首页> 外文OA文献 >Exposure in vitro to an Environmentally Isolated Strain TC09 of Cladosporium sphaerospermum Triggers Plant Growth Promotion, Early Flowering, and Fruit Yield Increase
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Exposure in vitro to an Environmentally Isolated Strain TC09 of Cladosporium sphaerospermum Triggers Plant Growth Promotion, Early Flowering, and Fruit Yield Increase

机译:在体外暴露于囊孢子藓孢子症的环保分离菌株TC09触发植物生长促进,早开花和果收益率增加

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摘要

A growing number of bacteria and fungi have been found to promote plant growth through mutualistic interactions involving elements such as volatile organic compounds (VOCs). Here, we report the identification of an environmentally isolated strain of Cladosporium sphaerospermum (herein named TC09), that substantially enhances plant growth after exposure in vitro beyond what has previously been reported. When cultured on Murashige and Skoog (MS) medium under in vitro conditions, tobacco seedlings (Nicotiana tabacum) exposed to TC09 cultures for 20 days increased stem height and whole plant biomass up to 25- and 15-fold, respectively, over controls without exposure. TC09-mediated growth promotion required >5 g/L sucrose in the plant culture medium and was influenced by the duration of exposure ranging from one to 10 days, beyond which no differences were detected. When transplanted to soil under greenhouse conditions, TC09-exposed tobacco plants retained higher rates of growth. Comparative transcriptome analyses using tobacco seedlings exposed to TC09 for 10 days uncovered differentially expressed genes (DEGs) associated with diverse biological processes including cell expansion and cell cycle, photosynthesis, phytohormone homeostasis and defense responses. To test the potential efficacy of TC09-mediated growth promotion on agricultural productivity, pepper plants (Capsicum annuum L.) of two different varieties, Cayenne and Minisweet, were pre-exposed to TC09 and planted in the greenhouse to monitor growth, flowering, and fruit production. Results showed that treated pepper plants flowered 20 days earlier and yielded up to 213% more fruit than untreated controls. Altogether the data suggest that exposure of young plants to C. sphaerospermum produced VOCs may provide a useful tool to improve crop productivity.
机译:已经发现越来越多的细菌和真菌通过涉及挥发性有机化合物(VOC)等元素的互动相互作用来促进植物生长。在此,我们报告鉴定鉴定植物孢子蛋白孢子症(本文命名为TC09)的环境分离菌株,其在超出先前报道的体外暴露后大大提高了植物生长。当在体外条件下培养Murashige和Skoog(MS)培养基时,暴露于TC09培养物20天的烟草幼苗(Nicotiana Tabacum)将茎高和全植物生物量分别增加25-至15倍,而不会导致对照。 TC09介导的植物培养基中所需的生长促进> 5g / l蔗糖,受到一至10天的曝光持续时间的影响,超出其未检测到差异。当在温室条件下移植到土壤下,TC09暴露的烟草植物保留了更高的生长速率。使用暴露于TC09的烟草幼苗10天的比较转录组分析未覆盖与不同的生物学过程相关的差异表达基因(DEG),包括细胞膨胀和细胞周期,光合作用,植物精华态稳态和防御反应。为了测试TC09介导的TC09介导的生长促进对农业生产率的潜在疗效,两种不同品种,辣椒植物(Capsicum Annum L.),Cayenne和MiniSweet,预先暴露于TC09并种植在温室中以监测增长,开花和水果生产。结果表明,治疗的辣椒植物早先开花20天,比未处理的对照产生高达213%的果实。完全数据表明,幼苗暴露于C. Sphaerospermum产生的VOC可以提供有用的工具,以提高作物生产率。

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