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APPSA Lesotho trains staff on the technical administration and customization of the new website

Author or Institution as Author
Department of Agricultural Research
Date of publication
File format
Language
Description/Abstract

Five officials comprising of three (3) Information technology Officers from the Ministry of Agriculture Food Security and Nutrition (MAFSN); One Information technology Officer from DAR as well as the ITKM Specialist from APPSA Project Implementation Unit (PIU) attended the website training in Maseru, Lesotho from the 10th – 11th May, 2023. The training was designed to improve the skills on the customization and administration of the DAR website to respond to growing demands from external and internal stakeholders. Five officials comprising of three (3) Information technology Officers from the Ministry of Agriculture Food Security and Nutrition (MAFSN); One Information technology Officer from DAR as well as the ITKM Specialist from APPSA Project Implementation Unit (PIU) attended the website training in Maseru, Lesotho from the 10th – 11th May, 2023. The training was designed to improve the skills on the customization and administration of the DAR website to respond to growing demands from external and internal stakeholders.

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Tomato variety JUPITER

Content Type
Author or Institution as Author
Food and Agricultural Research and Extension Institute (FAREI)
Date of publication
Edition or Version
1.00
Institution
Food and Agricultural Research and Extension Institute (FAREI)
Language
Gender marker
Youth marker
Description/Abstract

The Food and Agricultural Research and Extension Institute, through its new variety introduction and evaluation programme, have identified a tomato variety Jupiter adapted to both humid and sub-humid regions of the island. Jupiter is a semideterminate cooking tomato variety with high-yielding potential and suitable for both fresh market and processing. The plant bears long oblong fruits which are preferred by growers and highly appreciated by consumers.

Keywords
Tomato, JUPITER
Contact name (for further information)
Food and Agricultural Research and Extension Institute (FAREI)
Contact institution (for further information)
Food and Agricultural Research and Extension Institute (FAREI)
Citation

FAREI, (2022). Tomato variety JUPITER. Mauritius VOD/2022/1 R ev1.0

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Onion Variety 243

Content Type
Author or Institution as Author
Food and Agricultural Research and Extension Institute (FAREI)
Date of publication
Edition or Version
1.00
Institution
Food and Agricultural Research and Extension Institute (FAREI)
Language
Gender marker
Youth marker
Description/Abstract

Onion 243 is a short-day yellow hybrid variety with high yield potential and is suitable for storage. Plants have a uniform fall over of leaves at maturity. Bulbs are globular, uniform, medium-sized, and firm. Yield is comparable to hybrid varieties which are commercially cultivated locally. The variety adapts well to onion-growing regions except in coastal areas having sandy soil.

Keywords
Onion Variety 243
Contact name (for further information)
Food and Agricultural Research and Extension Institute (FAREI)
Contact institution (for further information)
Food and Agricultural Research and Extension Institute (FAREI)
Citation

FAREI, (2022). Onion Variety 243. Mauritius AD/2022/1 Rev 1.0.

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Guidelines for Extraction of Tomato Seeds

Content Type
Author or Institution as Author
Food and Agricultural Research and Extension Institute (FAREI)
Date of publication
Edition or Version
1.00
Institution
Food and Agricultural Research and Extension Institute (FAREI)
Language
Gender marker
Youth marker
Description/Abstract

Guidelines for Extraction of Tomato Seeds

Contact name (for further information)
Food and Agricultural Research and Extension Institute (FAREI)
Contact email (for further information)
Contact institution (for further information)
Food and Agricultural Research and Extension Institute (FAREI)
Citation

FAREI, (2022). Guidelines for Extraction of Tomato Seeds.

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Herbicide Fluazifop-P-butyl for control of annual and perennial grasses

Content Type
Author or Institution as Author
Food and Agricultural Research and Extension Institute (FAREI)
Date of publication
Edition or Version
1.00
Institution
Food and Agricultural Research and Extension Institute (FAREI)
Language
Gender marker
Youth marker
Description/Abstract

Fluazifop-P-butyl 150 g/L is a systemic, post-emergence herbicide that can be used for the control of annual and perennial grasses. Trials carried out at the FAREI on the effect of fluazifop-P-butyl on these two types of grasses have shown that the herbicide is not phytotoxic to crops such as potato, onion, carrot, creepers, peanut, and banana, as well as non-gramineae ornamentals. Weeds turn yellow or red and weed control is usually completed within 3 to 5 weeks after application

