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首页> 外文期刊>International Journal of Vegetable Science >Indole Acetic Acid Production and Growth-Promoting Activity of Methylobacterium extorquens MP, and Methylobacterium zatmanii MS4 in Tomato
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Indole Acetic Acid Production and Growth-Promoting Activity of Methylobacterium extorquens MP, and Methylobacterium zatmanii MS4 in Tomato

机译:吲哚乙酸生产和生长促进甲基杆菌锆局的活性,番茄中的甲基杆菌MS4

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摘要

Pink-pigmented facultative methylotrophs (PPFMs) are prevalent aerobic bacteria colonizing the phyllosphere of various plant species. PPFMs have the ability to utilize plant-derived methanol as an energy substrate when plants are being colonized understress. The study was undertaken to explore the metabolic potential of methylotrophs isolated from diverse sources and their role in growth and development of Tomato (Solarium lycopersicum L.) plants, because it is easily grown under laboratory conditions. PPFMs were isolated from the phyllosphere of Peach (Prunus persica L.) and Strawberry (Fragaria ananassa L.) by the leaf imprint method. The bacterial isolates MP, and MS4 are rod shaped as confirmed by scanning electron microscopy (SEM) analysis. Methylotrophy of the isolates was authenticated by polymerase chain reaction (PCR) amplification of the highly conserved mxaF gene. The 16S rRNA gene sequences demonstrated that the isolates MP, and MS4 were Methylobacterium extorquens and Methylobacteriumzatmanii, respectively. High-performance thin-layer chromatographic analysis indicated production of indole acetic acid (IAA) by M. extorquens MP, and M. zatmanii MS4. The amount of IAA produced was 10.353 and 8.473 ug-mL-1 for M. extorquens MP, and M.zatmanii MS4, respectively. Tomato seed were treated with M. extorquens and M. zatmanii and had seed vigor indices (SVIs) of 1383.33 ± 90.26 and 1240.79 ± 244.09, respectively, compared to untreated control seed, which had an SVI of 1031.68 ± 83.96. Foliar application of M. extorquens MP, and M. zatmanii MS4 augmented its impact on plant growth promotion in tomato compared to the control. The increased production of IAA and subsequent enhancement in growth-promoting traits indicates that methylotrophs from diverse plant species can be used to improve early plant development in tomato under controlled conditions.
机译:粉红色着色的兼性甲基(PPFMS)是普遍的需氧细菌,各种植物物种的植物晶体化。当植物被殖民化的舷外流出时,PPFM能够利用植物衍生的甲醇作为能量衬底。该研究探讨了甲基吡咯的代谢潜力,从各种来源分离,以及它们在番茄(日光浴蛋白辛醚L.)植物的生长和发育中的作用,因为它在实验室条件下容易生长。通过叶片压印方法从桃(Prunus Persica L.)和草莓(FragariaAnanassa L.)的植物体系中分离PPFM。细菌分离株MP和MS4是通过扫描电子显微镜(SEM)分析来证实的杆状。通过聚合酶链式反应(PCR)扩增高度保守的MXAF基因的分离株甲基缩放。 16S rRNA基因序列证明分离物熔体和MS4分别是甲基杆菌和甲基杆菌类甲基杆菌。高性能薄层色谱分析表明M. interlquens MP和M. Zatmanii MS4的吲哚乙酸(IAA)的产生。对于M.Sperionens MP,M.Zatmanii MS4,产生的IAA的量分别为10.353和8.473ug-ML-1。与未处理的对照种子相比,番茄籽粒子和M. Zatmanii用M. intercorquens和M. Zatmanii进行了1383.33±90.26和1240.79±244.09的种子活力指数(SVI),其SVI为1031.68±83.96。与控制相比,植物杆MS4和M. Zatmanii MS4增加了对番茄植物生长促进的影响。增长的IAA产量和随后的生长性状的增强表明来自不同植物物种的甲基植物可用于在受控条件下改善番茄早期植物发育。

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