Wang Tian, Li Juan, Guo Shi-Rong, Gao Hong-Bo, Wang Su-Ping
College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.
Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao. 2005 Dec;31(6):637-42.
The effects of exogenous polyamines on the growth, polyamines contents, the activities of H(+)-ATPase and H(+)-PPase of plasma membrane and tonoplast in cucumber seedling roots under root-zone hypoxia stress were studied under hydroponic culture. The results showed that the growth of cucumber roots was significantly inhibited by hypoxia stress (Table 1). While the growth inhibition in cucumber roots by hypoxia stress could be alleviated by spraying exogenous polyamines. From these results (Table 1 and 2) we can conclude that Spd played an active physiological role in relieving hypoxia stress and Put exerted actively physiological role by enhancing Spd biosynthesis. The results also showed that the endogenous polyamine contents in cucumber roots were increased by hypoxia stress and spraying exogenous polyamines. Exogenous polyamines application obviously promoted the H(+)-ATPase activities of plasma membrane in cucumber roots (Fig.1), but did not significantly affect the H(+)-ATPase and H(+)-PPase activities of tonoplast in cucumber roots (Fig.2,3). The results suggested that exogenous polyamines could enhance hypoxia resistance of cucumber seedlings by increasing H(+)-ATPase activities of plasma membrane in cucumber roots.
采用水培法研究了外源多胺对根际低氧胁迫下黄瓜幼苗根系生长、多胺含量、质膜和液泡膜H(+)-ATPase及H(+)-PPase活性的影响。结果表明,低氧胁迫显著抑制黄瓜根系生长(表1)。而喷施外源多胺可缓解低氧胁迫对黄瓜根系生长的抑制作用。从这些结果(表1和表2)可以得出结论,Spd在缓解低氧胁迫中发挥了积极的生理作用,Put通过增强Spd生物合成发挥了积极的生理作用。结果还表明,低氧胁迫和喷施外源多胺均能增加黄瓜根系内源多胺含量。外源多胺处理显著提高了黄瓜根系质膜H(+)-ATPase活性(图1),但对黄瓜根系液泡膜H(+)-ATPase和H(+)-PPase活性影响不显著(图2、3)。结果表明,外源多胺可通过提高黄瓜根系质膜H(+)-ATPase活性增强黄瓜幼苗的耐低氧能力。