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Control of citrinin production through plant latex


, : Control of citrinin production through plant latex. National Academy of Science Letters 9(6): 163-164

Latex from Ficus benghalensis, Tabernaemontana divaricata and Vallaris solanacea completely suppressed citrinin production by Penicillium citrinum, while latex of Thevetia puruviana was ineffective.

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Related references

Rodig, O.R.; Ellis, L.C.; Glover, I.T., 1966: The biosynthesis of citrinin in Penicillium citrinum. I. Production and degradation of citrinin. Biochemistry 5(7): 2451-2458

Li, Y-Ping.; Pan, Y-Feng.; Zou, L-Hua.; Xu, Y.; Huang, Z-Bing.; He, Q-Hua., 2014: Lower citrinin production by gene disruption of ctnB involved in citrinin biosynthesis in Monascus aurantiacus Li AS3.4384. The filamentous fungi Monascus spp. have been used in the production of food colorants and health remedies for more than 1000 years in Asia. However, greater attention has been given to the safety of Monascus products because they contain citrinin...

Ning, Z-Qiang.; Cui, H.; Xu, Y.; Huang, Z-Bing.; Tu, Z.; Li, Y-Ping., 2016: Deleting the citrinin biosynthesis-related gene, ctnE, to greatly reduce citrinin production in Monascus aurantiacus Li AS3.4384. NlmCategory="UNASSIGNED">For thousands of years, fermentation products of the filamentous fungi Monascus spp. have been used extensively in the food and pharmaceutical industries. However, their development is limited because of the h...

Giridhar, P.; Reddy, S.M., 1997: Efficacy of some bacteria in the control of growth and citrinin production by Penicillium citrinum. The efficacy of some saprophytic bacteria in the control of growth and production of the mycotoxin citrinin by P. citrinum, was investigated. P. aeruginosa and Klebsiella sp. completely inhibited the growth of P. citrinum in liquid culture when bo...

Giridhar, P.; Reddy, S.M.; Rajam, M.V., 1997: Control of Penicillium citrinum growth and citrinin production by some polyamine biosynthesis inhibitors. Polyamine biosynthesis inhibitors significantly inhibited citrinin production by P. citrinum. Both BCHA (cyclohexamine) and MGBG (methyl glyoxol bis) (guanyl hydrazone) at 7.5 mM completely inhibited citrinin production and reduced production by 9...

Chary, M.P.; Reddy, S.M., 1986: Efficacy of certain food preservatives in the control of growth and citrinin production by Penicillium citrinum. The most effective compounds tested included benzoic acid (250 micro g/ml), P-aminobenzoic acid (4000 micro g/ml), potassium metabisulphite (1000 micro g/ml) and propionic acid (2 micro g/ml), none of which permitted either growth or citrinin prod...

Al-Robai, AA.; Abo-Khatwa, AN.; Jamal, ZA., 1998: Toxicological studies on the latex of the usher plant Calotropis procera (Ait.) in Saudi Arabia. 5 - Seasonal variation of total cardiac glycosides in the usher plant latex and in various tissues of the usherhopper, Poekilocerus bufonius Klug. Arab Gulf Journal of Scientific Research. April; 161: 129-144

A.R.bai, A.A.; Abo Khatwa, A.N.; Jamal, Z.A., 1998: Toxicological studies on the latex of the usher plant Calotropis procera (Ait.) in Saudi Arabia. V. Seasonal variation of total cardiac glycosides in the usher plant latex and in various tissues of the usherhopper, Poekilocerus bufonius Klug. Latex of various parts of the Usher milkweed (Calotropis procera) was collected monthly during 5 August 1990-1 August 1991 and 19 November 1992 -15 July 1993, and with males and females of the acridid Poekilocerus bufonius during December 1992-Jun...

Traore A.S., 1992: Biogas production from calotropis procera a latex plant found in west africa. Calotropis procera is a bush latex plant, 1-3 m high; its leaves are 10-13 cm wide by 17-19 cm long. This plant is very drought-resistant and grows throughout the Sahelian countries, notably in Burkina Faso. Batch fermentation experiments show tha...

Rola, J.; Kuzniewski, E., 1979: Weed control in plant production on an industrial scale. 1: General principles. Effect of intensification and specialization of plant production on weediness. In Poland an intensification of crop production in recent years has lead to a reduction in Agrostemma githago, Spergula maxima [=S. arvensis], Lycopsis arvensis [=Anchusa arvensis], Valerianella dentata and Centaurea cyanus but increases in Apera...