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Abubakar, A. M.

Publications and source records attributed to Abubakar, A. M..

2 recordsLinked to original sources

A weighted multi-trait approach for heterotic grouping of maize inbred lines under Striga infestation and optimum environments

Maximum utilization of existing genetic variability in a breeding program depends on the efficient classification of the inbred lines into heterotic groups, particularly under stress conditions. This study applied practical breeding approaches to determine the mode of genetic inheritance for Striga resistance and proposes a weighted heterotic grouping method based on the general combining ability of multiple traits (WHGCAMT) and compares its effectiveness with other existing methods in classifying the inbred lines into heterotic groups in Striga-infested and optimum environments. Using Diallel design IV, 300 crosses were generated from 21 inbred lines and 4 standard testers. The crosses, along with six checks, were evaluated in an 18 x 17 alpha lattice design with two replications at two locations, in both artificial Striga-infested and Striga-free environments. The inbred lines were genotyped using DArTtag SNP markers. Phenotypic and genotypic data were analyzed using R. Analysis of variance revealed significant mean squares for hybrid, general combining ability (GCA), specific combining ability (SCA) and their interactions with environment. Significant positive and negative GCA and SCA effects were detected for grain yield and other measured traits. However, a larger proportion of additive gene action than non-additive gene action was observed for grain yield and most measured traits. The analysis of molecular variance also showed substantial genetic differences within and between clusters. Except for HSCA, the mean grain yield between the inter-group and intra-group hybrids was significant for each method. Pairwise comparison of the inter- and intra-group hybrids of all the methods showed significant differences between the WHGCAMT and all other methods in most cases. WHGCAMT consistently produced higher-yielding inter-group hybrids and lower-yielding intra-group hybrids, achieving breeding efficiency improvements of 55.8%, 4.3%, 15.7%, and 11.4% over the HSCA, HSGCA, HGCAMT and molecular marker methods, respectively, under Striga infestation. Thus, WHGCAMT offers more precise, reliable and biologically meaningful heterotic groups among early-maturing maize inbred lines.

genetics↗

Investigating the antioxidant effects of Aloe vera: Possible role in regulating lipid profile and liver function in high fat and fructose diet (HFFD) fed mice.

Fat rich diets are believed to induce obesity and contributes to the development of diabetes and cardiovascular disease while high fructose diet was reported to increase gut surface area and enhance nutrient uptake resulting in weight gain. The study investigate the role of Aloe vera supplementation on lipid profiles, oxidative stress as well as liver and hear histology in high fat and fructose diet fed mice. Twenty mice were distributed into four groups (n=5). The groups received regular diet, high fat and fructose died (HFFD), HFFD plus 10% Aloe vera (HFFD+AV1) and HFFD plus 20% Aloe vera (HFFD+AV2) respectively for 10 weeks. The cholesterol level of HFFD+AV treated mice were significantly lower compared to HFFD treated mice. The ALT level was significantly increased in HFFD treated mice relative to the control. Aloe vera significantly improve albumin level as well as Catalase and superoxide dismutase activities of HFFD treated mice. The liver tissues of control and HFFD+AV2 treated mice showed normal hepatocytes. The study suggest that Aloe vera supplementation could protect against HFFD induced oxidative stress and hyperlipidemia. These findings might be used for further research on food supplementation for the control of metabolic disorders.

biochemistry↗