Discovery of Epichloë as novel endophytes of Psathyrostachys lanuginosa in China and their alkaloid profiling

Taixiang Chen, Tian Wang, Mingxiang Du, Kamran Malik, Chunjie Li, Gensheng Bao
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Abstract

The Epichloë genus represents a significant group of above-ground endophytes extensively researched for their potential applications in agriculture and ecology. Additionally, Epichloë species synthesize bioactive alkaloids, which generally cause health problems in livestock and have detrimental effects on the performance of insect herbivores. Psathyrostachys lanuginosa serves as a valuable forage grass for livestock owing to its high nutritional value and resilience in adverse environmental conditions. Nevertheless, to date, no reports have documented Epichloë as endophytes of P. lanuginosa. In this study, four strains (PF5, PF9, QG2, and QG4) were isolated and identified through morphological, molecular, and phylogenetic analyses as endophytes of P. lanuginosa. Morphological analysis indicated colony characteristics and conidia features consistent with symbiotic Epichloë, with no significant differences observed in growth rates or conidia dimensions among the four strains. Phylogenetic analysis confirmed all strains as E. bromicola. Additionally, alkaloid biosynthetic genes were detected, revealing differences in the potential synthesis of peramine and indole diterpenoid alkaloids among strains from different geographic origins. However, all four E. bromicola strains exhibited similar potential for synthesizing ergot alkaloids, but not loline alkaloids. Overall, this study identified P. lanuginosa as a novel host for E. bromicola and provided insights into the alkaloid profiles of these strains, laying a solid foundation for the scientific and rational utilization of Epichloë resources.
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发现中国羊角芹的新型内生菌 Epichloë 及其生物碱分析
Epichloë 属是一个重要的地面内生菌群,因其在农业和生态学方面的潜在应用而受到广泛研究。此外,Epichloë 物种还能合成生物活性生物碱,这些生物碱通常会导致牲畜的健康问题,并对昆虫食草动物的表现产生不利影响。羊角芹营养价值高,对不利环境条件的适应能力强,是牲畜的重要饲料草。然而,迄今为止,还没有任何报告记载 Epichloë 是 P. lanuginosa 的内生菌。本研究分离了四株菌株(PF5、PF9、QG2 和 QG4),并通过形态学、分子和系统发育分析确定其为 P. lanuginosa 的内生菌。形态学分析表明,菌落特征和分生孢子特征与共生的 Epichloë 相符,四种菌株的生长速度和分生孢子大小没有明显差异。系统发育分析证实所有菌株都是 E. bromicola。此外,还检测到生物碱生物合成基因,揭示了来自不同地理起源的菌株在潜在合成过胺和吲哚二萜生物碱方面的差异。然而,所有四个 E. bromicola 菌株在合成麦角生物碱方面表现出相似的潜力,但不包括啉类生物碱。总之,这项研究确定了P. lanuginosa是E. bromicola的新宿主,并深入了解了这些菌株的生物碱特征,为科学合理地利用Epichloë资源奠定了坚实的基础。
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