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The aflatoxin class of mycotoxins is one of the most important food safety concerns at domestic and international levels. The widespread occurrence of aflatoxin contamination in Africa and other tropical countries is a major potential hazard to humans and domesticated animals, and causes severe h...


Waliyar, F.Siambi, M.Jones, R.Reddy, S.Chibonga, D.Kumar, L.Denloye, S.[Institutionalizing mycotoxin testing in Africa]Institutionalizing mycotoxin testing in Africa

Peanut plays an important role in the liveli-hoods of poor farmers and in the rural economy ofmany developing countries. Aflatoxin contamina-tion in peanut seeds, caused byAspergillus flavus,hampers international trade and adversely affectshealth of consumers of peanut and its products. It...


Nigam, S.Waliyar, F.Aruna, R.Reddy, S.Kumar, P.L.Craufurd, Peter Q.Diallo, A.Ntare, B.R.Upadhyaya, Hari D.[Breeding peanut for resistance to aflatoxin contamination at ICRISAT]Breeding peanut for resistance to aflatoxin contamination at ICRISAT

Genetic engineering of peanut (Arachis hypogaea L.) using the gene encoding for the nucleocapsid protein (N gene) of peanut bud necrosis virus (PBNV; genus Tospovirus, family Bunyaviridae) was used to impart resistance to bud necrosis disease in peanut (PBND), a disease for which no durable resis...


Rao, S.C.Bhatnagar-Mathur, P.Kumar, P.L.Reddy, S.Sharma, K.[Pathogenderived resistance using a viral nucleocapsid gene confers only partial nondurable protection in peanut against peanut bud necrosis virus]Pathogenderived resistance using a viral nucleocapsid gene confers only partial nondurable protection in peanut against peanut bud necrosis virus

A seamless vegetation type map of India (scale 1: 50,000) prepared using medium-resolution IRS LISS-III images is presented. The map was created using an on-screen visual interpretation technique and has an accuracy of 90%, as assessed using 15,565 ground control points. India has hitherto been u...


Roy, P.S.Behera, M.D.Murthy, M.S.R.Roy, A.Singh, S.Kushwaha, S.P.S.Jha, C.S.Sudhakar, S.Joshi, Pramod K.Reddy, S.Gupta, S.Pujar, G.Dutt, C.B.S.Srivastava, V.K.Porwal, M.C.Tripathi, P.Singh, J.S.Chitale, V.Skidmore, Andrew K.Rajshekhar, G.Kushwaha, D.Karnatak, H.Saran, S.Amarnath, GirirajPadalia, H.Kale, M.Nandy, S.Jeganathan, C.Singh, C.P.Biradar, Chandrashekhar M.Pattanaik, C.Singh, D.K.Devagiri, G.M.Talukdar, G.Panigrahy, R.K.Singh, H.Sharma, J.R.Haridasan, K.Trivedi, S.Singh, K.P.Kannan, L.Daniel, M.Misra, M.K.Niphadkar, M.Nagabhatla, N.Prasad, N.Tripathi, O.P.Prasad, P.R.C.Dash, P.Qureshi, Q.Tripathi, S.K.Ramesh, B.R.Gowda, B.Tomar, S.Romshoo, S.Giriraj, S.Ravan, S.A.Behera, S.K.Paul, S.Das, Anup K.Ranganath, B.K.Singh, T.P.Sahu, T.R.Shankar, U.Menon, A.R.R.Srivastava, G.Sharma, N.S.Mohapatra, U.B.Peddi, A.Rashid, H.Salroo, I.Krishna, P.H.Hajra, P.K.Vergheese, A.O.Matin, S.Chaudhary, S.A.Ghosh, S.Lakshmi, U.Rawat, D.Ambastha, K.Malik, A.H.Devi, B.S.S.Sharma, K.C.Mukharjee, P.Sharma, A.Davidar, P.Raju, R.R.V.Katewa, S.S.Kant, S.Raju, V.S.Uniyal, B.P.Debnath, B.Rout, D.K.Thapa, R.Joseph, S.Chhetri, P.Ramachandran, R.M.[New vegetation type map of India prepared using satellite remote sensing: comparison with global vegetation maps and utilities]New vegetation type map of India prepared using satellite remote sensing: comparison with global vegetation maps and utilities

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