The chemical structure of amylose and amylopectin fractions of starch from tobacco leaves during development and diurnally-nocturnally
Starches, isolated from rapidly expanding tobacco leaves four times during the day and night and once from fully expanded leaves, were fractionated with concanavalin A. From an examination of the amounts and properties of amylose, the diurnal decrease in iodine absorption of the starches on illumina...
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Published in | Carbohydrate research Vol. 282; no. 2; pp. 247 - 262 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
Netherlands
Elsevier Ltd
18.03.1996
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Abstract | Starches, isolated from rapidly expanding tobacco leaves four times during the day and night and once from fully expanded leaves, were fractionated with concanavalin A. From an examination of the amounts and properties of amylose, the diurnal decrease in iodine absorption of the starches on illumination appeared to be due to an increase in its branched character, and possibly the presence of unbranched polymer of low dp, combined with a decrease in the proportion of amylose fraction. The increase in apparent amylose content with age was due to an increase in the proportion of amylose. The amylose fractions at different times had only small differences in average mol size in solution and relative mol wt (
M
r near 4 × 10
5) which were lower than those of storage organs. The average mol size in solution and relative mol wt of the amylopectins decreased during illumination, increased in darkness, and were lower (
M
r 2–2.7 × 10
6) at all times than those from storage organs. Debranching followed by size-exclusion chromatography [on Fractogel TSK 50(S)] gave similar proportions of long, medium, and short chains for all amylopectin samples, and these proportions differed from those for debranched amylopectin from
n-maize seed starch. On debranching and chromatography of the amylopectin β-limit dextrins (which gives an estimate of the proportions of core chains) differences persisted. Structural characteristics of amylopectin from tobacco leaf starch were similar to those of normal genotypes from storage organs. The proportion of glucosyl units in core chains, the external-to-core chain ratio, and indices of compactness were calculated for a number of (1 → 4)(1 → 6) α-glucans. A plot of the index of compactness for glycogens and amylopectins showed that the decrease in compactness and the increase in total average chain length that occurs from glycogen to normal and then to amylose extender amylopectins involves a proportionate increase in average internal, external, and core chain lengths and not a selective increase in one type of chain. |
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AbstractList | Starches, isolated from rapidly expanding tobacco leaves four times during the day and night and once from fully expanded leaves, were fractionated with concanavalin A. From an examination of the amounts and properties of amylose, the diurnal decrease in iodine absorption of the starches on illumination appeared to be due to an increase in its branched character, and possibly the presence of unbranched polymer of low dp, combined with a decrease in the proportion of amylose fraction. The increase in apparent amylose content with age was due to an increase in the proportion of amylose. The amylose fractions at different times had only small differences in average mol size in solution and relative mol wt (M(r) near 4 x 10(5)) which were lower than those of storage organs. The average mol size in solution and relative mol wt of the amylopectins decreased during illumination, increased in darkness, and were lower (M(r) 2-2.7 x 10(6)) at all times than those from storage organs. Debranching followed by size-exclusion chromatography [on Fractogel TSK 50(S)] gave similar proportions of long, medium, and short chains for all amylopectin samples, and these proportions differed from those for debranched amylopectin from n-maize seed starch. On debranching and chromatography of the amylopectin beta-limit dextrins (which gives an estimate of the proportions of core chains) differences persisted. Structural characteristics of amylopectin from tobacco leaf starch were similar to those of normal genotypes from storage organs. The proportion of glucosyl units in core chains, the external-to-core chain ratio, and indices of compactness were calculated for a number of (1-->4)(1-->6) alpha-glucans. A plot of the index of compactness for glycogens and amylopectins showed that the decrease in compactness and the increase in total average chain length that occurs from glycogen to normal and then to amylose extender amylopectins involves a proportionate increase in average internal, external, and core chain lengths and not a selective increase in one type of chain. Starches, isolated from rapidly expanding tobacco leaves four times during the day and night and once from fully expanded leaves, were fractionated with concanavalin A. From an examination of the amounts and properties of amylose, the diurnal decrease in iodine absorption of the starches on illumination appeared to be due to an increase in its branched character, and possibly the presence of unbranched polymer of low dp, combined with a decrease in the proportion of amylose fraction. The increase in apparent amylose content with age was due to an increase in the proportion of amylose. The amylose fractions at different times had only small differences in average mol size in solution and relative mol wt ( M r near 4 × 10 5) which were lower than those of storage organs. The average mol size in solution and relative mol wt of the amylopectins decreased during illumination, increased in darkness, and were lower ( M r 2–2.7 × 10 6) at all times than those from storage organs. Debranching followed by size-exclusion chromatography [on Fractogel TSK 50(S)] gave similar proportions of long, medium, and short chains for all amylopectin samples, and these proportions differed from those for debranched amylopectin from n-maize seed starch. On debranching and chromatography of the amylopectin β-limit dextrins (which gives an estimate of the proportions of core chains) differences persisted. Structural characteristics of amylopectin from tobacco leaf starch were similar to those of normal genotypes from storage organs. The proportion of glucosyl units in core chains, the external-to-core chain ratio, and indices of compactness were calculated for a number of (1 → 4)(1 → 6) α-glucans. A plot of the index of compactness for glycogens and amylopectins showed that the decrease in compactness and the increase in total average chain length that occurs from glycogen to normal and then to amylose extender amylopectins involves a proportionate increase in average internal, external, and core chain lengths and not a selective increase in one type of chain. |
Author | Matheson, Norman K. |
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CitedBy_id | crossref_primary_10_3390_agronomy7030056 crossref_primary_10_1016_j_jas_2004_05_006 crossref_primary_10_5458_jag_jag_JAG_2012_012 crossref_primary_10_1177_1934578X1701200606 crossref_primary_10_1002_star_201100163 crossref_primary_10_1016_S0144_8617_03_00161_9 crossref_primary_10_1016_S0144_8617_99_00054_5 crossref_primary_10_1016_j_carbpol_2007_10_006 crossref_primary_10_5458_jag_52_45 crossref_primary_10_1042_BJ20061393 crossref_primary_10_1111_j_1469_8137_2004_01101_x crossref_primary_10_1016_S1360_1385_98_01342_9 crossref_primary_10_1016_S0141_8130_98_00040_3 crossref_primary_10_5458_jag_51_81 crossref_primary_10_1007_s11703_009_0076_0 crossref_primary_10_1016_j_carbpol_2014_09_092 crossref_primary_10_1078_0176_1617_00685 crossref_primary_10_1104_pp_121_2_399 crossref_primary_10_1111_nph_16858 |
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Snippet | Starches, isolated from rapidly expanding tobacco leaves four times during the day and night and once from fully expanded leaves, were fractionated with... |
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SubjectTerms | AMILOPECTINA AMILOSA AMYLOPECTIN Amylopectin - chemistry AMYLOPECTINE Amylopectins AMYLOSE Amylose - chemistry Amylose - metabolism Borohydrides - metabolism BRANCHING Cell Fractionation CHEMICAL COMPOSITION Chromatography, Gel Circadian Rhythm COMPOSICION QUIMICA COMPOSITION CHIMIQUE Concanavalin A - metabolism Dextrins - chemistry FEUILLE FOTOPERIODISMO HOJAS LEAVES Nicotiana - chemistry NICOTIANA TABACUM Periodic Acid - metabolism PHOTOPERIODICITE PHOTOPERIODICITY Plant Lectins Plants, Toxic RAMIFICACION RAMIFICATION Starch Starch - chemistry Tobacco leaves |
Title | The chemical structure of amylose and amylopectin fractions of starch from tobacco leaves during development and diurnally-nocturnally |
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