scholarly journals The Change of Dormancy and Mustard Oil (Allyl-isothiocyanate) Content in Seeds of Brassica juncea Czern. et Coss. and B. carinata Braun

1985 ◽  
Vol 54 (1) ◽  
pp. 75-81
Author(s):  
Satoru TOKUMASU ◽  
Izumi KANADA ◽  
Masahiro KATO
2018 ◽  
Vol 1 (72) ◽  
pp. 114-118 ◽  
Author(s):  
Lyudmila Gorlova ◽  
◽  
Viktoriya Trubina ◽  
Oksana Serdyuk ◽  
Yelena Shipievskaya ◽  
...  
Keyword(s):  

1976 ◽  
Vol 108 (10) ◽  
pp. 1021-1030 ◽  
Author(s):  
K. S. S. Nair ◽  
F. L. McEwen

AbstractIn Hylemya brassicae (Bouché) little oviposition occurred when access to host plant material was denied. The mustard oil, allyl isothiocyanate (AITC), stimulated the flies into greater activity and attracted them to its source. Sinigrin and four other glucosinolates (mustard oil glucosides) tested induced oviposition. AITC by itself did not induce, oviposition, but in the presence of a glucosinolate, small concentrations of AITC caused an increase in the number of eggs laid. Glucose, sucrose, casein, wheat germ oil, and a mixture of B-vitamins did not influence oviposition at the concentrations tested, but casein hydrolysate inhibited it. The role of glucosinolates and common nutrients in host selection by H. brassicae is discussed.


2005 ◽  
Vol 56 (6) ◽  
pp. 581 ◽  
Author(s):  
R. N. Oram ◽  
J. T. O. Kirk ◽  
P. E. Veness ◽  
C. J. Hurlstone ◽  
J. P. Edlington ◽  
...  

Indian mustard [Brassica juncea (L.) Czern.] is a more productive oilseed than canola (B. napus L.) in hot regions of Russia, India, China, and Canada with somewhat unreliable rainfalls, whereas canola is the higher yielding species in more temperate, wetter regions. The specific agronomic features of the species, and their performance in various Australian regions are reviewed. The discovery of the genes for low erucic acid oil production in the seeds of Indian mustard began the conversion of this ancient crop to a canola-type oilseed for dry areas. Initially, many accessions were field-tested at Wagga Wagga and Canberra, but 2 seed-borne diseases, leaf and stem blight and seed rot, were destructive. Accessions from South Asia were severely damaged by the blight caused by Pseudomonas syringae pv. maculicola Young, Dye & Wilkie 1978, whereas most of the cultivars from latitudes above 45°N were resistant. A phytotron procedure was developed for screening seedlings. The segregation pattern in F2 families from resistant × susceptible crosses suggested that reactions to a typical Pseudomonas isolate were controlled largely by co-dominant resistance (PsmR ) and susceptibility (PsmS ) alleles at one locus. F3 families with field resistance equal to the PsmR/PsmR parents were readily recovered, indicating that few or no modifying genes affected disease reactions. Resistant families selected from each of 6 crosses yielded 13.8% more seed (P < 0.001) than the corresponding segregating and susceptible families when these were tested at Canberra and Wagga Wagga. The disease became unimportant when most entries in field trials were resistant. A seed-rotting disease caused by a yeast with distinctive ascospores closely resembling those of Nematospora sinecauda Holley, Allan-Wotjas & Phipps-Todd 1984 occurred in some imported and locally grown seed samples, but was eliminated by hot water treatment of seed prior to sowing and by control of the presumed insect vector, Nysius vinitor (Bergroth), during seed maturation in the field. No previous record of the occurrence of this disease in Australia was found in the literature by a plant pathologist. The availability of breeding lines with low erucic acid seed oil, Pseudomonas resistance, and a predominance of propenyl glucosinolate in the meal permitted the development of a cold-pressed, edible oil industry by a family company (Yandilla Mustard Oil Enterprise) at Wallendbeen, NSW. The original oil has a mild nutty flavour, but now a larger proportion of the market requires a pungent, mustard-flavoured oil containing a trace of propenyl isothiocyanate, the hydrolytic product of the corresponding glucosinolate in the meal. The full-flavoured meal is sold for table mustard and pickle manufacture, as a stock feed ingredient containing approximately 30% protein and 18% oil, and for the distillation, by another small company at Cowra, NSW, of propenyl isothiocyanate, which is used as a flavouring and preservative in food, especially in Japan. This review describes the breeding of cultivars for cold-pressed oil production, as an off-shoot of the canola-grade B. juncea project. Five successively improved, Pseudomonas-resistant cultivars were developed by crossing and pedigree selection for higher yield under a range of limiting conditions, and released for cold-pressed, low erucic acid oil production. The rate of yield increase in the cultivars released between 1989 and 2001 was 2.4% per annum as judged from small plot yields of all cultivars in each of 4 years at Wallendbeen. Flowering time adjustment provided a one-off improvement, but continued progress seems possible by field selection for traits such as increased resistance to the Sclerotinia and Alternaria pathogens, resistance to acid soils, waterlogging, frost at flowering, heat and drought during seed maturation, and increased efficiency of nutrient utilisation. The nutraceutical properties of mustard oil, and the chemical differences among current B. juncea seed products, are described. Possible future developments are discussed.


