Ministry of Education Key Laboratory of Environment Remediation and Ecological Health, College of Environmental and Resource Sciences, Zhejiang University, 866 Yuhangtang Rd, Hangzhou, Zhejiang 310058, China.
Institute for Multidisciplinary Research, University of Belgrade, 1 Studentski trg, Belgrade 11000, Serbia.
Plant Cell Physiol. 2022 Mar 11;63(3):340-352. doi: 10.1093/pcp/pcac001.
Silicon (Si) can alleviate aluminum (Al) toxicity in rice (Oryza sativa L.), but the mechanisms underlying this beneficial effect have not been elucidated, especially under long-term Al stress. Here, the effects of Al and Si on the suberization and development of rice roots were investigated. The results show that, as the Al exposure time increased, the roots accumulated more Al, and Al enhanced the deposition of suberin in roots, both of which ultimately inhibited root growth and nutrient absorption. However, Si restricted the apoplastic and symplastic pathways of Al in roots by inhibiting the uptake and transport of Al, thereby reducing the accumulation of Al in roots. Meanwhile, the Si-induced drop in Al concentration reduced the suberization of roots caused by Al through down-regulating the expression of genes related to suberin synthesis and then promoted the development of roots (such as longer and more adventitious roots and lateral roots). Moreover, Si also increased nutrient uptake by Al-stressed roots and thence promoted the growth of rice. Overall, these results indicate that Si reduced Al-induced suberization of roots by inhibiting the uptake and transport of Al in roots, thereby amending root growth and ultimately alleviating Al stress in rice. Our study further clarified the toxicity mechanism of Al in rice and the role of Si in reducing Al content and restoring root development under Al stress.
硅(Si)可以减轻水稻(Oryza sativa L.)中的铝(Al)毒性,但这种有益效果的机制尚不清楚,特别是在长期 Al 胁迫下。在这里,研究了 Al 和 Si 对水稻根的木质化和发育的影响。结果表明,随着 Al 暴露时间的增加,根积累了更多的 Al,Al 增强了根中木质素的沉积,这两者最终抑制了根的生长和养分吸收。然而,Si 通过抑制 Al 的摄取和转运来限制根中 Al 的质外体和共质体途径,从而减少根中 Al 的积累。同时,Si 诱导的 Al 浓度下降通过下调与木质素合成相关的基因的表达,减轻了 Al 引起的根木质化,从而促进了根的发育(如更长、更多的不定根和侧根)。此外,Si 还通过增加 Al 胁迫根的养分吸收,从而促进了水稻的生长。总的来说,这些结果表明,Si 通过抑制根中 Al 的摄取和转运来减少 Al 诱导的根木质化,从而改善根的生长,最终缓解水稻的 Al 胁迫。我们的研究进一步阐明了 Al 在水稻中的毒性机制以及 Si 在降低 Al 含量和恢复 Al 胁迫下根发育中的作用。