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black/nicotiana

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Structure of inclusion bodies of cabbage black ring virus.

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Inclusions in cells of Nicotiana glutinosa infected with a horse-radish strain of cabbage black ring virus (CBRV) were investigated on ultrathin sections. Large amorphous inclusions contained cellular constitutents showing usually no pathological alterations. Lamellar inclusions (bundles, circular

Black shank resistant tobacco by silencing of glutathione S-transferase.

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A glutathione S-transferase gene was amplified from cDNA of Nicotiana tabacum roots infected with Phytophthora parasitica var. nicotianae. The gene was cloned in sense and anti-sense orientation to an RNAi vector for induced gene silencing, and reduced expression of the gene was detected by RT-PCR.

Tobacco serine/threonine protein kinase gene NrSTK enhances black shank resistance.

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A serine/threonine protein kinase gene (NrSTK) was cloned from Nicotiana repanda based on the sequence of a previously isolated resistance gene analog (RGA). Expression of RGA was induced by challenge with the pathogen black shank. The NrSTK gene was predicted to encode a protein kinase that

Marker-Assisted Selection for Resistance to Black Shank Disease in Tobacco.

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Bulked segregant (BSA) and random amplified polymorphic DNA (RAPD) analyses were used to identify markers linked to the dominant black shank resistance gene, Ph, from flue-cured tobacco (Nicotiana tabacum) cv. Coker 371-Gold. Sixty RAPD markers, 54 in coupling and 6 in repulsion phase linkage to Ph,

Bacteriome and Mycobiome in Nicotiana tabacum Fields Affected by Black Shank Disease.

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Phytophthora nicotianae is a widespread cause of black shank disease of tobacco plants and causes substantial harvest losses in all major cultivation areas. The oomycete primarily affects plant roots and the stem, where it leads to a progressing decay of the diseased tissues. In this resource

Isolation and characterization of hydroxyproline-rich glycopeptide signals in black nightshade leaves.

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A gene encoding a preprohydroxyproline-rich systemin, SnpreproHypSys, was identified from the leaves of black nightshade (Solanum nigrum), which is a member of a small gene family of at least three genes that have orthologs in tobacco (Nicotiana tabacum; NtpreproHypSys), tomato (Solanum

Origin of the Black Shank Resistance Gene, Ph, in Tobacco Cultivar Coker 371-Gold.

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Flue-cured tobacco (Nicotiana tabacum) cultivar Coker 371-Gold (C 371-G) possesses a dominant gene, Ph, that confers high resistance to black shank disease, caused by race 0 of the soil-borne pathogen Phytophthora parasitica var. nicotianae. The origin of this gene is unknown. Breeding lines

First Report of Tomato black ring virus (TBRV) on Tomato (Solanum lycopersicum) in Saudi Arabia

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Tomato is a popular vegetable crop that is cultivated worldwide. It is also one of the most important crops in Saudi Arabia. In 2017, the area in which tomato was grown in Saudi Arabia was estimated to be 13317 ha and produced 306389 tons. Al Kharj Governorate in Riyadh region contributes the

Characterization of a U.S. Isolate of Beet black scorch virus.

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ABSTRACT The first reported U.S. isolate of Beet black scorch necrovirus (BBSV) was obtained and characterized. Host range of the virus for localized and occasionally systemic infection included the Chenopodiaceae and Tetragonia expansa; Nicotiana benthamiana supported symptomless systemic infection

A divergent strain of melon chlorotic spot virus isolated from black medic (Medicago lupulina) in Austria.

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A tenuivirus, referred to here as JKI 29327, was isolated from a black medic (Medicago lupulina) plant collected in Austria. The virus was mechanically transmitted to Nicotiana benthamiana, M. lupulina, M. sativa, Pisum sativum and Vicia faba. The complete genome was determined by high throughput

Black and Hairy Nightshade, the First Weedy Hosts of Potato virus A in the United States.

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Potato virus A (PVA; genus Potyvirus, family Potyviridae) occurs wherever potatoes are grown and may reduce tuber yields as much as 40%. Its host range consists of six experimental hosts (Lycopersicon pimpinellifolium (Jusl.) P. Mill., Nicandra physalodes (L.) Gaertn., Nicotiana tabacum L., Solanum

P5-2 of rice black-streaked dwarf virus is a non-structural protein targeted to chloroplasts.

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The genome segment S5 of rice black-streaked dwarf virus (genus Fijivirus, family Reoviridae) is functionally bicistronic in infected plants. It has a conserved second ORF (P5-2) partially overlapping the major ORF in a different reading frame, but its function remains unknown. P5-2 was detected in
Orobanche ramosa L. is arguably the most insidious of the major broomrapes, achlorophyllous root parasites of various row crops (4). It has a broad host range and is the most widely spread of any agronomically important broomrape. In the United States, California, Kentucky, and Texas have persistent

Expression of a Nicotiana tabacum pathogen-induced gene is involved in the susceptibility to black shank

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Many host genes induced during compatible plant-pathogen interactions constitute targets of pathogen virulence factors that act to suppress host defenses. In order to identify Nicotiana tabacum L. genes for pathogen-induced proteins involved in susceptibility to the oomycete Phytophthora parasitica

Dufulin Intervenes the Viroplasmic Proteins as the Mechanism of Action against Southern Rice Black-Streaked Dwarf Virus.

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Southern rice black-streaked dwarf virus (SRBSDV) causes disease in crops, which reduces the quality and yield. Several commercial antiviral agents are available to control the SRBSDV induced disease. However, the mechanism of antiviral agents controlling SRBSDV is largely unknown. Identifying
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