2006 ◽  
Vol 69 (10) ◽  
pp. 2430-2435 ◽  
Author(s):  
METTE WINTHER ◽  
PER VÆGGEMOSE NIELSEN

The natural antimicrobial compound allyl isothiocyanate (AITC), found in mustard oil, is effective against cheese-related fungi both on laboratory media and cheese. Penicillium commune, Penicillium roqueforti, and Aspergillus flavus were more sensitive to AITC when it was added just after the spores had completed 100% germination and branching had started on Czapek yeast extract agar than were spores in the dormant phase. The use of 1 AITC label (Wasaouro interior labels, LD30D, 20 by 20 mm) in combination with atmospheric air in the packaging extended the shelf life of Danish Danbo cheese from 4½ to 13 weeks. Two AITC labels extended the shelf life from 4½ to 28 weeks. Both 1 and 2 labels in combination with modified atmosphere packaging extended the shelf life of the cheese from 18 to 28 weeks. This study showed that AITC was absorbed in the cheese, but it was not possible to detect any volatile breakdown products from AITC in the cheese. Cheese stored for up to 12 weeks with an AITC label had an unacceptable mustard flavor. The mustard flavor decreased to an acceptable level between weeks 12 and 28. Cheese stored in atmospheric air had a fresher taste without a CO2 off-flavor than did cheese stored in modified atmosphere packaging. AITC may be a good alternative to modified atmosphere packaging for cheese. The extended shelf life of cheese in the package is very desirable: the cheese can be transported longer distances, and the packaging can be used for the final maturing of the cheese. Furthermore, AITC can address problems such as pinholes and leaking seals in cheese packaging.


2017 ◽  
Vol 12 (9) ◽  
pp. 1934578X1701200
Author(s):  
Arti Sharma ◽  
Ritika Sharma ◽  
Rohit Arora ◽  
Saroj Arora ◽  
Bikram Singh ◽  
...  

Eruca sativa and Brassica juncea belong to the Brassicaceae family and have been used traditionally for the treatment of cancer and various cardiovascular ailments. A rapid and simple ultra performance liquid chromatography (UPLC) method has been developed for the simultaneous quantification of erucin, allyl isothiocyanate and benzyl isothiocyanate in E. sativa and B. juncea oil. Eruca sativa oil contains erucin (28.93%), allyl isothiocyanate (0.06%) and benzyl isothiocyanate (0.70%). Identification of other secondary metabolites in E. sativa and B. juncea oil and aqueous methanolic extracts were also carried out using ultra performance liquid chromatography-electro spray ionization-quadrupole time of flight (UPLC-ESI-QTOF). The UPLC-ESI-QTOF based study leads to the identification of ten compounds in B. juncea oil and three compounds in E. sativa oil. The UPLC-ESI-QTOF analysis of aqueous methanolic extracts of E. sativa and B. juncea leads to the identification of eight and nine compounds, respectively.


1998 ◽  
Vol 80 (2) ◽  
pp. 465-492 ◽  
Author(s):  
E. Carstens ◽  
Nicole Kuenzler ◽  
H. O. Handwerker

