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Paenibacillus lentimorbus Inoculation Enhances Tobacco Growth and Extenuates the Virulence of Cucumber mosaic virus

机译:慢杆菌Paenibacillus Lentimorbus接种可增强烟草生长并减轻黄瓜花叶病毒的毒力。

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摘要

Previous studies with Paenibacillus lentimorbus B-30488” (hereafter referred as B-30488), a plant growth promoting rhizobacteria (PGPR) isolated from cow’s milk, revealed its capabilities to improve plant quality under normal and stress conditions. Present study investigates its potential as a biocontrol agent against an economically important virus, Cucumber mosaic virus (CMV), in Nicotiana tabacum cv. White Burley plants and delineates the physical, biophysical, biochemical and molecular perturbations due to the trilateral interactions of PGPR-host-CMV. Soil inoculation of B-30488 enhanced the plant vigor while significantly decreased the virulence and virus RNA accumulation by ~12 fold (91%) in systemic leaves of CMV infected tobacco plants as compared to the control ones. Histology of these leaves revealed the improved tissue’s health and least aging signs in B-30488 inoculated tobacco plants, with or without CMV infection, and showed lesser intercellular spaces between collenchyma cells, reduced amount of xyloglucans and pectins in connecting primary cells, and higher polyphenol accumulation in hypodermis layer extending to collenchyma cells. B-30488 inoculation has favorably maneuvered the essential biophysical (ion leakage and photosynthetic efficiency) and biochemical (sugar, proline, chlorophyll, malondialdehyde, acid phosphatase and alkaline phosphatase) attributes of tobacco plants to positively regulate and release the virus stress. Moreover, activities of defense related enzymes (ascorbate peroxidase, guaiacol peroxidase, superoxide dismutase and catalase) induced due to CMV-infection were ameliorated with inoculation of B-30488, suggesting systemic induced resistance mediated protection against CMV in tobacco. The quantitative RT-PCR analyses of the genes related to normal plant development, stress and pathogenesis also corroborate well with the biochemical data and revealed the regulation (either up or down) of these genes in favor of plant to combat the CMV mediated stress. These improvements led tobacco plant to produce more flowers and seeds with no negative impact on plant health. The present study may advocate the applicability of B-30488 for crop yield improvement in virus infested areas.
机译:以前使用慢病毒Paenibacillus lentimorbus B-30488(以下简称B-30488)进行研究,该植物是一种从牛奶中分离出来的促进植物生长的根瘤菌(PGPR),在正常和逆境条件下,它具有改善植物品质的能力。目前的研究调查了其作为对烟草中的一种重要的经济上重要的病毒黄瓜花叶病毒(黄瓜花叶病毒)的生物防治剂的潜力。白伯利植物因PGPR-宿主-CMV的三方相互作用而描绘并描绘了物理,生物物理,生物化学和分子扰动。与对照相比,B-30488的土壤接种增强了植物的活力,同时使CMV感染的烟草植株的全身叶片中的毒力和病毒RNA的积累显着降低了约12倍(91%)。这些叶片的组织学研究表明,无论是否接种CMV,B-30488接种的烟草植物的组织健康状况得到改善,衰老迹象最少,并且之间的间质细胞之间的细胞间隙减少,连接原代细胞中的木葡聚糖和果胶的数量减少以及多酚含量更高在皮下组织中的积累扩展到肾上腺细胞。 B-30488接种已很好地控制了烟草植物的基本生物物理特性(离子泄漏和光合作用效率)和生化特性(糖,脯氨酸,叶绿素,丙二醛,酸性磷酸酶和碱性磷酸酶),以积极调节和释放病毒胁迫。此外,接种B-30488可以改善因CMV感染引起的防御相关酶(抗坏血酸过氧化物酶,愈创木酚过氧化物酶,超氧化物歧化酶和过氧化氢酶)的活性,这表明系统诱导的抗性介导了烟草中CMV的保护作用。与正常植物发育,胁迫和发病机理有关的基因的定量RT-PCR分析也与生化数据很好地证实,并揭示了这些基因的调节(向上或向下),有利于植物对抗CMV介导的胁迫。这些改进使烟草植物产生了更多的花和种子,而对植物健康没有负面影响。本研究可能提倡B-30488在病毒感染地区提高作物产量的适用性。

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