POLLEN-TUBE GROWTH IS COUPLED TO THE EXTRACELLULAR CALCIUM-ION FLUX AND THE INTRACELLULAR CALCIUM GRADIENT - EFFECT OF BAPTA-TYPE BUFFERS AND HYPERTONIC MEDIA

被引:309
作者
PIERSON, ES
MILLER, DD
CALLAHAM, DA
SHIPLEY, AM
RIVERS, BA
CRESTI, M
HEPLER, PK
机构
[1] UNIV MASSACHUSETTS,MORRILL SCI CTR 3,DEPT BIOL,AMHERST,MA 01003
[2] UNIV SIENA,DIPARTIMENTO BIOL AMBIENTALE,I-53100 SIENA,ITALY
[3] MARINE BIOL LAB,NATL VIBRATING PROBE FACIL,WOODS HOLE,MA 02543
[4] UNIV MASSACHUSETTS,MORRILL SCI CTR 3,MOLEC & CELLULAR BIOL PROGRAM,AMHERST,MA 01003
关键词
D O I
10.1105/tpc.6.12.1815
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Lily pollen tubes possess a steep, tip-focused intracellular Ca2+ gradient and a tip-directed extracellular Ca2+ influx. Ratio-metric ion imaging revealed that the gradient extends from above 3.0 mu M at the apex to similar to 0.2 mu M within 20 mu m from the tip, while application of the Ca2+-specific vibrating electrode indicated that the extracellular influx measured between 1.4 and 14 pmol cm(-2) sec(-1). We examined the relationship between these phenomena and their role in tube growth by using different 1,2-bis(o-aminophenoxy)ethane N,N,N',N'-tetraacetic acid (BAPTA)-type buffers and hypertonic media, Injection of active BAPTA-type buffers or application of elevated levels of sucrose reversibly inhibited growth, destroyed tip zonation of organelles, and modified normal patterns of cytoplasmic streaming. Simultaneously, these treatments dissipated both the intracellular tip-focused gradient and the extracellular Ca2+ flux. Of the BAPTA-type buffers, 5,5'-dibromo-BAPTA (dissociation constant [K-d] is 1.5 mu M) and 4,4'-difluoro-BAPTA (K-d of 1.7 mu M) exhibited greater activity than those buffers with either a higher affinity (5,5'-dimethyl-BAPTA, K-d of 0.15 mu M; BAPTA, K-d of 0.21 mu M; 5,5'-difluoro-BAPTA, K-d of 0.25 mu M) or lower affinity (5-methyl, 5'-nitro-BAPTA, K-d of 22 mu M) for Ca2+. Our findings provide evidence that growing pollen tubes have open Ca2+ channels in their tip and that these channels become inactivated in nongrowing tubes. The studies with elevated sucrose support the view that stretching of the apical plasma membrane contributes to the maintenance of the Ca2+ signal.
引用
收藏
页码:1815 / 1828
页数:14
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