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Interactive Effects of Al Ca and Other Cations on Root Elongation of Rice Cultivars Under Low pH

机译:低pH下铝钙和其他阳离子对水稻品种根系伸长的交互作用

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摘要

• Background and Aims As with other crop species, Al tolerance in rice (Oryza sativa) is widely different among cultivars, and the mechanism for tolerance is unknown. The Ca2+-displacement hypothesis, that is, Al displaces Ca2+ from critical sites in the root apoplast, was predicted to be the essential mechanism for causing Al toxicity in rice cultivars. If displacement of Ca is an essential cause of Al toxicity in rice, Al toxicity may show the same trend as toxicities of elements such as Sr and Ba that are effective in displacing Ca.• Methods The interactive effects of Al, Ca, Sr and Ba on root elongation of rice cultivars with different Al tolerances were evaluated in hydroponic culture. Al and Ca accumulation in root tips was also investigated.• Key Results and Conclusions Not only Al but also Sr and Ba applications inhibited root growth of rice cultivars under low Ca conditions. As expected, rice cultivars more tolerant of Sr and Ba were also tolerant of Al (japonica > indica). Although Mg application did not affect Sr or Ba toxicity, Mg alleviated Al toxicity to the same level as Ca application. In addition, Ca application decreased the Al content in root tips without displacement. These results suggest that Ca does not have a specific, irreplaceable role in Al toxicity, unlike Sr and Ba toxicities. Alleviation of Al toxicity with increasing concentrations of Ca in rice cultivars is due to increased ionic strength, not due to decreased Al activity. The difference in Al tolerance between indica and japonica cultivars disappears under high ionic strength conditions, suggesting that different electrochemical characteristics of root-tip cells are related to the significant difference in Al tolerance under low ionic strength conditions.
机译:•背景和目的与其他作物品种一样,水稻(Oryza sativa)的铝耐性在不同品种之间也有很大差异,并且耐性机理尚不清楚。 Ca 2 + -置换假说,即Al从根部质外体关键部位置换Ca 2 + ,被认为是引起Al毒性的重要机制。水稻品种。如果Ca的置换是水稻中Al毒性的必要原因,则Al毒性可能与有效取代Ca的元素Sr和Ba的毒性表现出相同的趋势。•方法Al,Ca,Sr和Ba的相互作用在水培条件下评价了不同耐铝性水稻品种的根伸长。还研究了铝和钙在根尖中的积累。•主要结果和结论在低钙条件下,不仅铝,而且Sr和Ba的施用都抑制了水稻品种的根生长。不出所料,水稻品种对Sr和Ba的耐受性也强于Al(粳稻> d稻)。尽管镁的施用不会影响Sr或Ba的毒性,但Mg可以将Al的毒性降低到与Ca施用相同的水平。另外,Ca的施用降低了根尖中的Al含量而没有移位。这些结果表明,与Sr和Ba毒性不同,Ca在Al毒性中没有特定的,不可替代的作用。随着水稻品种中Ca浓度的增加,铝毒性的减轻是由于离子强度的提高,而不是由于铝活性的降低。在高离子强度条件下in型和粳稻品种的铝耐性差异消失,这表明根尖细胞的不同电化学特性与在低离子强度条件下铝耐性的显着差异有关。

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