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Brassica juncea Czern.

2018
Brassica juncea (L.) Czern. Artbeschreibung: Ähnlich wie B. oleracea, aber Stängel am Grund borstig behaart. Grundblätter mit grossem Endabschnitt und 1-2 Paaren von Seitenlappen, nicht fleischig, nicht runzelig, schwach behaart. Obere Blätter ungeteilt, stielartig verschmälert. Kronblätter nur 6-10 mm lang, kurz benagelt, gelb, Kelchblätter nur 4-6 mm
Konrad Lauber   +2 more
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Brassica juncea Czern.

2015
Published as part of Augustine, Rehna & Bisht, Naveen C., 2015, Biotic elicitors and mechanical damage modulate glucosinolate accumulation by co-ordinated interplay of glucosinolate biosynthesis regulators in polyploid Brassica juncea, pp. 43-50 in Phytochemistry 117 (1) on pages 45-48, DOI: 10.1016/j.phytochem.2015.05.015, http://zenodo.org/record ...
Augustine, Rehna, Bisht, Naveen C.
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Genetics of Brassica juncea

2010
Brassica juncea (AABB) is a natural allopolyploid of Brassica rapa (AA) and Brassica nigra (BB). B. juncea group contains both oilseed types and vegetable types. Extensive phenotypic and molecular marker-based studies on oilseed types of B. juncea have identified two major divergent gene pools, the Indian gene pool and the east European gene pool ...
Akshay K. Pradhan, Deepak Pental
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Purification of adenine phosphoribosyltransferase from Brassica juncea

Archives of Biochemistry and Biophysics, 1990
Adenine phosphoribosyltransferase was purified from Brassica juncea leaves approximately 4000-fold, to homogeneity. The native enzyme is a homodimer, with a Mr of 54,000. The purification involved (NH4)2SO4 fractionation, differential ultracentrifugation, and anion-exchange, hydrophobic, dye-ligand, and affinity chromatography.
B A, Moffatt, C R, Somerville
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Hybridization in Brassica juncea × Brassica campestris through ovary culture

Euphytica, 1988
Ovary culture has been employed for the production of interspecific hybrids of a partially compatible cross of Brassica juncea (2n=36) × Brassica campestris (2n=20). Five to seven days old ovaries cultured on White's medium supplemented with casein hydrolysate (300 mg/l) and sucrose (5%) produced more seeds than any other media tried, but seed ...
D. Mohapatra, Y. P. S. Bajaj
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Virulence of Agrobacterium tumefaciens strains with Brassica napus and Brassica juncea

Plant Cell Reports, 1989
Brassica napus and Brassica juncea were infected with a number of Agrobacterium tumefaciens strains. Tumourigenesis was very rapid and extremely efficient on B. juncea with all but one of the strains. Tumourigenesis on B. napus varied widely. It was very efficient with the nopaline strains, was reduced with the succinamopine strain A281 and was very ...
P J, Charest, V N, Iyer, B L, Miki
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Brassica juncea Czern.

2007
Sinapis juncea Linnaeus, Species Plantarum 2: 668. 1753. "Habitat in Asia." RCN: 4868. Lectotype (Bailey in Gentes Herb. 1: 95. 1922): Herb. Linn. No. 845.11 (LINN). Current name: Brassica juncea (L.) Czern. (Brassicaceae).
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Isozyme studies in Indian mustard (Brassica juncea L.)

Theoretical and Applied Genetics, 1985
A comparative study of peroxidase and esterase isozymes was carried out at five developmental stages of siliqua in order to characterize twelve genotypes of Indian mustard. The studies showed nearly the same number of isozyme bands at every stage for peroxidase and a varying number of isozyme bands for esterase.
R, Kumar, V P, Gupta
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Aflatoxin contamination in field mustard (Brassica juncea) cultivars

Mycotoxin Research, 1992
7 varieties of mustards were cultivated in statistically designed field during 1988 through 1989 and 1989 through 1990 crops in order to ascertain the resistant or less susceptible varieties for aflatoxin elaboration. Under field condition, none of the varieties of mustard was found to be resistant.
K S, Bilgrami   +2 more
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Kaempferol glycosides with antioxidant activity from Brassica juncea

Archives of Pharmacal Research, 2009
From the leaves of Brassica juncea, three kaempferol glycosides, kaempferol-3-O-(2-O-sinapoyl)-beta-D-glucopyranosyl-(1-->2)-beta-D-glucopyranoside-7-O-beta-D-glucopyranoside (1), kaempferol-3-O-beta-D-glucopyranosyl-(1-->2)-beta-D-glucopyranoside-7-O-beta-D-glucopyranosyl-(1-->6)-beta-D-glucopyranoside (2), and kaempferol-3-O-(2-O-sinapoyl)-beta-D ...
Hyun Ah, Jung   +4 more
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