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Endophytic Fungus Aspergillus japonicus Mediates Host Plant Growth under Normal and Heat Stress Conditions

机译:内生真菌曲霉属japonicus在正常和热胁迫条件下介导宿主植物生长

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摘要

We have isolated an endophytic fungus with heat stress alleviation potential from wild plant Euphorbia indica L. The phylogenetic analysis and 18S rDNA sequence homology revealed that the designated isolate was Aspergillus japonicus EuR-26. Analysis of A. japonicus culture filtrate displayed higher concentrations of salicylic acid (SA), indoleacetic acid (IAA), flavonoids, and phenolics. Furthermore, A. japonicus association with soybean and sunflower had improved plant biomass and other growth features under high temperature stress (40°C) in comparison to endophyte-free plants. In fact, endophytic association mitigated heat stress by negotiating the activities of abscisic acid, catalase, and ascorbic acid oxidase in both soybean and sunflower. The nutritional quality (phenolic, flavonoids, soluble sugars, proteins, and lipids) of the A. japonicus-associated seedlings has also improved under heat stress in comparison to endophyte-free plants. From the results, it is concluded that A. japonicus can modulate host plants growth under heat stress and can be used as thermal stress alleviator in arid and semiarid regions of the globe (where mean summer temperature exceeds 40°C) to sustain agriculture.
机译:我们已经分离了具有来自野生植物大戟之蛋白的热胁迫缓解潜力的内生真菌。系统发育分析和18S rDNA序列同源性显示出指定的分离物是曲霉粳欧元-26欧元。 A.粳稻培养滤液的分析显示出较高浓度的水杨酸(SA),吲哚乙酸(IAA),黄酮类化合物和酚类。此外,与大豆和向日葵的japonicus联合与高温胁迫(40°C)的植物生物质和其他生长特征相比,与非生物植物相比。事实上,通过在大豆和向日葵中谈判脱离酸,过氧化氢酶和抗坏血酸氧化酶的活性来减轻热应激。与Needophyte的植物相比,A.paponics相关幼苗的营养质量(酚类,黄酮,可溶性糖,蛋白质和脂质)也在​​热胁迫下改善。从结果中,据总结,A.粳稻可以在热胁迫下调节宿主植物生长,并且可以用作全球干旱和半干旱区域(平均夏季温度超过40°C)以维持农业的热应激缓解蛋白。

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