Items where Division is "Pigeonpea" and Year is 2016
Number of items: 23. BB. Niranjana Kumara, B. and Dharmaraj, P.S. and Kuchnur, P.H. and Muniswamy, S. and et al, . (2016) Stability analysis for yield and its attributing traits in advanced genotypes of pigeonpea [Cajanus cajan (L.) Millsp.]. Legume Research, 39 (2). pp. 194-197. Bankar, P.B. and Panchal, V.V. and Kharade, M.R. and Shinde, A.K. (2016) Evaluation of Pigeonpea Genotypes for Morpho-phenological Traits By Growing on Rice Bunds. International Journal of Tropical Agriculture, 34 (1). pp. 1-5. Bohra, A. and Singh, I.P. and Mehandi, S. and Singh, D. and Nadarajan, N. (2016) Investigating inheritance patterns of a spontaneous mutant in pigeonpea and its future implications for CGMS based hybrid breeding. Legume Research, 39 (1). pp. 35-38. DDas, A. and Datta, S. and Sujayanand, G.K. and et al, . (2016) Expression of chimeric Bt gene, Cry1Aabc in transgenic pigeonpea(cv. Asha) confers resistance to gram pod borer (Helicoverpa armigera Hubner.). Plant Cell, Tissue and Organ Culture, 127 (3). pp. 705-715. KKaur, A. and Sharma, M. and Sharma, C. and et al, . (2016) Pod borer resistant transgenic pigeon pea (Cajanus cajan L.) expressing cry1Ac transgene generated through simplified Agrobacterium transformation of pricked embryo axes. Plant Cell, Tissue and Organ Culture, 127 (3). pp. 717-727. LLoganathan, V. and Latha, K.R. (2016) Effect of drip fertigation on nutrient uptake and seed yield of pigeonpea [Cajanus Cajan (L.) Millsp.] under westeren agroclimatic zones of Tamil Nadu. Legume Research,, 39 (5). pp. 780-785. MMurumkar, R.P. and Borkar, P.A. and Munje, S.S. and Rathod, P.K. and etl, . (2016) Effect of enzyme pre-treatments on milling of Pigeonpea. International Journal of Science, Environment and Technology, 5 (6). pp. 4029-4051. OOjwang, J.D. and Nyankanga, R.O. and Olanya, O.M. and Ukuku, D.O. and Imungi, J. (2016) Yield components of vegetable pigeon pea cultivars. Subtropical Agriculture and Environments, 67. pp. 1-12. PPal, G. and Radhika, C. and Singh, R.K. and Udaya Bhaskar, K. and etc, . (2016) Comparative economics of seed production vis - à - vis grain production of pigeonpea in Karnataka, India. Legume Research, 39 (5). pp. 806-809. Pandey, P. and Kumar, R. and Pandey, V.R. (2016) Genetic association studies for yield and yield related traits in pigeonpea [Cajanus cajan (L.) Millsp.]. Legume Research, 39 (2). pp. 189-193. Pandey, S.A. and Das, S.B. (2016) Evaluation of biopesticides against gram pod borer Helicoverpa armigera (HUB.) on pigeonpea. Legume Research, 39 (3). pp. 479-481. Parmar, M.B. and Kathiria, K.B. (2016) Genetic analysis of seed yield and quantitative traits in Pigeonpea. Gobal Journal for Research Analysis, 5 (2). pp. 182-186. RRaja, R.B. and Agasimani, S. and Varadharajan, A. and Ram, S.G. (2016) Natural variability and effect of processing techniques on raffinose family oligosaccharides in pigeonpea cultivars. Legumes Research, 39 (4). pp. 578-532. Rajendran, L. (2016) Indian contribution to Pigeonpea (Cajanus cajan) pulse crop research: A Scientometric analysis. SRELS Journal of Information Management, 53 (6). pp. 467-470. Rajeswari, E. and Smitha, K.P. and Kamalakannan, A. and Alice, D. and Kannan Bapu, J.R. (2016) Management of pigeonpea sterility mosaic disease. Legume Research, 39 (4). pp. 648-650. Rangaswamy, E. and Gopika, K. and Pushpavathi, B. and SokkaReddy, S. and Krishna, M.S.R. (2016) An overview of variability in fusarium udum, the incitant of wilt in Pigeonpea. International Journal of Applied Biology and Pharmaceutical Technology, 7 (2). pp. 404-415. Rashmi, U.S. and Chattannavar, S.N. (2016) Prevalence of Fusarium wilt of pigeon pea caused by Fusarium udum Butler. in Karnataka. Journal of Farm Sciences, 29 (4). pp. 521-523. SSahu, A.R. and Mishra, R.R. and Panigrahi, J. (2016) Estimation of genetic diversity among 34 genotypes in the genus Cajanus with contrasting host response to the pod borer and its allied pests. Journal of Crop Science and Biotechnology, 19 (1). pp. 17-35. Singh, R.S. and Singh, M.N. (2016) Heterosis and Inbreeding Depression for Yield and Yield Traits in Pigeonpea (Cajanus cajan L.). Environment & Ecology, 34 (1A). pp. 395-399. TTayyab, . and Azeem, M. and Qasim, M. and et al, . (2016) Salt stress responses of pigeon pea (cajanus cajan) on growth, yield and some biochemical attributes. Pakistan Journal of Botany, 48 (4). pp. 1353-1360. WWubneh, V.Y. and Taggar, G.K. (2016) Role of morphological factors of pigeonpea in imparting resistance to spotted pod borer, Maruca vitrata Geyer (Lepidoptera: Crambidae). Journal of Applied and Natural Science, 8 (1). pp. 218-224. YYamanura, S. and Muniswamy, . and Ramesh, . (2016) Identification of superior parents and hybrids for improving pigeonpea [Cajanus cajan (L.) Millsp.] yield. Legume Research, 39 (6). pp. 868-875. ZZerihun Abebe, Z. and Tadesse, S. and Tola, M. (2016) Multiple advantages of Pigeon Pea (Cajanas Cajan) in maize based cropping systems: Used as live stake for climbing bean with phosphorus rates and maize productivity enhancement in mono cropping areas. Journal of Natural Sciences Research, 6 (19). pp. 58-69. |