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首页> 外文期刊>Journal of Plant Physiology >An endophytic Talaromyces omanensis enhances reproductive, physiological and anatomical characteristics of drought-stressed tomato
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An endophytic Talaromyces omanensis enhances reproductive, physiological and anatomical characteristics of drought-stressed tomato

机译:内生塔罗马斯阿曼增强了干旱番茄的生殖,生理和解剖学特征

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摘要

The effects of a newly discovered endophytic fungus, Talaromyces omanensis, on the drought tolerance of tomato is presented in this study. The fungus was obtained from a desert plant Rhazya stricta in Oman. Drought stress was induced by a 15% solution of Polyethylene glycol-6000 (PEG-6000). Several parameters were measured including pollen sterility, pollen tube length, growth, flowering, and yield characteristics, the biochemical analysis of the leaves and fruits, as well as other physiological and anatomical parameters. The results showed that T. omanensis provided multiple advantages to tomato grown under drought stress, including improved reproductive characteristics, chlorophyll fluorescence, and some anatomical characteristics such as increased phloem and cortex width and a reduction of pith autolysis that leads to hollow stem. In addition, T. omanensis significantly increased drought-stress related characteristics such as shoot dry weight, root length, the number of flowers, and fruit weight. A significantly higher concentration of gibberellic acid (GA(3)) was found in tomato plants treated by T. omanensis, which may enhance their drought tolerance. These results suggest that T. omanensis is a potential biological anti-stress stimulator for important horticultural crops such as tomatoes. This study is the first to report the beneficial effects of T. omanensis in alleviating drought stress in tomatoes.
机译:本研究介绍了新发现的内生真菌,对番茄的耐旱性耐旱性的影响。真菌是从阿曼的沙漠植物Rhazya Stricta获得的。通过15%的聚乙二醇-6000(PEG-6000)溶液诱导干旱胁迫。测量了几种参数,包括花粉无菌,花粉管长度,生长,开花和产量特征,叶子和水果的生化分析,以及其他生理和解剖学参数。结果表明,在干旱胁迫下为番茄生长提供多种优势,包括改善的繁殖特性,叶绿素荧光和一些解剖学特征,例如增加的韧皮肌和皮质宽度以及导致中空茎的髓鞘的减少。此外,T.Amansis显着增加了干旱应激相关特征,如芽干重,根长度,花的数量和果子重量。在由T.Amansis植物处理的番茄植物中发现了显着较高浓度的甘草酸(Ga(3)),这可能会增强其耐旱性耐受性。这些结果表明,T.Amansis是一种潜在的生物抗应力刺激器,适用于西红柿等重要园艺作物。本研究是第一个报告T. Amansis在番茄中减轻干旱胁迫的有益效果的研究。

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