The arbuscular mycorrhizal (AM) symbiosis has been shown to modulate the same physiological processes as the phytohormone abscisic acid (ABA) and to improve plant tolerance to water deficit. The aim of the present research was to evaluate the combined influence of AM symbiosis and exogenous ABA application on plant root hydraulic properties and on plasma-membrane intrinsic proteins (PIP) aquaporin gene expression and protein accumulation after both a drought and a recovery period. Results obtained showed that the application of exogenous ABA enhanced osmotic root hydraulic conductivity (L) in all plants, regardless of water conditions, and that AM plants showed lower L values than nonAM plants, a difference that was especially accentuated when plants were supplied with exogenous ABA. This effect was clearly correlated with the accumulation pattern of the different PIPs analyzed, since most showed reduced expression and protein levels in AM plants fed with ABA as compared to their nonAM counterparts. The possible involvement of plant PIP aquaporins in the differential regulation of L by ABA in AM and nonAM plants is further discussed.

译文

丛枝菌根 (AM) 共生已被证明可以调节与植物激素脱落酸 (ABA) 相同的生理过程,并提高植物对缺水的耐受性。本研究的目的是评估干旱和恢复期后AM共生和外源ABA施用对植物根系水力特性以及质膜内在蛋白 (PIP) 水通道蛋白基因表达和蛋白质积累的综合影响。获得的结果表明,无论水分条件如何,外源ABA的施用均提高了所有植物的渗透根水力传导率 (L),并且AM植物的L值低于nonAM植物,当向植物供应外源ABA时,这种差异尤其突出。这种效果与所分析的不同pip的积累模式明显相关,因为与nonAM对应物相比,大多数在饲喂ABA的AM植物中显示出降低的表达和蛋白质水平。进一步讨论了植物PIP水通道蛋白可能参与AM和nonAM植物中ABA对L的差异调节。

+1
+2
100研值 100研值 ¥99课程
检索文献一次
下载文献一次

去下载>

成功解锁2个技能,为你点赞

《SCI写作十大必备语法》
解决你的SCI语法难题!

技能熟练度+1

视频课《玩转文献检索》
让你成为检索达人!

恭喜完成新手挑战

手机微信扫一扫,添加好友领取

免费领《Endnote文献管理工具+教程》

微信扫码, 免费领取

手机登录

获取验证码
登录