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Tomato Yellow Leaf Curl China Virus Impairs Photosynthesis in the Infected Nicotiana benthamiana with βC1 as an Aggravating Factor

机译:番茄黄叶卷曲中国病毒以βC1为加重因子损害被感染的本氏烟草的光合作用

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摘要

Tomato yellow leaf curl China virus is a species of the widespread geminiviruses. The infection of Nicotiana benthamiana by Tomato yellow leaf curl China virus (TYLCCNV) causes a reduction in photosynthetic activity, which is part of the viral symptoms. βC1 is a viral factor encoded by the betasatellite DNA (DNAβ) accompanying TYLCCNV. It is a major viral pathogenicity factor of TYLCCNV. To elucidate the effect of βC1 on plants’ photosynthesis, we measured the relative chlorophyll (Chl) content and Chl fluorescence in TYLCCNV-infected and βC1 transgenic N. benthamiana plants. The results showed that Chl content is reduced in TYLCCNV A–infected, TYLCCNV A plus DNAβ (TYLCCNV A + β)–infected and βC1 transgenic plants. Further, changes in Chl fluorescence parameters, such as electron transport rate, Fv/Fm, NPQ, and qP, revealed that photosynthetic efficiency is compromised in the aforementioned N. benthamiana plants. The presense of βC1 aggravated the decrease of Chl content and photosynthetic efficiency during viral infection. Additionally, the real-time quantitative PCR analysis of oxygen evolving complex genes in photosystem II, such as PsbO, PsbP, PsbQ, and PsbR, showed a significant reduction of the relative expression of these genes at the late stage of TYLCCNV A + β infection and at the vegetative stage of βC1 transgenic N. benthamiana plants. In summary, this study revealed the pathogenicity of TYLCCNV in photosynthesis and disclosed the effect of βC1 in exacerbating the damage in photosynthesis efficiency by TYLCCNV infection.
机译:番茄黄叶卷曲中国病毒是一种广泛分布的双生病毒。番茄黄叶卷曲中国病毒(TYLCCNV)对本氏烟草的感染导致光合作用降低,这是病毒症状的一部分。 βC1是由伴随TYLCCNV的β卫星DNA(DNAβ)编码的病毒因子。它是TYLCCNV的主要病毒致病因子。为了阐明βC1对植物光合作用的影响,我们测量了TYLCCNV感染和βC1转基因烟草烟草中的相对叶绿素(Chl)含量和Chl荧光。结果表明,在TYLCCNV A感染,TYLCCNV A加DNAβ(TYLCCNV A +β)感染和βC1转基因植物中,Chl含量降低。此外,Chl荧光参数的变化,例如电子传输速率,Fv / Fm,NPQ和qP,表明在上述本塞姆氏烟草植物中光合效率受到损害。 βC1的存在加剧了病毒感染过程中Chl含量的下降和光合效率的降低。此外,实时定量PCR分析了光系统II中放氧的复杂基因,例如PsbO,PsbP,PsbQ和 PsbR ,显示这些基因在后期的相对表达显着降低。阶段是TYLCCNV A +β感染的阶段,而处于βC1转基因 N的营养阶段。 benthamiana 植物。总之,这项研究揭示了TYLCCNV在光合作用中的致病性,并揭示了βC1在加剧TYLCCNV感染对光合作用效率的损害中的作用。

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