phylotype diversity. Roots of plants in flooded soils had lowest AMF diversity whilst root AMF diversity was highest under the soil moisture regime of 15-20 %. Although plant biomass was not affected, root P uptake was significantly influenced by soil moisture. Plants colonized with R. irregularis or mixed AMF inoculum showed higher root P uptake than non-mycorrhizal plants in drought and control treatments. No differences in root P levels were found in the flooded treatment between plants colonized with R. irregularis and non-mycorrhizal plants, whilst under the same treatment, root P uptake was lower in plants colonized with mixed AMF inoculum than in non-mycorrhizal plants.

摘要

多种丛枝菌根真菌(AMF)能够定殖于单个植物物种的根系,但决定植物根系中特定AMF物种选择的因素在很大程度上尚不清楚。本研究利用PCR-RFLP分析了干旱、水淹和最佳土壤湿度(15%-20%)对高粱根系中AMF群落组成和结构的影响。从半干旱的德里山脊采集的多年生C4禾本科植物黄牛鞭草的不规则根孢囊霉(分离株BEG 21)和根际土壤(混合接种物)被用作AMF接种物。土壤湿度起到非生物过滤器的作用,通过调节AMF定殖和系统发育型多样性影响植物根系内的AMF群落组装。水淹土壤中植物的根系具有最低的AMF多样性,而在15%-20%的土壤湿度条件下,根系AMF多样性最高。虽然植物生物量未受影响,但根系对磷的吸收受到土壤湿度的显著影响。在干旱和对照处理中,接种不规则根孢囊霉或混合AMF接种物的植物比未接种菌根的植物表现出更高的根系磷吸收。在水淹处理中,接种不规则根孢囊霉的植物和未接种菌根的植物之间根系磷水平没有差异,而在相同处理下,接种混合AMF接种物的植物根系磷吸收低于未接种菌根的植物。

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