Wang Ping, Bi Shuping, Ma Liping, Han Weiying
School of Chemistry and Chemical Engineering, State Key Laboratory of Pollution Control and Resource Reuse of China & Key Laboratory of MOE for Life Science, Nanjing University, Nanjing 210093, China.
J Agric Food Chem. 2006 Dec 27;54(26):10033-9. doi: 10.1021/jf0611769.
Phytotoxicity of aluminum (Al) has become a serious problem in inhibiting plant growth on acid soils. Under Al stress, the changes of rhizosphere pH, root elongation, absorption of Al by wheat roots, organic acids exuded from roots, and some main factors related to Al-tolerant mechanisms have been studied using hydroponics, fluorescence spectrophotometry, and high performance liquid chromatography (HPLC). Two wheat cultivars, Brevor and Atlas66, differing in Al tolerance are chosen in the study. Accordingly, the rhizosphere pH has a positive effect on Al tolerance. Atlas66 (Al-tolerant) has higher capability to maintain high rhizosphere pH than Brevor (Al-sensitive) does. High pH can reduce Al3+ activity and toxicity, and increase the efficiency of exuding organic acids from the roots. More inhibition of root elongation has been found in Brevor because of the exposure of roots to Al3+ solution at low pH. Brevor accumulate more Al in roots than Atlas66 even at higher pH. Al-induced exudation of malic and citric acids has been found in Atlas66 roots, while no Al-induced organic acids have been found in Brevor. These results indicate that the Al-induced secretion of organic acids from Atlas66 roots has a positive correlation with Al tolerance. Comprehensive treatment of Al3+ and H+ indicates that wheat is adversely influenced by excess Al3+, rather than low pH.
铝(Al)的植物毒性已成为酸性土壤上抑制植物生长的一个严重问题。在铝胁迫下,利用水培法、荧光分光光度法和高效液相色谱法(HPLC)研究了根际pH值的变化、根伸长、小麦根系对铝的吸收、根系分泌的有机酸以及一些与耐铝机制相关的主要因素。本研究选用了两个耐铝性不同的小麦品种,即Brevor和Atlas66。相应地,根际pH值对耐铝性有积极影响。Atlas66(耐铝)比Brevor(铝敏感)具有更高的维持高根际pH值的能力。高pH值可以降低Al3+的活性和毒性,并提高根系分泌有机酸的效率。由于根系在低pH值下暴露于Al3+溶液中,在Brevor中发现了更多对根伸长的抑制。即使在较高的pH值下,Brevor在根中积累的铝也比Atlas66多。在Atlas66根系中发现了铝诱导的苹果酸和柠檬酸分泌,而在Brevor中未发现铝诱导的有机酸。这些结果表明,Atlas66根系中铝诱导的有机酸分泌与耐铝性呈正相关。Al3+和H+的综合处理表明,小麦受到过量Al3+的不利影响,而不是低pH值。