Gravity-induced modification of auxin transport and distribution for peg formation in cucumber seedlings: possible roles for CS-AUX1 and CS-PIN1

被引:0
作者
Motoshi Kamada
Seiji Yamasaki
Nobuharu Fujii
Atsushi Higashitani
Hideyuki Takahashi
机构
[1] Tohoku University,Graduate School of Life Sciences
来源
Planta | 2003年 / 218卷
关键词
Auxin; Auxin carrier; Auxin transport; Gravity; Peg;
D O I
暂无
中图分类号
学科分类号
摘要
Cucurbit seedlings potentially develop a peg on each side of the transition zone between the hypocotyl and root. Seedlings grown in a horizontal position suppress the development of the peg on the upper side of the transition zone in response to gravity. It is suggested that this suppression occurs due to a reduction in auxin levels to below the threshold value. We show in this study that the free indole-3-acetic acid (IAA) content is low, while IAA conjugates are significantly more abundant in the upper side of the transition zone of gravistimulated seedlings, compared to the lower side. A transient increase in mRNA of the auxin-inducible gene, CS-IAA1, was observed in the excised transition zone. The result suggests that the transition zone is a source of auxin. Cucumber seedlings treated with auxin-transport inhibitors exhibited agravitropic growth and developed a peg on each side of the transition zone. Auxin-transport inhibitors additionally caused an increase in CS-IAA1 mRNA accumulation at the transition zone, indicating a rise in intracellular auxin concentrations due to a block of auxin efflux. To study the involvement of the auxin transport system in peg formation, we isolated the cDNAs of a putative auxin influx carrier, CS-AUX1, and putative efflux carrier, CS-PIN1, from cucumber (Cucumis sativus L.) plants. Both genes (CS-AUX1 in particular) were auxin-inducible. Accumulation of CS-AUX1 and CS-PIN1 mRNAs was observed in vascular tissue, cortex and epidermis of the transition zone. A reduced level of CS-AUX1 mRNA was observed in the upper side of the gravistimulated transition zone, compared with the lower side. It is therefore possible that a balance in the activities of auxin influx and efflux carriers controls intracellular auxin concentration at the transition zone, which results in lateral placement of a peg in cucumber seedlings.
引用
收藏
页码:15 / 26
页数:11
相关论文
共 31 条
[1]  
Bennett undefined(1996)undefined Science 273 948-undefined
[2]  
Brunn undefined(1992)undefined Plant Physiol 98 101-undefined
[3]  
Casimiro undefined(2001)undefined Plant Cell 13 843-undefined
[4]  
Chomczynski undefined(1995)undefined BioTechiques 19 942-undefined
[5]  
Crocker undefined(1910)undefined Bot Gaz 50 321-undefined
[6]  
Delbarre undefined(1998)undefined Plant Physiol 116 833-undefined
[7]  
Estelle undefined(2001)undefined Nature 423 374-undefined
[8]  
Friml undefined(2002)undefined Cell 108 661-undefined
[9]  
Friml undefined(2002)undefined Nature 415 806-undefined
[10]  
Fujii undefined(1999)undefined Plant Mol Biol 42 731-undefined