ABSCISIC-ACID ACCUMULATES AT POSITIVE TURGOR POTENTIAL IN EXCISED SOYBEAN SEEDLING GROWING ZONES

被引:25
作者
CREELMAN, RA
MULLET, JE
机构
[1] Dept. of Biochemistry and Biophysics, Texas A and M University, College Station
关键词
D O I
10.1104/pp.95.4.1209
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Abscisic acid (ABA) accumulated in soybean (Glycine max [L.] Merr. cv Williams) hypocotyl elongating regions when seedlings were transferred to low water potential vermiculite (PSI = -0.3 megapascals) even though positive turgor is retained in this tissue. Accumulation of ABA in growing zones could occur from de novo biosynthesis within this tissue or transport from adjacent nongrowing zones. Both growing and nongrowing hypocotyl and root tissues accumulated significant levels of ABA when excised and dehydrated to reduce turgor. Surprisingly, excised growing zones (which experienced no water loss) also accumulated ABA when incubated in darkness for 4 hours at 100% relative humidity and 29-degrees-C. Induction of ABA accumulation in the excised elongating region of the hypocotyl was not caused by disruption of root pressure or wounding. While excision of hypocotyl elongating regions induced ABA accumulation, no change in either extensin or p33 mRNA levels was observed. Accumulation of extensin or p33 mRNA required more severe wounding. This suggests that ABA is not involved in the response of these genes in wounded tissue and that wound signals are not causing ABA accumulation in excised tissue. Accumulation of ABA in excised elongating regions was correlated with growth inhibition and a decline in turgor to the yield threshold (PSI;p = 0.37 megapascals; R Matyssek, S Maruyama, JS Boyer [1988] Plant Physiol 86: 1163-1167). Inhibiting hypocotyl growth by transferring seedlings to lower temperatures or light did not cause ABA accumulation. We conclude that induction of ABA accumulation in growing zones is more sensitive to changes in turgor than the induction which occurs in mature tissues.
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收藏
页码:1209 / 1213
页数:5
相关论文
共 23 条
[1]   ABSCISIC-ACID ACCUMULATION IN COTTON LEAVES IN RESPONSE TO DEHYDRATION AT HIGH-PRESSURE [J].
ACKERSON, RC ;
RADIN, JW .
PLANT PHYSIOLOGY, 1983, 71 (02) :432-433
[2]   WATER DEFICIT-INDUCED CHANGES IN ABSCISIC-ACID, GROWTH, POLYSOMES, AND TRANSLATABLE RNA IN SOYBEAN HYPOCOTYLS [J].
BENSEN, RJ ;
BOYER, JS ;
MULLET, JE .
PLANT PHYSIOLOGY, 1988, 88 (02) :289-294
[3]   CONTROL OF THE RATE OF CELL ENLARGEMENT - EXCISION, WALL RELAXATION, AND GROWTH-INDUCED WATER POTENTIALS [J].
BOYER, JS ;
CAVALIERI, AJ ;
SCHULZE, ED .
PLANTA, 1985, 163 (04) :527-543
[4]   AN EXTRACELLULAR-MATRIX PROTEIN IN PLANTS - CHARACTERIZATION OF A GENOMIC CLONE FOR CARROT EXTENSIN [J].
CHEN, J ;
VARNER, JE .
EMBO JOURNAL, 1985, 4 (09) :2145-2151
[5]   ABSCISIC-ACID ACCUMULATION IN SPINACH LEAF SLICES IN THE PRESENCE OF PENETRATING AND NONPENETRATING SOLUTES [J].
CREELMAN, RA ;
ZEEVAART, JAD .
PLANT PHYSIOLOGY, 1985, 77 (01) :25-28
[6]   WATER DEFICIT AND ABSCISIC-ACID CAUSE DIFFERENTIAL INHIBITION OF SHOOT VERSUS ROOT-GROWTH IN SOYBEAN SEEDLINGS - ANALYSIS OF GROWTH, SUGAR ACCUMULATION, AND GENE-EXPRESSION [J].
CREELMAN, RA ;
MASON, HS ;
BENSEN, RJ ;
BOYER, JS ;
MULLET, JE .
PLANT PHYSIOLOGY, 1990, 92 (01) :205-214
[7]   CHARACTERIZATION OF 2 SOYBEAN REPETITIVE PROLINE-RICH PROTEINS AND A COGNATE CDNA FROM GERMINATED AXES [J].
DATTA, K ;
SCHMIDT, A ;
MARCUS, A .
PLANT CELL, 1989, 1 (09) :945-952
[8]   A GENE INDUCED BY THE PLANT HORMONE ABSCISIC-ACID IN RESPONSE TO WATER-STRESS ENCODES A GLYCINE-RICH PROTEIN [J].
GOMEZ, J ;
SANCHEZMARTINEZ, D ;
STIEFEL, V ;
RIGAU, J ;
PUIGDOMENECH, P ;
PAGES, M .
NATURE, 1988, 334 (6179) :262-264
[9]   DEVELOPMENTALLY REGULATED EXPRESSION OF SOYBEAN PROLINE-RICH CELL-WALL PROTEIN GENES [J].
HONG, JC ;
NAGAO, RT ;
KEY, JL .
PLANT CELL, 1989, 1 (09) :937-943
[10]   EARLY STOMATAL CLOSURE IN WATERLOGGED PEA-PLANTS IS MEDIATED BY ABSCISIC-ACID IN THE ABSENCE OF FOLIAR WATER DEFICITS [J].
JACKSON, MB ;
HALL, KC .
PLANT CELL AND ENVIRONMENT, 1987, 10 (02) :121-130