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添加堆肥可促进丛枝菌根真菌的菌丝生长和孢子形成,且不影响其在土壤中的群落组成。

Compost Addition Enhanced Hyphal Growth and Sporulation of Arbuscular Mycorrhizal Fungi without Affecting Their Community Composition in the Soil.

作者信息

Yang Wei, Gu Siyu, Xin Ying, Bello Ayodeji, Sun Wenpeng, Xu Xiuhong

机构信息

College of Resources and Environment, Northeast Agricultural University, Harbin, China.

Institute of New Rural Development, Northeast Agricultural University, Harbin, China.

出版信息

Front Microbiol. 2018 Feb 7;9:169. doi: 10.3389/fmicb.2018.00169. eCollection 2018.

Abstract

Arbuscular mycorrhizal (AM) fungi form symbiotic associations with most crop plant species in agricultural ecosystems, and are conspicuously influenced by various agricultural practices. To understand the impact of compost addition on AM fungi, we examined effect of four compost rates (0, 11.25, 22.5, and 45 Mg/ha) on the abundance and community composition of AM fungi in seedling, flowering, and mature stage of soybean in a 1-year compost addition experiment system in Northeast China. Soybean [ (L.) Merrill] was used as test plant. Moderate (22.5 Mg/ha) and high (45 Mg/ha) levels of compost addition significantly increased AM root colonization and extraradical hyphal (ERH) density compared with control, whereas low (11.5 Mg/ha) level of compost addition did not cause significant increase in AM root colonization and ERH density. AM fungal spore density was significantly enhanced by all the compost rates compared with control. The temporal variations analysis revealed that, AM root colonization in seedling stage was significantly lower than in flowering and mature stage. Although AM fungal operational taxonomic unit richness and community composition was unaffected by compost addition, some abundant AM fungal species showed significantly different response to compost addition. In mature stage, showed increasing trend along with compost addition gradient, whereas the opposite was observed with sp. In addition, AM fungal community composition exhibited significant temporal variation during growing season. Further analysis indicated that the temporal variation in AM fungal community only occurred in control treatment, but not in low, moderate, and high level of compost addition treatments. Our findings highlighted the significant effects of compost addition on AM growth and sporulation, and emphasized that growth stage is a stronger determinant than 1-year compost addition in shaping AM fungal community in black soil of Northeast China.

摘要

丛枝菌根(AM)真菌与农业生态系统中的大多数作物品种形成共生关系,并受到各种农业实践的显著影响。为了解添加堆肥对AM真菌的影响,我们在中国东北一个为期1年的堆肥添加实验系统中,研究了四种堆肥施用量(0、11.25、22.5和45 Mg/公顷)对大豆幼苗期、开花期和成熟期AM真菌丰度及群落组成的影响。选用大豆[(L.) Merrill]作为试验植物。与对照相比,中等(22.5 Mg/公顷)和高(45 Mg/公顷)水平的堆肥添加显著增加了AM根定殖和根外菌丝(ERH)密度,而低(11.5 Mg/公顷)水平的堆肥添加未导致AM根定殖和ERH密度显著增加。与对照相比,所有堆肥施用量均显著提高了AM真菌孢子密度。时间变化分析表明,幼苗期的AM根定殖显著低于开花期和成熟期。虽然AM真菌的操作分类单元丰富度和群落组成不受堆肥添加的影响,但一些丰富的AM真菌物种对堆肥添加表现出显著不同的反应。在成熟期, 随堆肥添加梯度呈增加趋势,而 种则相反。此外,AM真菌群落组成在生长季节表现出显著的时间变化。进一步分析表明,AM真菌群落的时间变化仅发生在对照处理中,而在低、中、高堆肥添加处理中未发生。我们的研究结果突出了堆肥添加对AM生长和孢子形成的显著影响,并强调生长阶段在塑造中国东北黑土中AM真菌群落方面比为期1年的堆肥添加是更强的决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5137/5808307/faf8d7caf05c/fmicb-09-00169-g001.jpg

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