首页> 外文期刊>Journal of Natural Sciences Research >Effect of Whitefly Transmitted Geminiviruses on the Physiology of Tomato (Lycopersicon esculentum L.) and Tobacco (Nicotiana benthamiana L.) Plants
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Effect of Whitefly Transmitted Geminiviruses on the Physiology of Tomato (Lycopersicon esculentum L.) and Tobacco (Nicotiana benthamiana L.) Plants

机译:粉虱传播的双生病毒对番茄(Lycopersicon esculentum L.)和烟草(Nicotiana benthamiana L.)植物生理的影响

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Viruses always have profound effect on the growth and development of plants and interact with host defense mechanism and results in altering the physiology of plants. In the present study effect of different whitefly transmitted begomoviruses; (monopartite as well as bipartite) on the contents of soluble sugar and chlorophyll of Lycopersicon esculentum and Nicotiana benthamiana plants were investigated. It was found that the leaf relative water contents (RWC), total soluble sugars (TSS), fresh and dry biomass, photosynthetic pigments level were more in healthy plants as compared to virus infected plants. Plant infected both with Tomato leaf curl new dehli virus and Cotton leaf curl burewalla virus associated with betasatelite showed reduced TSS and leaf relative water contents as compared to healthy plants. Among infectious clones Cotton leaf curl burewalla virus associated with beta satellite (CLCuV+CLCuB), Tomato leaf curl new dehli virus (ToLCNDV) caused more reduction while Malvestrum yellow vein change manga virus (MYVCMV) caused less reduction as compared to above mentioned clones. CLCuV+ CLCuB showed significant effect on Chlorophyll a (9.60, 8.93mg/g), Chlorophyll b (7.2, 5.86 mg/g) and total chlorophyll contents (16.8, 14.8 mg/g) in both plants respectively. While ToLCNDV caused reduction in RWC (80% to 36%) in case of L. esculentum while RWC (75 to 30%) in N. benthamiana. Among L. esculentum TSS was reduced (8.13 to 3.33 mg/g) due to CLCuV+CLCuB infection. In case of N. benthamiana TSS was reduced (9.433 to 2.5 mg/g) due to ToLCNDV. Keywords: Geminivirus, Plant Physiology, TSS, Chlorophyll.
机译:病毒总是对植物的生长和发育产生深远的影响,并与宿主防御机制相互作用,并导致植物生理发生变化。在本研究中,不同粉虱传播的begomoviruses的效果;研究了番茄(Lycopersicon esculentum)和烟草(Nicotiana benthamiana)植株中可溶性糖和叶绿素含量的变化情况。研究发现,健康植物的叶片相对含水量(RWC),总可溶性糖(TSS),新鲜和干燥生物量,光合色素含量均高于病毒感染植物。与健康植物相比,感染了番茄叶卷的新德里病毒和与甜菜碱相关的棉叶卷叶藻病毒感染的植物均显示出降低的TSS和叶片相对含水量。与上面提到的克隆相比,在感染性克隆中,与β卫星相关的棉叶卷曲水痘病毒(CLCuV + CLCuB),番茄叶卷曲新德里病毒(ToLCNDV)引起了更多的减少,而马尔韦斯特鲁姆黄脉变化漫画病毒(MYVCMV)引起的减少较少。 CLCuV + CLCuB分别对两株植物的叶绿素a(9.60,8.93mg / g),叶绿素b(7.2,5.86 mg / g)和总叶绿素含量(16.8,14.8 mg / g)有显着影响。 ToLCNDV导致了番茄的RWC减少(80%至36%),而本塞姆氏烟草的RWC减少(75%至30%)。由于CLCuV + CLCuB感染,番茄中的TSS降低了(8.13至3.33 mg / g)。对于本氏烟草,由于ToLCNDV,TSS降低了(9.433至2.5 mg / g)。关键字:双子病毒,植物生理学,TSS,叶绿素。

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