Keywords
Herbicides, Fluazifop-P-butyl, annual and perennial grasses
Contact name (for further information)
Food and Agricultural Research and Extension Institute (FAREI)
Contact institution (for further information)
Food and Agricultural Research and Extension Institute (FAREI)
Citation

FAREI. (2022). Herbicide Fluazifop-P-butyl for control of annual and perennial grasses. Recommendation Sheet. Mauritius AD/2022/1 Rev 1.0

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Sorghum Production in Northern Namibia: Farmers’ Perceived Constraints and Trait Preferences

Content Type
Author or Institution as Author
Wanga, M.A.
Co-authors

Shemelis, H. and Mengistu, G.

Date of publication
Edition or Version
1.00
Institution
MDPI
Language
Gender marker
Youth marker
Description/Abstract

Sorghum (Sorghum bicolor [L.] Moench) is a valuable crop in the dry regions of the world, including Namibia. Due to the intensity and recurrence of drought and heat stress in the traditional sorghum growing areas, there is a need to breed and deploy new generation farmer-preferred and climate-smart cultivars to serve the diverse value chains. Therefore, the objectives of this study were to assess the present state of sorghum production in northern Namibia and document farmers’ perceived production constraints and trait preferences in new varieties to guide drought-tolerance breeding. A survey was conducted using a participatory rural appraisal in the following six selected sorghum-growing constituencies in Namibia: Kapako and Mpungu (Kavango West Region), Eenhana and Endola (Ohangwena Region), and Katima Mulilo Rural and Kongola (Zambezi Region). Data were collected using a structured questionnaire involving 198 farmers in 14 sampled villages across the regions. Results revealed variable trends in sorghum production among respondent farmers when disaggregated by gender, age, number of households, education level, cropping systems, types of varieties grown, and perceived production constraints. An equal proportion of male and female respondent farmers cultivate sorghum, suggesting the value of the crop to both genders in Namibia. Most respondent farmers (63.6%) were in productive age groups of <40 years old. In the study areas, low-yielding landrace varieties, namely Ekoko, Okambete, Makonga, Kamburo, Nkutji, Katoma, Fuba, Dommy, Kawumbe, and Okatombo, were widely cultivated, and most of the farmers did not use chemical fertilizers to cultivate sorghum. Farmers’ perceived sorghum production constraints in the study areas included recurrent drought, declining soil fertility, insect pest damage, high cost of production inputs, unavailability of improved seed, lack of alternative improved varieties with farmers’ preferred traits, lack of organic manure, limited access to market and limited extension service. The key farmers’ preferred traits in a new sorghum variety included high grain yield, early maturity, and tolerance to drought, in the field and storage insect pests. The study recommends genetic improvement and new variety deployment of sorghum with the described farmers-preferred traits to increase the sustainable production of the crop in Namibia.

Keywords
farmer-preferred traits; Namibia; participatory rural appraisal; sorghum breeding;
production challenges
Contact name (for further information)
Wanga, M.A.
Contact email (for further information)
Contact institution (for further information)
Directorate of Agricultural Research and Development, Ministry of Agriculture, Water and Land Reform- Namibia
Citation

Wanga, M.A.; Shimelis, H.; Mengistu, G. Sorghum Production in Northern Namibia: Farmers’ Perceived Constraints and Trait Preferences. Sustainability 2022, 14, 10266.

Available at: https://doi.org/10.3390/ su141610266

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Genotype by environment interaction of newly developed sorghum lines in Namibia

Content Type
Author or Institution as Author
Wanga, M.A.
Co-authors

Shimelis, H. and Mashilo, J.

