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abutilon striatum/никотин

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Страна 1 од 18 резултати

SPECIFICITY OF THE PRECIPITIN REACTION IN TOBACCO MOSAIC DISEASE.

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1. Leaf extracts of Sudan grass, Hippeastrum equestre Herb., lily, and Abutilon striatum Dicks. (A. Thompsoni hort.), each affected with its respective mosaic disease, and peach affected with yellows disease, were tested for their ability to precipitate antiserum for virus extract of tobacco mosaic

First Report of Tobacco mosaic virus in Abutilon theophrasti in China.

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Velvetleaf (Abutilon theophrasti Medic), a tall, fecund, self-fertile annual plant in the family Malvaceae, is widely grown in China as a fiber crop and for its medicinal properties. In July of 2008, we observed diffuse chlorotic and necrotic spots on the oldest leaves of velvetleaf plants in the

DNA B facilitates, but is not essential for, the spread of abutilon mosaic virus in agroinoculated Nicotiana benthamiana.

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Full-length dimers of both DNA A and DNA B of Abutilon mosaic virus have been constructed. These constructs are not infectious when inoculated into Nicotiana benthamiana as DNA; however, an infection could be obtained using the method of agroinoculation. Symptom induction required both DNA molecules

Expression dynamics and ultrastructural localization of epitope-tagged Abutilon mosaic virus nuclear shuttle and movement proteins in Nicotiana benthamiana cells.

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The geminivirus Abutilon mosaic virus (AbMV) encodes two proteins which are essential for viral spread within plants. The nuclear shuttle protein (NSP) transfers viral DNA between the nucleus and cytoplasm, whereas the movement protein (MP) facilitates transport between cells through plasmodesmata

Molecular Evidence for the Occurrence of Abutilon mosaic virus, A New World Begomovirus in India.

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During an investigation in the year 2010, on the weed reservoir of begomovirus, Abutilon pictum showing bright yellow mosaic symptoms was observed in Udhagamandalam, Tamil Nadu, India. The complete bipartite genome of a begomovirus was cloned and sequenced which revealed association of Abutilon

A plastid-targeted heat shock cognate 70kDa protein interacts with the Abutilon mosaic virus movement protein.

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The movement protein (MP) of bipartite geminiviruses facilitates cell-to-cell as well as long-distance transport within plants and influences viral pathogenicity. Yeast two-hybrid assays identified a chaperone, the nuclear-encoded and plastid-targeted heat shock cognate 70kDa protein (cpHSC70-1) of

Sida micrantha mosaic is associated with a complex infection of begomoviruses different from Abutilon mosaic virus.

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We report on the nucleotide sequences of geminiviruses of the genus Bemogovirus infecting Sida micrantha Schr., a common weed in Brazil. For decades, the mosaic frequently associated with Sida plants was considered to be caused by a Brazilian strain of Abutilon mosaic virus (AbMV). By infection

The complete nucleotide sequence of a new bipartite begomovirus from Brazil infecting Abutilon.

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The complete nucleotide sequence of Abutilon mosaic Brazil virus (AbMBV), a new bipartite begomovirus from Bahia, Brazil, is described and analyzed phylogenetically. Its DNA A is most closely related to those of Sida-infecting begomoviruses from Brazil and forms a phylogenetic cluster with pepper-

Complementation and recombination between mutants of complementary sense genes of DNA A of Abutilon mosaic virus.

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Mutations have been inserted into the complementary sense ORFs of DNA A of Abutilon mosaic virus (AbMV). Mutation in both ORF AC1 and ORF AC2/3 resulted in clones incapable of infecting Nicotiana benthamiana following agroinoculation. Mutation in ORF AC1 but not in ORF AC2/3 prevented DNA

Three C-terminal phosphorylation sites in the Abutilon mosaic virus movement protein affect symptom development and viral DNA accumulation.

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The Abutilon mosaic virus (AbMV, Geminiviridae) DNA B component encodes a movement protein (MP), which facilitates viral transport within plants and affects pathogenicity. The presence of phosphorylated serine and threonine residues was confirmed for MP expressed in yeast and Nicotiana benthamiana

Abutilon mosaic virus DNA B component supports mechanical virus transmission, but does not counteract begomoviral phloem limitation in transgenic plants.

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Different Nicotiana benthamiana lines stably transformed with Abutilon mosaic virus (AbMV) dimeric DNA B were capable of systemically spreading complete bipartite AbMV genomes, following agroinoculation of DNA A alone. Constitutively expressed viral movement protein (BC1) did not induce any

RNA viruses and their silencing suppressors boost Abutilon mosaic virus, but not the Old World Tomato yellow leaf curl Sardinia virus.

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Mixed viral infections can induce different changes in symptom development, genome accumulation and tissue tropism. These issues were investigated for two phloem-limited begomoviruses, Abutilon mosaic virus (AbMV) and Tomato yellow leaf curl Sardinia virus (TYLCSV) in Nicotiana benthamiana plants

Cell-free construction of disarmed Abutilon mosaic virus-based gene silencing vectors.

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The bipartite Abutilon mosaic virus (AbMV) was engineered as a versatile silencing vector in which the coat protein gene of DNA A was deleted and replaced by sequences of interest. Plants transgenic for the dimeric AbMV DNA B component were used as test hosts to minimize the risk of unintended

Self-interaction of Abutilon mosaic virus replication initiator protein (Rep) in plant cell nuclei.

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Geminiviruses replicate their circular single-stranded DNA genome in nuclei of infected plant cells. Their replication initiator proteins (Reps) possess interaction domains for homo- and hetero-oligomerization as shown previously by in vitro studies and yeast two hybrid assays. Here,

Synergism of a DNA and an RNA virus: enhanced tissue infiltration of the begomovirus Abutilon mosaic virus (AbMV) mediated by Cucumber mosaic virus (CMV).

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Replication of the begomovirus Abutilon mosaic virus (AbMV) is restricted to phloem nuclei, generating moderate levels of virus DNA. Co-infection with Cucumber mosaic virus (CMV) evidently increased AbMV titers in Nicotiana benthamiana, tobacco, and tomato, resulting in synergistic symptom
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