1 to 10 of 410 Results
Nov 15, 2015 - Social Science
Shiferaw Bekele; Geoffrey Muricho; okello julius, 2016, "Adoption amd Impact of Improved Groundnut varieties In Uganda - Household survey", https://doi.org/10.21421/D2/M49FF5, ICRISAT Dataverse, V1
The primary survey was conducted in 2 stages. The first stage was a reconnaissance survey the purpose of which was to have a broader understanding of the Groundnut production and market conditions in Uganda. This involved consultative discussions with farmers, traders, extension... |
Apr 3, 2019 - Social Science
Shiferaw Bekele; Muricho, Geoffrey; Okello, Julius, 2016, "Adoption And Imapct Of Improved Groundnut Varieties In Uganda - Group survey at village level", https://doi.org/10.21421/D2/GZ10DM, ICRISAT Dataverse, V2
Primary survey was conducted in 2 stages. The first stage survey was a reconnaissance survey with the objective of getting a broader understanding of production and marketing conditions in Uganda. The inputs from the discussions with farmers, traders, extension staff who were wor... |
Jul 26, 2012 - Social Science
Bantilan MCS, 2016, "Adoption survey on soil fertility management practices in SAT Agriculture", https://doi.org/10.21421/D2/OPISLO, ICRISAT Dataverse, V1
Adoption survey on soil fertility management practices in SAT Agriculture |
Jan 3, 2015 - Phenotypic
Harikishan S, 2016, "Aflatoxin contamination problem in Anantapur district", https://doi.org/10.21421/D2/CEARED, ICRISAT Dataverse, V1
Aflatoxin contamination problem studies in Anantapur district of Andhra Pradesh of South India |
Apr 26, 2019 - Phenotypic
Baloua Nebie; Abdoulaye Diallo, 2019, "Agronomic performance of Sorghum margaritiferum Kende in the Guinean zone of Mali-West and Central Africa", https://doi.org/10.21421/D2/CHAUNT, ICRISAT Dataverse, V2, UNF:6:5pUyYs2wXzDD67W4tIS11A==
Sorghum bicolor, sub-race margaritiferum trial conducted by ICRISAT-Mali and IER in IER research station at Farako, Sikasso region in 2014. The objective was to identify sorghum varieties with very vitreous grains, adapted to Guinean zone where new variety has not been released m... |
Oct 25, 2016 - Genotypic
Abhishek Bohra; Rachit K Saxena; B. N. Gnanesh; K.B. Saxena; M. Byregowda; Abhishek, Rathore; P. B. Kavi Kishor; Douglas R. Cook; Rajeev K. Varshney, 2016, "An intra-specific consensus genetic map data of Pigeonpea", https://doi.org/10.21421/D2/I4OVE2, ICRISAT Dataverse, V1
This dataset contains Markers data and genetic map. The availability of a cytoplasmic male sterility (CMS) system as facilitated the development and release of hybrids which are expected to enhance the productivity of pigeonpea. Recent advances in genomics and molecular breeding... |
Sep 28, 2018 - Phenotypic
Kedar N. Rai; Gupta SK; Ranjana Bhattacharjee; Venkatesh K; Akhilesh kumar singh; Sambasiva Rao A, 2018, "Analysis of variance for 10 quantitative traits in Pearl millet seed parental lines", https://doi.org/10.21421/D2/VUHSHK, ICRISAT Dataverse, V1, UNF:6:oc2w92IerFOsDqdJ5yaLAA==
This database includes the research work carried out on phenotypic evaluation of Pearl millet seed parents designated in 1981 to 2004. The 99 A-lines in three diverse cytoplasmic backgrounds (63 A1, 35 A4 and 1 Aag), and their counterpart B-lines were planted in a split-plot desi... |
Nov 23, 2015 - Phenotypic
Kholova Jana; Vadez, Vincent, 2016, "APSIM - Sorghum,Maize and Pearl millet physiology datasets", https://doi.org/10.21421/D2/YUJRDM, ICRISAT Dataverse, V1
Sorghum,Maize and Pearl millet crop physiological parameter datasets of APSIM model. |
Oct 6, 2016 - Phenotypic
Vadez, Vincent, 2016, "Assessment of Chickpea reference collection in LeasyScan platform", https://doi.org/10.21421/D2/9EF1SK, ICRISAT Dataverse, V2
Chickpea canopy germplasm growth. Evolution of different plant growth parameters over time |
Oct 6, 2016 - Phenotypic
Vadez, Vincent, 2016, "Assessment of Pearl millet inbred germplasm association panel (PMiGAP) reference collection in LeasyField platform", https://doi.org/10.21421/D2/L6TXOB, ICRISAT Dataverse, V2
Pearl millet TE yield germplasm growth. Yield and agronomic trait assessment + transpiration efficiency (TE). |