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首页> 外文期刊>Acta Physiologiae Plantarum >Growth-promoting bioactivities of Bipolaris sp. CSL-1 isolated from Cannabis sativa suggest a distinctive role in modifying host plant phenotypic plasticity and functions
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Growth-promoting bioactivities of Bipolaris sp. CSL-1 isolated from Cannabis sativa suggest a distinctive role in modifying host plant phenotypic plasticity and functions

机译:生长促进Bipolaris sp的生物活性。 从Cannabis Sativa隔离的CSL-1表明在修改宿主植物表型可塑性和功能方面的作用是一种独特的作用

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Endophytic fungi have been considered as strong plant growth promoters due to phytohormones production. The current study reports the isolation of endophytic fungi from bio-prospective medicinal plant cannabis sativa. Endophytic fungus Bipolaris sp. CSL-1 from the leaves of C. sativa was isolated. Culture filtrate (CF) was primarily investigated for indole-3-acetic acid (IAA) and gibberellins (GAs) and was further evaluated for its capability to enhance mutant Waito-C rice growth attributes. A variety of plant growth characteristics, including seedling length, seedling biomass, and chlorophyll content, were significantly promoted by the CF, and the growth-promoting effect was due to IAA and various GAs in the CF. Gas chromatography/mass spectrometry analysis revealed the quantities (ng/mL) of various GAs, including GA(1) (0.758 +/- 0.005), GA(3) (0.00015 +/- 0.005), GA(4) (0.945 +/- 0.081), GA(7) (0.6382 +/- 0.012), GA(9) (0.0125 +/- 0.0002), and GA(24) (0.0139 +/- 0.0013). Similarly, endogenous GA(4) (33.243 +/- 4.36), GA(24) (29.64 +/- 2.68), GA(7) (22.5 +/- 1.3), and GA(12) (25.21 +/- 2.8) were significantly upregulated in rice mutant after CF application. Furthermore, RT-PCR indicated that IAA and GA pathway genes (des, ggs2, P50-1, P450-4, and iaaH) were expressed in CSL-1 and the combined application of CSL-1 spore suspension with yucasin and uniconazole to maize seedlings revealed that CSL-1 such as exogenous GA(3) and IAA alleviated the negative effect of uniconazole and yucasin and promoted maize-seedling growth. These findings suggest that the endophytic fungus CSL-1, which produces IAA and GAs, can play a vital role in promoting plant growth and that CSL-1 could be used to enhance crop growth and mitigate plant stress under a variety of environmental conditions.
机译:由于植入植物激素生产,内生真菌被认为是强大的植物生长启动子。目前的研究报告了生物前瞻性药用植物大麻苜蓿中内生真菌的分离。内生真菌bipolaris sp。分离出C.苜蓿叶片的CSL-1。培养滤液(CF)主要研究用于吲哚-3-乙酸(IAA)和赤霉素(气体),并进一步评估其增强突变体的等待水稻生长属性的能力。 CF显着促进了各种植物生长特性,包括幼苗长度,幼苗生物量和叶绿素含量,增长效应是由于IAA和CF中的各种气体。气相色谱/质谱分析显示各种气体的量(Ng / ml),包括Ga(1)(0.758 +/- 0.005),Ga(3)(0.00015 +/- 0.005),Ga(4)(0.945 + / - 0.081),Ga(7)(0.6382 +/- 0.012),Ga(9)(0.0125 +/- 0.0002)和Ga(24)(0.0139 +/- 0.0013)。类似地,内源Ga(4)(33.243 +/- 4.36),Ga(24)(29.64 +/- 2.68),Ga(7)(22.5 +/- 1.3)和Ga(12)(25.21 +/- 2.8在CF申请后,在水稻突变体中显着上调。此外,RT-PCR表明,在CSL-1中表达IAA和GA途径基因(DES,GGS2,P50-1,P450-4和IAAH),并将CSL-1孢子悬浮液与Yucasin和Uniconazole的组合应用于玉米幼苗揭示了CSL-1,如外源Ga(3)和IAA减轻了uniconazole和桂辛蛋白的负面影响,并促进了玉米幼苗生长。这些发现表明,生成IAA和天然气的内生真菌CSL-1可以在促进植物生长方面发挥至关重要作用,并且CSL-1可用于在各种环境条件下提高作物生长和减轻植物应激。

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