Miyasaka S C, Hawes M C
Department of Tropical Plant and Soil Science, University of Hawaii, Hawaii Branch Station, 461 West Lanikaula Street, Hilo, Hawaii 96720, USA.
Plant Physiol. 2001 Apr;125(4):1978-87. doi: 10.1104/pp.125.4.1978.
Root border cells are living cells that surround root apices of most plant species and are involved in production of root exudates. We tested predictions of the hypothesis that they participate in detection and avoidance of aluminum (Al) toxicity by comparing responses of two snapbean (Phaseolus vulgaris) cultivars (cv Dade and cv Romano) known to differ in Al resistance at the whole-root level. Root border cells of these cultivars were killed by excess Al in agarose gels or in simple salt solutions. Percent viability of Al-sensitive cv Romano border cells exposed in situ for 96 h to 200 microM total Al in an agarose gel was significantly less than that of cv Dade border cells; similarly, relative viability of harvested cv Romano border cells was significantly less than that of cv Dade cells after 24 h in 25 microM total Al in a simple salt solution. These results indicate that Al-resistance mechanisms that operate at the level of whole roots also operate at the cellular level in border cells. Al induced a thicker mucilage layer around detached border cells of both cultivars. Cultivar Dade border cells produced a thicker mucilage layer in response to 25 microM Al compared with that of cv Romano cells after 8 h of treatment and this phenomenon preceded that of observed cultivar differences in relative cell viability. Release of an Al-binding mucilage by border cells could play a role in protecting root tips from Al-induced cellular damage.
根边缘细胞是围绕大多数植物物种根尖的活细胞,参与根系分泌物的产生。我们通过比较两个已知在全根水平上对铝(Al)抗性不同的菜豆(Phaseolus vulgaris)品种(达德品种和罗马诺品种)的反应,来检验它们参与检测和避免铝毒性这一假说的预测。在琼脂糖凝胶或简单盐溶液中,过量的铝会杀死这些品种的根边缘细胞。在琼脂糖凝胶中,对铝敏感的罗马诺品种边缘细胞原位暴露于200微摩尔/升总铝96小时后的存活百分比显著低于达德品种边缘细胞;同样,在简单盐溶液中,收获的罗马诺品种边缘细胞在25微摩尔/升总铝中处理24小时后的相对活力显著低于达德品种细胞。这些结果表明,在全根水平起作用的抗铝机制在边缘细胞的细胞水平上也起作用。铝在两个品种分离的边缘细胞周围诱导形成更厚的黏液层。处理8小时后,与罗马诺品种细胞相比,达德品种边缘细胞在25微摩尔/升铝的作用下产生了更厚的黏液层,且这种现象先于观察到的品种间相对细胞活力的差异。边缘细胞释放与铝结合的黏液可能在保护根尖免受铝诱导的细胞损伤中发挥作用。