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首页> 外文期刊>Plant Molecular Biology >The DNA-B of the non-phloem-limited bean dwarf mosaic virus (BDMV) is able to move the phloem-limited Abutilon mosaic virus (AbMV) out of the phloem, but DNA-B of AbMV is unable to confine BDMV to the phloem
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The DNA-B of the non-phloem-limited bean dwarf mosaic virus (BDMV) is able to move the phloem-limited Abutilon mosaic virus (AbMV) out of the phloem, but DNA-B of AbMV is unable to confine BDMV to the phloem

机译:非韧皮部限制豆矮花叶病毒(BDMV)的DNA-B能够将韧皮部限制的Ab麻花叶病毒(AbMV)从韧皮部中移出,但是AbMV的DNA-B无法将BDMV限制在韧皮部

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摘要

Abutilon mosaic virus (AbMV) and bean dwarf mosaic virus (BDMV) are two phylogenetically related bipartite begomoviruses. While AbMV is restricted to phloem, BDMV spreads to non-phloem tissues. Cell-to-cell and long-distance movement of AbMV and BDMV were investigated after replacing the coat protein (CP) gene with the reporter gene encoding the green fluorescence protein (GFP). The DNA-A and DNA-B genomic components of AbMV and BDMV, and their pseudorecombinants (PR), were delivered to bean (Phaseolus vulgaris) seedlings and detached leaves with DNA-coated microprojectiles. Virus-associated fluorescence was observed with the confocal microscope. Delivery of AbMV and BDMV GFP reporters showed that the epidermal tissue was the main recipient of the viral DNA; the DNA-A of the two viruses was unable to move out of the recipient cells. AbMV DNA-A co-inoculated with AbMV DNA-B did not move from cell to cell in the epidermis and did not reach the phloem. However, co-inoculation of AbMV DNA-A with BDMV DNA-B resulted in PR cell-to-cell movement out of the epidermis and long-distance movement in the phloem. In contrast, BDMV DNA-A moved from cell to cell and over a long distance when co-inoculated with either its own DNA-B or with the DNA-B of AbMV. Thus, the DNA-B of the non-phloem-limited BDMV overcame the phloem limitation of AbMV. In the reciprocal case, the DNA-B of the phloem-limited AbMV did not confine the non-phloem limited BDMV to the phloem. Hence, we assume that the DNA-A component of BDMV includes determinants involved in the movement pattern of the virus in addition to the DNA-B-encoded BC1 and BV1 which have previously been shown to be involved in virus movement. The results also confirm that the CP is not necessary for virus movement; however, replacing the CP of AbMV and BDMV with GFP resulted in a decrease in symptom severity. DNA-B was involved in symptom severity; the B component of BDMV produced symptoms more severe than those induced by that of AbMV, whether in wild-type PRs or in PRs with CP-GFP replacement. It is interesting to note that when the GFP gene under the control of the CaMV 35S promoter (35S-GFP) was delivered to the bean tissue, with or without the DNA-B component of BDMV, GFP was expressed but did not move from cell to cell. However, when the 35S-GFP was delivered together with BDMV DNA-A and DNA-B, GFP showed cell-to-cell movement in the epidermis but was restricted to these cells. Hence, infection of cells with a functional bipartite begomovirus may facilitate cell-to-cell movement of macromolecules.
机译:util麻花叶病毒(AbMV)和豆矮花叶病毒(BDMV)是两种系统发育相关的双倍子begomovirus病毒。虽然AbMV仅限于韧皮部,但BDMV会传播到非韧皮部组织。用编码绿色荧光蛋白(GFP)的报告基因替换外壳蛋白(CP)基因后,研究了AbMV和BDMV的细胞间和远距离运动。将AbMV和BDMV的DNA-A和DNA-B基因组成分及其假重组(PR)递送到菜豆(Phaseolus vulgaris)幼苗中,并用涂有DNA的微粒分离叶片。共聚焦显微镜观察到病毒相关的荧光。 AbMV和BDMV GFP报告基因的传递表明,表皮组织是病毒DNA的主要受体。两种病毒的DNA-A无法移出受体细胞。与AbMV DNA-B共同接种的AbMV DNA-A在表皮中不会在细胞与细胞之间移动,也不会到达韧皮部。然而,AbMV DNA-A与BDMV DNA-B的共同接种导致PR细胞间移动从表皮中移出并在韧皮部中长距离移动。相反,当BDMV DNA-A与自身的DNA-B或AbMV的DNA-B共接种时,它们会在细胞之间移动很长一段距离。因此,非韧皮部限制的BDMV的DNA-B克服了AbMV的韧皮部限制。在相反的情况下,韧皮部限制的AbMV的DNA-B没有将非韧皮部限制的BDMV限制在韧皮部。因此,我们假设BDMV的DNA-A成分除先前已显示参与病毒运动的DNA-B编码的BC1和BV1外,还包括参与病毒运动模式的决定因素。结果还证实,CP对于病毒移动不是必需的。然而,用GFP代替AbMV和BDMV的CP导致症状严重程度的降低。 DNA-B与症状严重程度有关。无论在野生型PR还是CP-GFP替代的PR中,BDMV的B组分产生的症状都比AbMV引起的症状更严重。有趣的是,当在CaMV 35S启动子控制下的GFP基因(35S-GFP)被递送到有或没有BDMV的DNA-B成分的豆类组织时,GFP得以表达但并未从细胞中移出到单元格。但是,当35S-GFP与BDMV DNA-A和DNA-B一起递送时,GFP在表皮中显示细胞间移动,但仅限于这些细胞。因此,功能性双歧杆菌病毒感染细胞可以促进大分子在细胞间的移动。

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