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Arbuscular mycorrhizal fungi in the rhizosphere of Macaranga denticulata Muell. Arg., and their effect on the host plant

机译:Macaranga denticulata Muell根际的丛枝菌根真菌。精氨酸及其对寄主植物的影响

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摘要

A fallow enriching tree, Macaranga denticulata Muell. Arg., has been shown to increase rice yield in a rotational shifting cultivation system in northern Thailand through increased accumulation of mineral nutrients. As arbuscular mycorrhizal (AM) fungi may play an important role in nutrient accumulation, AM fungi in the rhizosphere of M. denticulata and the effects of the indigenous soil inoculum on the host plant were investigated. The diversity and abundance of AM fungi were documented for the rhizosphere of M. denticulata in the field for two years. Based on morphology, 29 species of AM fungi were found in the rhizosphere of M. denticulata growing in farmers’ fields. Root colonization ranged from 63.5 to 81.5% in the first year and 68.7 to 79.9% in the second year of study. The highest spore density was observed at the end of the wet season. The effects of indigenous soil inoculum, and N and P fertilizers on the host plant were investigated in pots for four months. Inoculation with soil-containing AM fungi strongly increased plant growth and nutrient contents when P was limiting but N was applied. Application of N and P together strongly depressed root colonization and spore density of AM fungi, whereas applying them separately had much less effect. AM fungi may play an important role in nutrient accumulation in M. denticulata-rich fallow and thus in nutrient cycling that is beneficial to the maintenance of upland rice yield and sustainability of the rotational shifting cultivation system.
机译:休闲树,Macaranga denticulata Muell。在泰国北部,轮作栽培系统中的精氨酸已显示出通过增加矿质养分的积累来提高水稻产量。由于丛枝菌根(AM)真菌可能在养分积累中起重要作用,因此研究了M. denticulata根际中的AM真菌,并研究了土壤接种物对寄主植物的影响。记录了田野中M. denticulata根际的AM真菌的多样性和丰富性,为期两年。根据形态,在农民田间种植的M. denticulata的根际发现了29种AM真菌。在研究的第一年,根系定植的范围为63.5%至81.5%,第二年为68.7%至79.9%。在雨季结束时观察到最高的孢子密度。在盆中调查了四个月的本地土壤接种物以及氮和磷肥料对寄主植物的影响。当限制P但施用N时,接种含土壤的AM真菌可大大提高植物的生长和养分含量。氮和磷一起施用会严重抑制AM真菌的根部定植和孢子密度,而单独施用则效果较差。 AM真菌可能在富营养的小齿藻中的养分积累中发挥重要作用,从而在养分循环中发挥重要作用,这有利于维持旱稻产量和轮作栽培系统的可持续性。

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