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首页> 外文期刊>Soil Biology & Biochemistry >Changes in soil aggregation and glomalin-related soil protein content as affected by the arbuscular mycorrhizal fungal species Glomus mosseae and Glomus intraradices
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Changes in soil aggregation and glomalin-related soil protein content as affected by the arbuscular mycorrhizal fungal species Glomus mosseae and Glomus intraradices

机译:丛枝菌根真菌物种Glosus mosseae和Glomus intraradices对土壤聚集和gloomalin相关土壤蛋白质含量的影响

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摘要

Arbuscular mycorrhizal (AM) fungi are key organisms of the soil/plant system, influencing soil fertility and plant nutrition, and contributing to soil aggregation and soil structure stability by the combined action of extraradical hyphae and of an insoluble, hydrophobic proteinaceous substance named glomalin-related soil protein (GRSP). Since the GRSP extraction procedures have recently revealed problems related to co-extracting substances, the relationship between GRSP and AM fungi still remains to be verified. In this work the hypothesis that GRSP concentration is positively correlated with the occurrence of AM fungi was tested by using Medicago sativa plants inoculated with different isolates of Glomus mosseae and Glomus intraradices in a microcosm experiment. Our results show that (i) mycorrhizal establishment produced an increase in GRSP concentration - compared to initial values - in contrast with non-mycorrhizal plants, which did not produce any change; (ii) aggregate stability, evaluated as mean weight diameter (MWD) of macroaggregates of 1-2 mm diameter, was significantly higher in mycorrhizal soils compared to non-mycorrhizal soil; (iii) GRSP concentration and soil aggregate stability were positively correlated with mycorrhizal root volume and weakly correlated with total root volume; (iv) MWD values of soil aggregates were positively correlated with values of total hyphal length and hyphal density of the AM fungi utilized.
机译:丛枝菌根(AM)真菌是土壤/植物系统的关键生物,影响土壤肥力和植物营养,并通过根外菌丝和不溶性疏水蛋白质物质glomalin-的共同作用,促进土壤聚集和土壤结构稳定性。相关土壤蛋白(GRSP)。由于GRSP提取程序最近发现了与共提取物质有关的问题,因此GRSP与AM真菌之间的关系仍有待验证。在这项工作中,通过在微观世界实验中使用接种了不同的分离的Glomus mosseae和Glomus intraradices的紫花苜蓿植物,检验了GRSP浓度与AM真菌的发生呈正相关的假设。我们的结果表明:(i)菌根的建立与初始值相比增加了GRSP浓度,而非菌根植物则没有任何变化。 (ii)与非菌根土壤相比,菌根土壤中的骨料稳定性(以直径为1-2 mm的大骨料的平均重量直径(MWD)评估)明显更高; (iii)GRSP浓度和土壤团聚体稳定性与菌根根数呈正相关,与根总根数呈弱相关; (iv)土壤团聚体的MWD值与所用AM真菌的总菌丝长度和菌丝密度值呈正相关。

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