Garau Giovanni, Palma Amedeo, Lauro Gian Paolo, Mele Elena, Senette Caterina, Manunza Bruno, Deiana Salvatore
Dipartimento di Agraria, University of Sassari, Sassari, Italy.
Istituto di Scienze delle Produzioni Alimentari, CNR, Sassari, Italy.
PLoS One. 2015 Oct 20;10(10):e0141041. doi: 10.1371/journal.pone.0141041. eCollection 2015.
In the root apoplasm, V(V) and V(IV) toxicity can be alleviated through redox and complexation reactions involving phenolic substances and the polyuronic components. In such context we report the role of polygalacturonic acid (PGA) on the reducing activity of caffeic acid (CAF) towards V(V). The redox reaction was particularly effective at pH 2.8 leading to the formation of oxidation products with redox activity towards V(V). An o-quinone was identified as the first product of the reaction which is further involved in the formation of CAF dimers. At pH ≥ 3.6 the redox activity decreased and a yield in V(IV) equal to 38, 31, 21 and 14% was found at pH 3.6, 4.0. 5.0 and 6.0 respectively compared with that obtained at pH 2.8. The redox reaction was faster in the presence of PGA and a higher yield of V(IV) was found in the 4.0-6.0 pH range with respect to the CAF-V(V) binary system. The higher efficiency of the redox reaction in the presence of PGA was related with the ability of PGA to bind V(IV). The biological significance of the redox reaction between CAF and V(V), as well as the role of PGA in such reaction, was established "in vivo" using triticale plants. Results showed that PGA reduced significantly the phytotoxic effects of the V(V)-CAF system.
在根际质外体中,V(V)和V(IV)的毒性可通过涉及酚类物质和聚糖醛酸成分的氧化还原及络合反应得到缓解。在此背景下,我们报道了聚半乳糖醛酸(PGA)对咖啡酸(CAF)还原V(V)活性的作用。该氧化还原反应在pH 2.8时尤为有效,会生成对V(V)具有氧化还原活性的氧化产物。一种邻醌被确定为该反应的首个产物,它进一步参与了CAF二聚体的形成。在pH≥3.6时,氧化还原活性降低,与在pH 2.8时相比,在pH 3.6、4.0、5.0和6.0时分别发现V(IV)的产率为38%、31%、21%和14%。在PGA存在的情况下,氧化还原反应更快,并且在4.0 - 6.0的pH范围内相对于CAF - V(V)二元体系发现了更高的V(IV)产率。PGA存在时氧化还原反应效率更高与PGA结合V(IV)的能力有关。利用小黑麦植株在“体内”确定了CAF与V(V)之间氧化还原反应的生物学意义以及PGA在此反应中的作用。结果表明,PGA显著降低了V(V) - CAF体系的植物毒性作用。