Carstens, E., Nicole Kuenzler, and H. O. Handwerker. Activation of neurons in rat trigeminal subnucleus caudalis by different irritant chemicals applied to oral or ocular mucosa. J. Neurophysiol. 80: 465–492, 1998. To investigate the role of trigeminal subnucleus caudalis in neural mechanisms of irritation, we recorded single-unit responses to application of a variety of irritant chemicals to the tongue or ocular mucosa in thiopental-anesthetized rats. Recordings were made from wide dynamic range (WDR) and nociceptive-specific units in superficial layers of the dorsomedial caudalis (0–3 mm caudal to obex) responsive to mechanical stimulation and noxious heating of the ipsilateral tongue (“tongue” units) and from WDR units in ventrolateral caudalis (0–2 caudal to obex) responsive to mechanical and noxious thermal stimulation of cornea-conjunctiva and frequently also surrounding skin (“cornea-conjunctival” units). The following chemicals were delivered topically (0.1 ml) onto the dorsal anterior tongue or instilled into the ipsilateral eye: capsaicin (0.001–1% = 3.3 × 10−2 to 3.3 × 10−5 M), ethanol (15–80%), histamine (0.01–10% = 9 × 10−1 to 9 × 10−4 M), mustard oil (allyl-isothiocyanate, 4–100% = 4 × 10−1 to 10 M), NaCl (0.5–5 M), nicotine (0.01–10% = 6 × 10−1 to 6 × 10−4 M), acidified phosphate buffer (pH 1–6), piperine (0.01–1% = 3.5 × 10−2 to 3.5 × 10−4 M), serotonin (5-HT; 0.3–3% = 1.4 × 10−1 to 1.4 × 10−2 M), and carbonated water. The dose-response relationship and possible tachyphylaxis were tested for each chemical. Of 32 tongue units, 31 responded to one or more, and frequently all, chemicals tested. The population responded to 75.3% of the various chemicals tested (≤10 per unit). The incidence of responses was independent of the order of chemicals tested, except for capsaicin, which reduced subsequent responses. Responses to histamine, nicotine, 5-HT, and ethanol had a more rapid onset and shorter duration compared with capsaicin, acid, and mustard oil. Responses to all chemicals increased in a dose-related manner. Successive responses to repeated application decreased significantly for nicotine, 5-HT, capsaicin, and piperine. Spontaneous firing increased significantly 5–10 min after initial application of capsaicin. Of 31 corneal-conjunctival units, 29 responded to one or more chemicals, and the population responded to 65% of all chemicals tested. Responses increased in a dose-related manner for all chemicals, and successive responses decreased significantly for histamine, nicotine, ethanol, acid, and capsaicin. Responses of tongue units to histamine and nicotine were reduced significantly by ceterizine (H1 antagonist) and mecamylamine, respectively. Mecamylamine also significantly reduced responses of corneal-conjunctival units to nicotine. Different classes of irritant chemicals contacting the oral or ocular mucosa can activate individual sensory neurons in caudalis, presumably via independent peripheral transduction mechanisms. Multireceptive units with input from the tongue or cornea-conjunctiva exhibited a similar spectrum of excitability to different irritant chemicals. Such neurons would not be capable of discriminating among different chemically evoked irritant sensations but could contribute to a common chemical sense.


1962 ◽  
Vol 40 (1) ◽  
pp. 1505-1514 ◽  
Author(s):  
E. W. Underhill ◽  
M. D. Chisholm ◽  
L. R. Wetter

Biosynthetic investigations with C14-labelled compounds indicate that the aromatic isothiocyanate moieties of mustard oil glucosides obtained from garden nasturtium (Tropaeolum majus L.) and watercress (Nasturtium officinale R.Br.) are derived from phenylalanine. Similar investigations on sinigrin, the mustard oil glucoside isolated from horseradish (Armoracia lapathifolia Gilib.) demonstrate that glycine is incorporated into allyl isothiocyanate. The methyl carbon of acetate was readily incorporated into sinigrin and gluconasturtium and was found almost exclusively in the 'isothiocyanate carbon'; on the other hand the carboxyl carbon is a poor precursor of sinigrin.


2008 ◽  
Vol 85 (8) ◽  
pp. 693-699 ◽  
Author(s):  
Chakra Wijesundera ◽  
Claudio Ceccato ◽  
Peter Fagan ◽  
Zhiping Shen ◽  
Wayne Burton ◽  
...  

1966 ◽  
Vol 44 (12) ◽  
pp. 1625-1632 ◽  
Author(s):  
M. D. Chisholm ◽  
L. R. Wetter

Five 14C-labeled amino acids were administered to horseradish (Armoracia lapathifolia Gilib.) leaves. Three of the amino acids, DL-homoserine-2-14C, DL-methionine-2-14C, and DL-homomethionine-2-14C (2-amino-5-(methylthio)-valeric acid), were precursors of the aglycone (allyl isothiocyanate) of sinigrin. The other two, DL-allylglycine-2-14C (2-amino-4-pentenoic acid) and DL-2-amino-5-hydroxyvaleric acid-2-14C, were incorporated in insignificant amounts. The relationships of the three efficient precursors are discussed. The syntheses of four 14C-labeled amino acids used in this investigation are described.


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