首页> 外文期刊>Arab Universities Journal of Agricultural Sciences >IMPROVED QUALITY OF VIRAL INFECTED GRAPE PLANTS CULTIVATED IN SOIL INOCULATED WITH RHIZOPHERIC MICROORGANISMS
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IMPROVED QUALITY OF VIRAL INFECTED GRAPE PLANTS CULTIVATED IN SOIL INOCULATED WITH RHIZOPHERIC MICROORGANISMS

机译:提高在接种根瘤菌微生物的土壤中栽培的病毒感染葡萄植株的质量

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摘要

A considerable rhizopheric bacteria and mycorrhizae collectively known as plant growth promoting microorganisms (PGPM) have ability to induce acquire resistance in plant against pathogens and to provide benefits to their hosts. Grapevine viruses cause reducing yield and shortening the life span of infected plants in the vineyard. The current study aims to improve quality of Grape fan leaf virus (GFLV) infected grape plants via the soil inoculation with PGPM. Pot experiments were conducted under greenhouse during two seasons 2014/15 and 2015/16 in a Virology Greenhouse, Microbial. Dep. Fac. Agric., Ain Shams Univ. Cairo, Egypt. Grape cv. Flam grafted with GFLV infected stick and cultivated in inoculated soil with rhizopheric PGPB and mycorrhiza (VAM). GFLV was detected in infected leaves by DAS-ELISA. Plant growth parameters and chemical immune acquired resistance were assessment in GFLV infected grape cv. flam. The results were clearly indicated that PGPM inoculation in soil improved of plant growth in the second season (2015/16) compared with first season (2014/2015(. PGPM (Bacillus sp., Pseudomonas sp. and Serratia sp. isolates and VAM) improved quality of GFLV infected grape plants via increased plant growth parameters (leave number, stem diameter, plant length, and phosphorus and potassium components in leaves). PGPM induced acquire resistance in plant against GFLV; it was found that, significant increase of proline and SA contents in GFLV infected grape leaves compared as healthy ones. The results revealed that chlorophyll a; b and carotenoids were significant decreased while inoculated PGPM in soil showed significant increase compared with healthy control ones. Expressed proteins and resistance enzymes (POD and PPO) of antiviral proteins were significant increase in PGPM application of GFLV infected grape growth related no inoculated PGPM ones. So that the current study recommended that the combination among VAM and PGPB soil inoculation improved quality of GFLV infected grape plant under greenhouse conditions.
机译:相当多的根瘤菌和菌根统称为植物生长促进微生物 (PGPM),能够诱导植物对病原体产生获得性,并为宿主提供益处。葡萄病毒会导致葡萄园中受感染植物的产量降低并缩短寿命。本研究旨在通过土壤接种PGPM来提高葡萄扇叶病毒(GFLV)感染葡萄植株的质量。盆栽实验在2014/15和2015/16两个季节的病毒学温室中进行。埃及开罗艾因夏姆斯大学农业部。葡萄简历用 GFLV 感染的棒嫁接 Flam,并在接种有根瘤菌 PGPB 和菌根 (VAM) 的土壤中培养。通过DAS-ELISA在感染叶片中检测到GFLV。评估GFLV感染葡萄的植株生长参数和化学免疫获得性抗性。结果表明,与第一季(2014/2015)相比,第二季(2015/16)土壤中PGPM接种对植物生长有改善。PGPM(芽孢杆菌属、假单胞菌属和沙雷氏菌分离株和 VAM)通过增加植物生长参数(叶数、茎粗、株长以及叶片中的磷和钾成分)来改善 GFLV 感染葡萄植株的质量。PGPM诱导植物对GFLV的获得性抗性;结果表明,与健康葡萄相比,GFLV感染葡萄叶片中脯氨酸和SA含量显著增加。结果表明,叶绿素a;与健康对照相比,土壤中b和类胡萝卜素显著降低,而接种PGPM显著增加。抗病毒蛋白的表达蛋白和抗性酶(POD和PPO)在GFLV感染葡萄生长相关PGPM的PGPM应用中显著增加。因此,本研究建议VAM和PGPB土壤接种相结合,可提高温室条件下GFLV感染葡萄植株的品质。

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