落叶和水分胁迫下的荷花和月桂共培养

I. García
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引用次数: 2

摘要

在盆栽试验条件下,研究了不同落叶频率(低、高)和水分胁迫(过量或不足)对荷花和月桂共培养生物量、磷氮营养及与原生土壤微生物共生的影响。叶片脱落频率和水分胁迫的共同作用影响了植物的累积地上部生物量。在不同的水分条件下,无叶和无叶植物的根生物量基本一致,而无叶和无叶植物的根生物量基本一致。在浸水土壤中,低频率和高频率的落叶可被认为是羊草和冬青草共培养的最大压力情景。两种因素均影响毛茛根中丛枝菌根真菌的定殖和暗隔内生菌在毛茛根中的定殖,水分胁迫仅影响毛茛根中丛枝菌根的定殖。这两种植物都能耐受落叶和水分胁迫,这是由于营养物质和碳化合物从根向芽的转运以及对磷和氮的吸收(加上对氮的固定)之间的相互作用。这两种植物都能耐受落叶和水分胁迫,这是由于营养物质和碳化合物从根到茎的转运以及磷和氮的吸收(加上茎中的氮固定)之间的相互作用。在浸水土壤中,低频率和高频率的落叶可被认为是网球和黄花蒿共培养的最大压力情景。在水分充足和亏水条件下,叶片脱落频率增加了AM在植物根系中的定植。AM真菌和DSE共定植于黄花蒿根。在豆科-禾草群落中,通过低落叶频率促进禾草的存在,可以在维持AM共生的同时提高牧草产量和品质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lotus tenuis and Schedonorus arundinaceus co-culture exposed to defoliation and water stress
The present study aimed to investigate the effect of defoliation frequency (low and high) and water stress (excess or deficit) on biomass production, P and N nutrition, and symbiosis with native soil microorganisms on a Lotus tenuis and Schedonorus arundinaceus co-culture in a pot experiment. Combined effects of defoliation frequency and water stress affected plant accumulated shoot biomass. L. tenuis root biomass decreased in response to defoliation and water stress, while S. arundinaceus root biomass was similar between non-defoliated and defoliated plants, at all water levels. Low and high frequencies of defoliation in a waterlogged soil can be considered the most stressful scenario for L. tenuis and S. arundinaceus co-culture. Colonization of arbuscular mycorrhizal fungi in L. tenuis roots and dark septate endophytes colonization in S. arundinaceus roots were affected by both factors, whereas arbuscular mycorrhizal colonization in S. arundinaceus was affected only by water stress. Both plants tolerated defoliation and water stress due to the interaction between the translocation of nutrients and carbon compounds from roots to shoots, and P and N absorption (plus N2 fixation in L. tenuis). Highlights: Both plants tolerated defoliation and water stress due to the interaction between the translocation of nutrients and carbon compounds from roots to shoots, and P and N absorption (plus N2 fixation in tenuis). Low and high frequencies of defoliation in a waterlogged soil can be considered the most stressful scenario for tenuis and S. arundinaceus co-culture. Defoliation frequency increased AM colonization in plant roots under well watered and water deficit conditions. arundinaceus roots were co-colonized by AM fungi and DSE. Promoting the presence of tenuis through low defoliation frequency would improve forage yield and quality with the maintenance of AM symbiosis in legume–grass communities.
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