Microelement Research Center, College of Resources and Environment, Huazhong Agricultural University, Wuhan, Hubei 430070, PR China.
Department of Agronomy, University of Agriculture Faisalabad, 38040 Punjab, Pakistan.
Ecotoxicol Environ Saf. 2018 May 30;153:107-115. doi: 10.1016/j.ecoenv.2018.02.002. Epub 2018 Feb 6.
Aluminum (Al) toxicity is a major restriction for crops production on acidic soils. The primary symptom of aluminum toxicity is visible in the roots of plants. Recently, several studies reported the alleviation of Al toxicity by the application of Boron (B), however, the information how B alleviates Al toxicity is not well understood. Thus, we investigated the ameliorative response of B on Al-induced growth inhibition, oxidative damages, and variations in the cell wall components in trifoliate orange roots. The results indicated that plants under Al stress experienced a substantial decrement in root length and overall plant growth. The supply of B improved the root elongation by eliminating oxidative stress, membrane peroxidation, membrane leakage, and cell death produced under Al toxicity. Moreover, accumulation of Al on the cell wall and alteration in the cell wall components might be one of the causes resulting in the quick inhibition of root elongation under B-starvation circumstances by providing susceptible negative charges on pectin matrix for binding of Al. The results provide a useful understanding of the insight into mechanisms of B-induced mitigation of Al toxicity especially in the trifoliate orange that might be helpful in the production of crops on acidic soils.
铝(Al)毒性是酸性土壤中作物生产的主要限制因素。铝毒性的主要症状在植物的根部可见。最近,有几项研究报告称硼(B)的应用可以缓解铝毒性,然而,B 缓解铝毒性的机制尚不清楚。因此,我们研究了 B 对铝诱导的生长抑制、氧化损伤和细胞壁成分变化的缓解作用在三裂叶桔根中的表现。结果表明,在铝胁迫下,植物的根长和整体生长明显减少。B 的供应通过消除铝毒性下产生的氧化应激、膜过氧化、膜渗漏和细胞死亡,促进了根的伸长。此外,细胞壁上 Al 的积累和细胞壁成分的改变可能是导致在 B 饥饿情况下根伸长迅速受到抑制的原因之一,因为它在果胶基质上提供了易受负电荷的位点,从而与 Al 结合。这些结果为理解 B 缓解铝毒性的机制提供了有用的认识,特别是在三裂叶桔中,这可能有助于在酸性土壤中种植作物。