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首页> 外文期刊>Fungal Ecology >The root endophytic fungus Curvularia geniculata from Parthenium hysterophorus roots improves plant growth through phosphate solubilization and phytohormone production
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The root endophytic fungus Curvularia geniculata from Parthenium hysterophorus roots improves plant growth through phosphate solubilization and phytohormone production

机译:来自 Parthenium hysterophorus 根的根内生真菌 Curvularia geniculata 通过磷酸盐溶解和植物激素产生来改善植物生长

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摘要

The plant growth promoting ability of Curvularia geniculata (Tracy amp; Earle) Boedijn, a dark septate endophyte (DSE) fungus isolated from Parthenium hysterophorus L, was examined under in-vitro conditions for the first time. The abilities of the fungus to solubilize different sources of phosphorus (P) AlPO4, FePO4 and Ca-3(PO4)(2) and to produce indole acetic acid (IAA) were also determined. C geniculatainoculated pigeon pea (Cajanus cajan) plants exhibited superior growth over uninoculated control plants and the fungus solubilized different sources of P in the order of FePO4>AlPO4>Ca-3(PO4)(2). The pH of the culture medium, fungal biomass production and acid phosphatase activity was significantly influenced by phosphate source and incubation period. IAA production, confirmed by chromatographic analysis, increased with increasing concentrations of tryptophan in a non-linear manner. It can be concluded from the results that C. geniculata mediates plant growth through phosphate solubilization and phytohormone production. This would enable the use of this fungus as bioinoculant in plant production systems. (C) 2017 Elsevier Ltd and British Mycological Society. All rights reserved.
机译:首次在体外条件下研究了从Parthenium hysterophorus L中分离得到的深色隔膜内生菌(DSE)真菌Curvularia geniculata(Tracy&Earle)Boedijn的植物生长促进能力。还测定了真菌溶解不同来源的磷(P)[AlPO4、FePO4和Ca-3(PO4)(2)]和产生吲哚乙酸(IAA)的能力。接种木豆的木豆(Cajanus cajan)植株比未接种的对照植株生长优越,真菌按照FePO4>AlPO4>Ca-3(PO4)(2)的顺序溶解了不同来源的P。培养基pH值、真菌生物量产量和酸性磷酸酶活性受磷酸盐来源和孵育期的显著影响。经色谱分析证实,IAA的产生量随着色氨酸浓度的增加而以非线性方式增加。从结果可以得出结论,C. geniculata通过磷酸盐溶解和植物激素的产生介导植物生长。这将使这种真菌能够在植物生产系统中用作生物接种剂。(C) 2017年爱思唯尔有限公司和英国真菌学会。保留所有权利。

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