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Tall fescue cultivar and fungal endophyte combinations influence plant growth and root exudate composition

机译:高羊茅品种和真菌内生菌的结合会影响植物的生长和根系分泌物的组成

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摘要

Tall fescue [Lolium arundinaceum (Schreb.)] is a cool-season perennial grass used in pastures throughout the Southeastern United States. The grass can harbor a shoot-specific fungal endophyte (Epichloë coenophiala) thought to provide the plant with enhanced resistance to biotic and abiotic stresses. Because alkaloids produced by the common variety of the endophyte cause severe animal health issues, focus has been on replacing the common-toxic strain with novel varieties that do not produce the mammal-toxic alkaloids but maintain abiotic and biotic stress tolerance benefits. Little attention has been given to the influence of the plant-fungal symbiosis on rhizosphere processes. Therefore, our objective was to study the influence of this relationship on plant biomass production and root exudate composition in tall fescue cultivars PDF and 97TF1, which were either not infected with the endophyte (E-), infected with the common toxic endophyte (CTE+) strain or with one of two novel endophytes (AR542E+, AR584E+). Plants were grown sterile for 3 weeks after which plant biomass, total organic carbon, total phenolic content and detailed chemical composition of root exudates were determined. Plant biomass production and exudate phenolic and organic carbon content were influenced by endophyte status, tall fescue cultivar, and their interaction. GC-TOF MS identified 132 compounds, including lipids, carbohydrates and carboxylic acids. Cluster analysis showed that the interaction between endophyte and cultivar resulted in unique exudate profiles. This is the first detailed study to assess how endophyte infection, notably with novel endophytes, and tall fescue cultivar interact to influence root exudate composition. Our results illustrate that tall fescue cultivar and endophyte status can influence plant growth and root exudate composition, which may help explain the observed influence of this symbiosis on rhizosphere biogeochemical processes.
机译:高羊茅[Lolium arundinaceum(Schreb。)]是一种凉爽的多年生多年生草,用于美国东南部的牧场。草中可以带有芽特异性真菌内生菌(Epichloëcoenophiala),被认为可以增强植物对生物和非生物胁迫的抵抗力。由于内生菌常见品种产生的生物碱会引起严重的动物健康问题,因此,人们一直致力于用不产生哺乳动物毒性生物碱但保持非生物和生物胁迫耐受性的新品种替代常见毒性菌株。很少有人关注植物-真菌共生对根际过程的影响。因此,我们的目的是研究这种关系对高羊茅品种PDF和97TF1的植物生物量生产和根系分泌物组成的影响,这些品种既未感染内生菌(E-),又未感染普通有毒内生菌(CTE +)菌株或带有两种新型内生菌之一(AR542E +,AR584E +)。使植物无菌生长3周,然后确定植物生物量,总有机碳,总酚含量和根系分泌物的详细化学组成。内生菌的状态,高羊茅的品种及其相互作用对植物生物量的产生以及分泌液中酚和有机碳含量的影响。 GC-TOF MS鉴定出132种化合物,包括脂质,碳水化合物和羧酸。聚类分析表明,内生菌与品种之间的相互作用导致了独特的渗出液分布。这是首次详细评估内生菌感染(尤其是新型内生菌)与高羊茅品种相互作用如何影响根系分泌物成分的详细研究。我们的结果表明,高羊茅的品种和内生植物的状况可以影响植物的生长和根系分泌物的成分,这可能有助于解释这种共生对根际生物地球化学过程的影响。

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