Please use this identifier to cite or link to this item: https://repository.seku.ac.ke/handle/123456789/1131
Title: Correlating aluminium toxicity, heterosis and epigenetic mechanisms in maize yield improvement in acid soils
Authors: Kimatu, Josphert N.
Keywords: Maize
heterosis
tolerance
epigenetics
aluminium ion toxicity
Issue Date: Mar-2015
Publisher: Academic Journals
Citation: Biotechnology and Molecular Biology Reviews, Vol.10(2), pp. 12-18 , March 2015
Abstract: Overuse of inorganic fertilizers have contributed to an increase in soil acidity in global arable land and consequently caused an increase in Aluminium ion (Al3+) toxicity and a reduction of crop yield of between 30-50% in developing countries. Studies show that Al3+ toxicity inhibits cell division in the root tip meristem in sensitive plants even at micromolar concentrations. Applications of lime, manure and compost are some of the most common methods used to overcome the impact of Al3+ toxicity. Other studies have identified natural variation for the multigenic Al3+ tolerance trait in many crop species and can be utilized in crop improvement. This review highlights a search for a clearer understanding of the molecular basis for Aluminium ion toxicity by correlating heterosis and epigenetic mechanisms like DNA Cytosine methylation in inbred and reciprocal maize hybrids crosses. Several recent studies indicated that the global differential gene expression regulated by epigenetic mechanisms between hybrids and parental inbred lines can potentially contribute to heterosis in maize.
Description: DOI: 10.5897/BMBR2014-0234
URI: http://www.academicjournals.org/article/article1425998499_Kimatu.pdf
http://repository.seku.ac.ke/handle/123456789/1131
ISSN: 1538-2273
Appears in Collections:School of Science and Computing (JA)



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