Date of publication
Edition or Version
1.00
Institution
Springer
Language
Gender marker
Youth marker
Description/Abstract

The magnitude of genotype by environment interaction (GEI) is crucial for selecting high performing and adapted genotypes for targeted breeding. The aim of the study was to determine GEI of newly-developed mutant and traditional sorghum lines for grain yield and yield related traits for drought-prone areas of Namibia. Fifty sorghum genotypes were evaluated under feld conditions using a 10×5 alpha lattice design with three replications. The experiments were carried out in four environments with two growing seasons in Namibia. Data were collected on grain yield and related traits and subjected to the Additive Main Efects and Multiplicative Interaction (AMMI) model. The AMMI model showed that 93.9% of the total genetic variation was attributed to days to 50% fowering (DF), while 94.04% of the variation was due to plant height (PH), 86.52%  to panicle weight (PW), 70.67% to thousand-grain weight (TGW), and 90.68% to grain yield (GY). The larger variations attributed to genotypic efects for PL (36.3%), TGW (33.2%) and PH (20.7%) are useful for genotype selection for yield related traits. Based on a multi-trait biplot and Best Linear Unbiased Prediction (BLUPs) analyses of the GEI data across all drought-prone testing environments, the medium maturity mutant line designated as L7P9-13 was selected as the best yielding (2 tons/ha) and recommended for drought-prone area of Namibia

Keywords
AMMI · BLUEs · BLUPs · Drought tolerance, mutation breeding · Sorghum
Contact name (for further information)
Wanga, M.A.
Contact email (for further information)
Contact institution (for further information)
African Centre for Crop Improvement, School of Agricultural, Earth and Environmental Sciences, University of KwaZulu-Natal, South Africa
Citation

Wanga, M.A., Shimelis, H. and Mashilo, J. (2022). Genotype by environment interaction of newly developed sorghum lines in Namibia. Euphytica (2022) 218:147

Available at: https://doi.org/10.1007/s10681-022-03099-5

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Genetic diversity in sorghum [Sorghum bicolor (L.) Moench] germplasm from Southern Africa as revealed by microsatellite markers and agro-morphological traits

Content Type
Author or Institution as Author
Motlhaodi, T.
Co-authors

Geleta, M., Chite, S., Fatih, M., Ortiz, R. and Bryngelsson, T.

Date of publication
Edition or Version
1.00
Institution
Springer
Language
Gender marker
Youth marker
Description/Abstract

Cultivated sorghum [Sorghum bicolor (L.) Moench] is an important food security crop in the semi-arid regions of the world including Asia and Africa. Its genetic diversity is contained mostly in traditional varieties and modern cultivars used by farmers. In this study, agro-morphological traits and molecular markers were used to assess genetic diversity in 22 accessions of cultivated sorghum from five countries (Botswana, Namibia, Swaziland, Zambia and Zimbabwe) in the Southern African Development Community (SADC) region. The study revealed a significant variation among 22 accessions in both qualitative and quantitative morphological traits, indicating the accessions’ promising potential as breeding material. For molecular analysis, 11 microsatellite primer-pairs were used, and generated a total of 70 alleles across 20 accessions. Analysis of molecular variance revealed a high level of genetic variation; 67 % among the accessions and 10 % among the five countries. The patterns of genetic diversity and the relationships observed in this study should provide insights for genetic resource conservation and utilization of sorghum germplasm in the SADC region.

Keywords
Accessions, Agro-morphological traits, Genetic variation, Microsatellites, Sorghum bicolor
Contact name (for further information)
Motlhaodi, T.
Contact email (for further information)
Contact institution (for further information)
Department of Plant Breeding, Swedish University of Agricultural Sciences- Sweden
Citation

Motlhaodi, T., Geleta, M., Chite, S., Fatih, M., Ortiz, R. and Bryngelsson, T. (2016). Genetic diversity in sorghum [Sorghum bicolor (L.) Moench] germplasm from Southern Africa as revealed by microsatellite markers and agro-morphological traits. Genet Resour Crop Evol (2017) 64:599–610. 

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SSR marker development, genetic diversity and population structure analysis of Bambara groundnut [Vigna subterranea (L.) Verdc.] landraces

Content Type
Author or Institution as Author
Molosiwa, O.O.
Co-authors

Aliyu, S., Stadler, F., MAyes, K., Massawe, F., Kilian, A., and Mayes, S.

