Cloning and sequence for an intracellular acid invertase from etiolated hypocotyls of mung bean and expression of the gene during growth of seedlings
Arai M, Mori H, Imaseki H (1992) Cloning and sequence for an intracellular acid invertase from etiolated hypocotyls of mung bean and expression of the gene during growth of seedlings. Plant Cell Physiol. 33: 245-252.
The different pH optima and substrate specificities of extracellular and vacuolar invertases from plants are determined by a single amino-acid substitution
Goetz M, Roitsch T (1999) The different pH optima and substrate specificities of extracellular and vacuolar invertases from plants are determined by a single amino-acid substitution. Plant J. 20: 707-711.
cDNA clonging and tissue specific expression of a gene for sucrose transporter from rice (Oryza sativa L.)
Hirose T, Imaizumi N, Scofield GN, Furbank RT, Ohsugi R (1997) cDNA clonging and tissue specific expression of a gene for sucrose transporter from rice (Oryza sativa L.). Plant Cell Physiol. 38: 1389-1396.
Purification and characterization of an alkaline invertase from shoots of etiolated rice seedlings
Lin CL, Lin HC, Wang AY, Sung HY (1999) Purification and characterization of an alkaline invertase from shoots of etiolated rice seedlings. New Phytol. 142: 427-434.
Partial purification and characterization of soluble acid invertases from rice (Oryza sativa) leaves
Lin SS, Sung HY (1993) Partial purification and characterization of soluble acid invertases from rice (Oryza sativa) leaves. Biochem. Mol. Biol. Intl. 31: 945-953.
The plant invertase: Physiology, biochemistry and molecular biology
Callow JA, ed. New York: Academic Press
Tymowska-Lalanne Z, Kreis M (1998) The plant invertase: physiology, biochemistry and molecular biology. In: Callow JA, ed. Advances in Botanical Research, Vol. 28. New York: Academic Press, pp. 71-117.