Diversity and plant growth promotion potential of endophytic fungi isolated from hairy vetch in Japan.

IF 4.1 2区 生物学 Q1 PLANT SCIENCES Frontiers in Plant Science Pub Date : 2024-12-19 eCollection Date: 2024-01-01 DOI:10.3389/fpls.2024.1476200
Parisa Taheri, Khondoker M G Dastogeer, Safirah Tasa Nerves Ratu, Dominic V A Agyekum, Michiko Yasuda, Yoshiharu Fujii, Shin Okazaki
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Abstract

Hairy vetch (Vicia villosa Roth), a leguminous plant with nitrogen-fixing ability, is used as a cover crop and has the potential to suppress weeds and plant diseases. The microbial composition, particularly fungal endophytes, which may be related to the beneficial functions of this crop, has not been previously studied. In this study, we analyzed the diversity and function of culturable fungal endophytes associated with hairy vetch from eight locations across Japan. Using the fungal culture method, a total of 2,186 isolates were recovered and assigned to 80 distinct internal transcribed spacer (ITS) genotypes, spanning 28 genera. The results demonstrated that geographic location and soil physicochemical properties significantly influence the community composition of the hairy vetch fungal endophytes. Soil pH showed a significant positive correlation with the abundance of Penicillium, which was the most dominant genus in all the sampling locations and tissues. The majority of the isolates promoted plant growth and colonized hairy vetch and soybean roots, significantly promoting the growth of hairy vetch and/or soybean plants. Among the isolates, Penicillium griseofulvum AKL25 and Trichoderma koningii AKR15 significantly enhanced both hairy vetch and soybean growth, respectively. Meanwhile, Alternaria alternata OGL80 significantly increased soybean growth, but it did not affect hairy vetch growth, indicating host specificity of the fungal endophytes. In conclusion, this study showed that soil properties and geographic location play a critical role in shaping the community composition and structure of endophytic fungi associated with hairy vetch. Additionally, the isolated fungi promoted hairy vetch and soybean growth, with a host preference. Furthermore, this study revealed that a novel endophytic fungus, P. griseofulvum AKL25, which has high growth-promoting activity, can be utilized as a microbial inoculant to promote hairy vetch and soybean growth in sustainable agriculture.

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日本野豌豆内生真菌的多样性及其促进植物生长的潜力。
毛豆(Vicia villosa Roth)是一种具有固氮能力的豆科植物,被用作覆盖作物,具有抑制杂草和植物病害的潜力。微生物组成,特别是真菌内生菌,可能与该作物的有益功能有关,但以前没有研究过。在本研究中,我们分析了来自日本8个地点的毛豌豆相关的可培养真菌内生菌的多样性和功能。利用真菌培养方法,共分离得到2186株菌株,并将其划分为80个不同的ITS基因型,跨越28个属。结果表明,地理位置和土壤理化性质对毛缕豌豆内生真菌的群落组成有显著影响。土壤pH值与青霉菌丰度呈显著正相关,青霉菌在所有取样点和组织中均为最优势属。大部分分离菌株促进植物生长,并定植在毛豆和大豆根系上,显著促进毛豆和大豆植株的生长。其中,灰黄青霉AKL25和康宁木霉AKR15分别显著促进了毛豆和大豆的生长。同时,alternnaria alternata OGL80对大豆生长有显著的促进作用,但对毛豆生长没有影响,说明真菌内生菌具有寄主特异性。综上所述,土壤性质和地理位置对毛豆内生真菌的群落组成和结构具有重要影响。此外,分离出的真菌促进毛豆和大豆的生长,并具有寄主偏好。此外,本研究还揭示了一种具有高促生长活性的内生真菌P. griseofulvum AKL25可以作为微生物接种剂促进毛豆和大豆在可持续农业中的生长。
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来源期刊
Frontiers in Plant Science
Frontiers in Plant Science PLANT SCIENCES-
CiteScore
7.30
自引率
14.30%
发文量
4844
审稿时长
14 weeks
期刊介绍: In an ever changing world, plant science is of the utmost importance for securing the future well-being of humankind. Plants provide oxygen, food, feed, fibers, and building materials. In addition, they are a diverse source of industrial and pharmaceutical chemicals. Plants are centrally important to the health of ecosystems, and their understanding is critical for learning how to manage and maintain a sustainable biosphere. Plant science is extremely interdisciplinary, reaching from agricultural science to paleobotany, and molecular physiology to ecology. It uses the latest developments in computer science, optics, molecular biology and genomics to address challenges in model systems, agricultural crops, and ecosystems. Plant science research inquires into the form, function, development, diversity, reproduction, evolution and uses of both higher and lower plants and their interactions with other organisms throughout the biosphere. Frontiers in Plant Science welcomes outstanding contributions in any field of plant science from basic to applied research, from organismal to molecular studies, from single plant analysis to studies of populations and whole ecosystems, and from molecular to biophysical to computational approaches. Frontiers in Plant Science publishes articles on the most outstanding discoveries across a wide research spectrum of Plant Science. The mission of Frontiers in Plant Science is to bring all relevant Plant Science areas together on a single platform.
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