Date of publication
Edition or Version
1.00
Institution
Springer
Language
Gender marker
Youth marker
Description/Abstract

We report here the development of 75 SSR markers for Bambara groundnut through various sequencing approaches and the subsequent utilization of these SSR markers and other marker types (DArT Arrays) for the analysis of genetic diversity, population structure and the selection of pure lines from landraces. To assess the level of genetic diversity in Bambara groundnut landrace collections, 68 and 201 polymorphic SSR and DArT markers, respectively, were assayed against 24 single individual seed from a core collection of landraces. Polymorphic information content (PIC) ranged from 0.08 to 0.89 with an average of 0.42 across all SSR polymorphic markers, with observed (Ho) and expected (He) heterozygosity of 0.01 and 0.5 respectively. For the population structure analysis, 12 SSR markers selected as highly polymorphic from the initial screen were assayed against 123 landrace accessions. The average PIC across the 12 SSR was 0.66 with an average Ho of 0.02 and an inbreeding coefficient (f) of 0.98, suggesting that seed derived from a single plant essentially represents an unselected variety. Based on the low level of Ho and high f observed in the landrace samples, a subset of 35 genotypes derived from the landraces were advanced for field trials in Botswana and scored for 37 phenotypic traits. These 35 individual genotypes were ranked for agronomic performance based on yield component factors and other qualitative traits after field evaluation. Five genotypes with good yield potential and adaptability were recommended as potential varieties for Botswanan agro-ecology.

Keywords
Bambara groundnut, Landraces, Genetic diversity, Population structure, Pre-breeding, Vigna subterranea
Contact name (for further information)
Molosiwa, O.O.
Contact email (for further information)
Contact institution (for further information)
School of Biosciences, The University of Nottingham, Sutton Bonington Campus, Loughborough, Leicestershire- UK
Citation

Molosiwa, O.O., Aliyu, S., Stadler, F., MAyes, K., Massawe, F., Kilian, A., and Mayes, S. (2015). SSR marker development, genetic diversity and population structure analysis of Bambara groundnut [Vigna subterranea (L.) Verdc.] landraces. Genet Resour Crop Evol (2015) 62:1225–1243

Available at: 10.1007/s10722-015-0226-6

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Sorghum in dryland: morphological, physiological, and molecular responses of sorghum under drought stress

Content Type
Author or Institution as Author
Abreha, K.B.
Co-authors

Enyew, M., Carlsson, A.S., Vetukuri, R.R., Feyissa, T., Motlhaodi, T., Ng'uni, D. and Geleta, M.

Date of publication
Edition or Version
1.00
Institution
Springer
Language
Gender marker
Youth marker
Description/Abstract

Sorghum is an economically important and a staple food crop for over half a billion people in developing countries, mostly in arid and semi-arid regions where drought stress is a major limiting factor. Although sorghum is generally considered tolerant, drought stress still signifcantly hampers its productivity and nutritional quality across its major cultivation areas. Hence, understanding both the efects of the stress and plant response is indispensable for improving drought tolerance of the crop. This review aimed at enhancing our understanding and provide more insights on drought tolerance in sorghum as a contribution to the development of climate resilient sorghum cultivars. We summarized fndings on the efects of drought on the growth and development of sorghum including osmotic potential that impedes germination process and embryonic structures, photosynthetic rates, and imbalance in source-sink relations that in turn afect seed flling often manifested in the form of substantial reduction in grain yield and quality. Mechanisms of sorghum response to drought-stress involving morphological, physiological, and molecular alterations are presented. We highlighted the current understanding about the genetic basis of drought tolerance in sorghum, which is important for maximizing utilization of its germplasm for development of improved cultivars. Furthermore, we discussed interactions of drought with other abiotic stresses and biotic factors, which may increase the vulnerability of the crop or enhance its tolerance to drought stress. Based on the research reviewed in this article, it appears possible to develop locally adapted cultivars of sorghum that are drought tolerant and nutrient rich using modern plant breeding techniques.

Keywords
Drought tolerance · Germplasm · Grain quality · Sorghum · Source-sink relations
Contact name (for further information)
Abreha, K.B.
Contact email (for further information)
Contact institution (for further information)
Department of Plant Breeding, Swedish University of Agricultural Sciences, Box 190, 234 22 Lomma, Sweden
Citation

Abreha, K.B., Enyew, M., Carlsson, A.S., Vetukuri, R.R., Feyissa, T., Motlhaodi, T., Ng'uni, D. and Geleta, M. (2021). Sorghum in dryland: morphological, physiological, and molecular responses of sorghum under drought stress. Planta (2022) 255:20. Available at: https://doi.org/10.1007/s00425-021-03799-7

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97000

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3720

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41300

Lead Farmers Supported