促进水稻在逆境条件下的生长:暗隔内生菌在耐盐缺水中的作用。

IF 2.6 2区 生物学 Q2 MYCOLOGY
Esther Lalthazuali, Badaiahun Marwein, Hmingremhlua Sailo, P S Lalbiaktluanga, Mc F Vanlalmuana, Lalfakzuala Ralte
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引用次数: 0

摘要

由于盐和水资源短缺压力的增加,全球变暖日益挑战农业生产力。为了应对这些挑战,本研究调查了来自印度米佐拉姆邦Khawrihnim村的暗隔内生菌(DSEs)提高旱稻(Oryza sativa)耐受性的潜力。本研究鉴定了两个DSE物种——迷走Acrocalymma vagum和chlamydospora Alternaria chlamydospora,并研究了它们增强植物对盐和缺水胁迫的适应能力的潜力。结果表明,两种DSE物种对水稻种子萌发、生物量积累和盐缺水条件下的氧化胁迫反应均有显著影响。在高应力水平(-0.90 MPa)下,生物量增加,提示可能的耐应力机制。胁迫条件下超氧化物歧化酶活性的增加和丙二醛水平的降低强调了DSE减轻植物活性氧和脂质过氧化的能力。此外,DSEs作为生物肥料,种子和芽的发芽率显著提高了60%,特别是在直接处理中。这些研究结果强调了DSEs作为生物肥料对提高植物在不利环境条件下的发育和抗逆性的作用。它们增强非生物胁迫恢复能力和促进农业可持续性的能力为提高作物产量提供了重要机会,特别是在易受胁迫的地区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing rice growth in adverse conditions: the role of dark septate endophytes in salt and water scarcity tolerance.

Global warming increasingly challenges agricultural productivity due to rising salt and water scarcity stress. In response to these challenges, the present study investigates the potential of dark septate endophytes (DSEs) from Khawrihnim Village, Mizoram, India, to enhance the tolerance of upland rice (Oryza sativa). Two DSE species, Acrocalymma vagum and Alternaria chlamydospora, were identified and examined for their potential enhancement of plant resilience to salt and water scarcity stress. The result showed that both DSE species substantially impacted rice seed germination, biomass accumulation, and oxidative stress responses under salt and water scarcity conditions. Biomass content was augmented under elevated stress levels (-0.90 MPa), suggesting possible stress tolerance mechanisms. Increased superoxide dismutase activity and diminished malondialdehyde levels under stress conditions underscored the DSE's capacity to alleviate reactive oxygen species and lipid peroxidation in plants. Furthermore, seed and shoot germination rates were markedly enhanced by 60% using DSEs as biofertilizers, particularly evident in direct treatments. These findings highlight the efficacy of the DSEs Acrocalymma vagum and Alternaria chlamydospore as biofertilizers to enhance plant development and resilience in adverse environmental conditions. Their capacity to augment abiotic stress resilience and promote agricultural sustainability presents a significant opportunity for enhancing crop output, especially in areas susceptible to stress.

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来源期刊
Mycologia
Mycologia 生物-真菌学
CiteScore
6.20
自引率
3.60%
发文量
56
审稿时长
4-8 weeks
期刊介绍: International in coverage, Mycologia presents recent advances in mycology, emphasizing all aspects of the biology of Fungi and fungus-like organisms, including Lichens, Oomycetes and Slime Molds. The Journal emphasizes subjects including applied biology, biochemistry, cell biology, development, ecology, evolution, genetics, genomics, molecular biology, morphology, new techniques, animal or plant pathology, phylogenetics, physiology, aspects of secondary metabolism, systematics, and ultrastructure. In addition to research articles, reviews and short notes, Mycologia also includes invited papers based on presentations from the Annual Conference of the Mycological Society of America, such as Karling Lectures or Presidential Addresses.
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