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首页> 外文期刊>Plant and Soil >Endophytic fungi (Neotyphodium coenophialum) affect the growth and mineral uptake, transport and efficiency ratios in tall fescue (Festuca arundinacea).
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Endophytic fungi (Neotyphodium coenophialum) affect the growth and mineral uptake, transport and efficiency ratios in tall fescue (Festuca arundinacea).

机译:内生真菌(Neotyphodium coenophialum)影响高羊茅(Festuca arundinacea)的生长以及矿物质的吸收,运输和效率比。

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摘要

Neotyphodium coenophialum interacts mutualistically with its host grasses. Tall fescue (Festuca arundinacea Schreb.) plants infected by the fungal endophyte, Neotyphodium coenophialum (Morgan-Jones and Gams) Glenn, Bacon and Hanlin, often perform better than non-infected plants, especially in limited resource environments. However, there is a scarcity of information about endophyte-grass ecotypes interaction in Andisols of temperate regions. Clones of three tall fescue ecotypes (Fukaura, Koiwai and Showa) either infected with N. coenophialum (E+) or noninfected (E-) were grown in Andisols (Black Andisol: naturally low content of phosphorus, high in other nutrients; Red Andisol: naturally high content of phosphorus, low in other nutrients) for 133 days in a controlled environment. Cumulative shoot dry weight, daily regrowth rates (tiller number, plant height and shoot dry matter) after clippings and nutrient uptake, transport and efficiency ratios were measured. In Black Andisol, E+ plants had significantly higher cumulative shoot dry weight as well as daily regrowth rates than E- plants, while in Red Andisol the reverse was true. Among the ecotypes studied, Showa had the highest shoot growth. Significantly higher phosphorus (P), potassium (K), calcium (Ca) and magnesium (Mg) uptake as well as transport were identified in E+ vs. E- plants grown in Black Andisol. With few exceptions, values for nutrient efficiency ratios were not significantly different between E+ and E- plants grown in both soils. Significant three-way interaction (endophyte x ecotype x soil) for cumulative shoot dry weight and regrowth rate revealed that the ecotype specific regrowth responses to endophyte infection were depended on soil nutrient conditions. Vegetative growth and nutrient acquisition in tall fescue varied with ecotype and were modified by abiotic (soil fertility status) as well as biotic (endophyte infection) factors..
机译:拟南芥新孢子虫与其寄主草相互作用。受真菌内生菌Glenty,Bacon和Hanlin真菌内生真菌Neotyphodium coenophialum(Morgan-Jones and Gams)感染的高羊茅(Festuca arundinacea Schreb。)植物通常比未感染的植物表现更好,特别是在资源有限的环境中。然而,在温带地区的Andisols中缺乏关于内生植物-草生态型相互作用的信息。在猪iso中生长了三种高羊茅生态型(深浦,小岩井和昭和)的克隆(被粪便猪笼草(E +)或未被感染(E-))(黑安地索尔:自然磷含量低,其他养分含量高;红色安地索尔:在受控的环境中,自然而然地含有高含量的磷,而其他营养素含量低)133天。测量剪枝后的枝条累积干重,日生长率(分iller数,株高和枝条干物质)以及养分吸收,转运和效率比。在黑色Andisol中,E +植物的累积枝干干重和日生长率明显高于E-植物,而在Red Andisol中则相反。在研究的生态型中,昭和的枝条生长最高。在Black Andisol中生长的E +与E-植物中,磷(P),钾(K),钙(Ca)和镁(Mg)的摄取和转运均显着提高。除少数例外,两种土壤中生长的E +和E-植物的养分效率比值均无显着差异。累积枝干重量和再生速率的显着三向相互作用(内生菌x生态型x土壤)表明,生态型对内生菌感染的特异性再生长响应取决于土壤养分状况。高羊茅的营养生长和养分获取随生态类型而变化,并受到非生物(土壤肥力状态)和生物(内生细菌感染)因素的影响。

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