Novel endophytic fungus Leptosphaeria sp. strain T-2 improves plant growth and environmental stress tolerance.

Taku Yamaguchi, Ryota Kataoka
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Abstract

Drought and salinity stress pose threats to agricultural production in drylands. Although breeding and genetic modification techniques have been employed to develop drought- and salt-tolerant crops, these methods are costly and risky. Hence, the potential application of endophytic fungi in dryland agriculture is being explored as a novel approach in improving plant tolerance to environmental stress. In this study, endophytic fungi with growth-promoting effects were isolated, characterized, and evaluated in terms of their ability to confer drought and stress tolerance to their host plants. Seventy-seven growth-promoting endophytic fungi belonging to 20 genera were isolated from barley roots; of these, strain T-2 elicited remarkable effects on plant growth parameters. Phylogenetic analysis revealed that strain T-2 belongs to genus Leptosphaeria, whose members are generally known as plant pathogens. Thus, Leptosphaeria sp. strain T-2 is a novel endophytic fungus that promotes plant growth. Moreover, it alleviated growth inhibition caused drought and salinity stress, as evidenced by the survival and maintained health of lettuce plants inoculated with strain T-2. The results of this study suggest that strain T-2 can be applied as a biofertilizer to improve agricultural production in drylands.

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新型内生真菌细螺旋体(Leptosphaeria sp.) T-2改善植物生长和环境胁迫耐性。
干旱和盐胁迫对旱地的农业生产构成威胁。尽管育种和基因改造技术已被用于培育耐旱和耐盐作物,但这些方法既昂贵又有风险。因此,内生真菌作为提高植物抗逆性的新途径,在旱地农业中的潜在应用正在被探索。在这项研究中,具有生长促进作用的内生真菌被分离、表征,并根据其赋予寄主植物干旱和胁迫耐受性的能力进行评估。从大麦根中分离得到促生长内生真菌77株,隶属20属;其中,菌株T-2对植株生长参数影响显著。系统发育分析表明,菌株T-2属于钩端绦虫属,其成员通常被称为植物病原体。因此,细螺旋体菌T-2是一种促进植物生长的新型内生真菌。此外,接种菌株T-2后,生菜植株的存活和健康状况得到了改善,缓解了干旱和盐胁迫引起的生长抑制。本研究结果表明,菌株T-2可以作为生物肥料用于改善旱地农业生产。
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Candidate genes associated with low temperature tolerance in cucumber adult plants identified by combining GWAS & QTL mapping. Novel endophytic fungus Leptosphaeria sp. strain T-2 improves plant growth and environmental stress tolerance. Utilizing effector-triggered immunity (ETI) as a robust priming agent to protect plants from pathogens. CsLAC4, regulated by CsmiR397a, confers drought tolerance to the tea plant by enhancing lignin biosynthesis. Correction: Zinc metalloprotease FgM35, which targets the wheat zinc-binding protein TaZnBP, contributes to the virulence of Fusarium graminearum.
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