CORRELATION OF XYLEM SAP CYTOKININ LEVELS WITH MONOCARPIC SENESCENCE IN SOYBEAN

被引:123
作者
NOODEN, LD [1 ]
SINGH, S [1 ]
LETHAM, DS [1 ]
机构
[1] AUSTRALIAN NATL UNIV,RES SCH BIOL SCI,CANBERRA,ACT 2601,AUSTRALIA
关键词
D O I
10.1104/pp.93.1.33
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Cytokinins (CKs) coming from the roots via the xylem are known to delay leaf senescence, and their decline may be important in the senescence of soybean (Glycine max) plants during pod development (monocarpic senescence). Therefore, using radioimmunoassay of highly purified CKs, we quantified the zeatin (Z), zeatin riboside (ZR), the dihydro derivatives (DZ, DZR), the O-glucosides, and DZ nucleotide in xylem sap collected from root stocks under pressure at various stages of pod development. Z, ZR, DZ, and DZR dropped sharply during early pod development to levels below those expected to retard senescence. Pod removal at full extension, which delayed leaf senescence, caused an increase in xylem sap CKs (particularly ZR and DZR), while depodding at late podfill, which did not delay senescence, likewise did not increase the CK levels greatly. The levels of the O-glucosides and the DZ nucleotide were relatively low, and they showed less change with senescence or depodding. The differences in the responses of individual CKs to senescence and depodding suggest differences in their metabolism. Judging from their activity, concentrations and response to depodding, DZR and ZR may be the most important senescence retardants in soybean xylem sap. These data also suggest that the pods can depress CK production by the roots at an early stage and this decrease in CK production is required for monocarpic senescence in soybean.
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页码:33 / 39
页数:7
相关论文
共 33 条
[1]  
[Anonymous], 1988, SENESCENCE AGING PLA, DOI DOI 10.1016/B978-0-12-520920-5.50015-8
[2]   QUANTITATION OF CYTOKININS IN BIOLOGICAL SAMPLES USING ANTIBODIES AGAINST ZEATIN RIBOSIDE [J].
BADENOCHJONES, J ;
LETHAM, DS ;
PARKER, CW ;
ROLFE, BG .
PLANT PHYSIOLOGY, 1984, 75 (04) :1117-1125
[3]   USE OF ISOPENTENYLADENOSINE AND DIHYDROZEATIN RIBOSIDE ANTIBODIES FOR THE QUANTIFICATION OF CYTOKININS [J].
BADENOCHJONES, J ;
PARKER, CW ;
LETHAM, DS .
JOURNAL OF PLANT GROWTH REGULATION, 1987, 6 (03) :159-182
[4]  
BEEVER J E, 1974, Royal Society of New Zealand Bulletin, V12, P681
[5]   PROBLEM OF HALTING ENZYME ACTION WHEN EXTRACTING PLANT TISSUES [J].
BIELESKI, RL .
ANALYTICAL BIOCHEMISTRY, 1964, 9 (04) :431-&
[6]   THE PHYSIOLOGICAL-BASIS FOR CYTOKININ INDUCED INCREASES IN POD SET IN IX93-100 SOYBEANS [J].
CARLSON, DR ;
DYER, DJ ;
COTTERMAN, CD ;
DURLEY, RC .
PLANT PHYSIOLOGY, 1987, 84 (02) :233-239
[7]   CYTOKININ ACTIVITY IN LUPINUS-ALBUS .2. DISTRIBUTION IN FRUITING PLANTS [J].
DAVEY, JE ;
VANSTADEN, J .
PHYSIOLOGIA PLANTARUM, 1978, 43 (02) :82-86
[8]   CYTOKININ ACTIVITY IN LUPINUS-ALBUS .1. DISTRIBUTION IN VEGETATIVE AND FLOWERING PLANTS [J].
DAVEY, JE ;
VANSTADEN, J .
PHYSIOLOGIA PLANTARUM, 1978, 43 (02) :77-81
[9]   CYTOKININ TRANSLOCATION - CHANGES IN ZEATIN AND ZEATIN-RIBOSIDE LEVELS IN ROOT EXUDATE OF TOMATO PLANTS DURING THEIR DEVELOPMENT [J].
DAVEY, JE ;
VANSTADEN, J .
PLANTA, 1976, 130 (01) :69-72
[10]   STRUCTURE AND SYNTHESIS OF CYTOKININ METABOLITES .4. COMPLEX OF O-GLUCOSYLZEATIN DERIVATIVES FORMED IN POPULUS-SPECIES [J].
DUKE, CC ;
LETHAM, DS ;
PARKER, CW ;
MACLEOD, JK ;
SUMMONS, RE .
PHYTOCHEMISTRY, 1979, 18 (05) :819-824