TY - JOUR
T1 - Response of selected sorghum (Sorghum bicolor L. Moench) germplasm to aluminium stress
AU - Too, E. J.
AU - Were, Beatrice Ang'iyo
AU - Onkware, Augustino O.
AU - Ringo, Justin Hanson
AU - Kisinyo, Peter
AU - Ouma, Evans
AU - Carlsson, Anders
AU - Dida, Mulatu Geleta
AU - Gudu, Samuel
PY - 2014
Y1 - 2014
N2 - Sorghum ( Sorghum bicolor L. (Moench ) is an important food security crop in sub - Saharan Africa. Its production on acid soils is constrained by aluminium (Al) stress, which primarily interferes with root growth. Sorghum cultivation is widespread in Kenya, but there is limited knowledge on res ponse of the Kenyan sorghum cultivars to aluminium stress. The aim of the study was to identify and morphologically characterise aluminium tolerant sorghum accessions. The root growth of three hundred and eighty nine sorghum accessions from local or intern ational sources was assessed under 148 μM Al in soaked paper towels, and 99 of these were selected and further tested in solution. Ten selected accessions were grown out in the field, on un - limed (0 t/ha) or limed (4 t/ha) acid (pH 4.3) soils with high (27 %) Al saturation, and their growth and grain yield was assessed. Although the Al stress significantly (P ≤ 0.05) reduced root growth in most of the accessions, there were ten accessions; MCSRP5, MCSR 124, MCSR106, ICSR110 , Real60, IS41764, MCSR15, IESV9304 2 - SW, MCSRM45 and MCSRM79f, that retained relatively high root growth and were classified as tolerant. The stress significantly (P ≤ 0.05) reduced seedling root and shoot dry matter in the Al - sensitive accessions. Plant growth and yield on un - limed soil wa s very poor, and liming increased grain yield by an average 35%. Most of Kenya sorghums were sensitive to Al stress, but a few tolerant accessions were identified that could be used for further breeding for improved grain yield in high aluminium soils
AB - Sorghum ( Sorghum bicolor L. (Moench ) is an important food security crop in sub - Saharan Africa. Its production on acid soils is constrained by aluminium (Al) stress, which primarily interferes with root growth. Sorghum cultivation is widespread in Kenya, but there is limited knowledge on res ponse of the Kenyan sorghum cultivars to aluminium stress. The aim of the study was to identify and morphologically characterise aluminium tolerant sorghum accessions. The root growth of three hundred and eighty nine sorghum accessions from local or intern ational sources was assessed under 148 μM Al in soaked paper towels, and 99 of these were selected and further tested in solution. Ten selected accessions were grown out in the field, on un - limed (0 t/ha) or limed (4 t/ha) acid (pH 4.3) soils with high (27 %) Al saturation, and their growth and grain yield was assessed. Although the Al stress significantly (P ≤ 0.05) reduced root growth in most of the accessions, there were ten accessions; MCSRP5, MCSR 124, MCSR106, ICSR110 , Real60, IS41764, MCSR15, IESV9304 2 - SW, MCSRM45 and MCSRM79f, that retained relatively high root growth and were classified as tolerant. The stress significantly (P ≤ 0.05) reduced seedling root and shoot dry matter in the Al - sensitive accessions. Plant growth and yield on un - limed soil wa s very poor, and liming increased grain yield by an average 35%. Most of Kenya sorghums were sensitive to Al stress, but a few tolerant accessions were identified that could be used for further breeding for improved grain yield in high aluminium soils
KW - Aluminium tolerance
KW - grain yield
KW - liming
KW - root growth sorghum
KW - Aluminium tolerance
KW - grain yield
KW - liming
KW - root growth sorghum
UR - https://res.slu.se/id/publ/66708
U2 - 10.5897/AJAR2013.7795
DO - 10.5897/AJAR2013.7795
M3 - Journal article
SN - 1991-637X
VL - 9
SP - 1651
EP - 1662
JO - African Journal of Agricultural Research
JF - African Journal of Agricultural Research
IS - 21
M1 - 85DC12544802
ER -