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Sorption of Aluminum to Plasma Membrane Vesicles Isolated from Roots of Scout 66 and Atlas 66 Cultivars of Wheat.

机译:铝对从童子军66和阿特拉斯66小麦根系分离的质膜囊泡的吸附。

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摘要

To further elucidate the mechanisms of differential genotypic tolerance to Al, plasma membrane (PM) vesicles were isolated from whole roots, root tips, and tipless roots of Al3+-sensitive and Al3+-tolerant cultivars (cv) of wheat (Triticum aestivum L. cv Scout 66 and cv Atlas 66, respectively). Vesicles from cv Scout root tips sorbed more Al than vesicles prepared from any other source. The intrinsic surface-charge density of vesicles isolated from cv Scout was 26% more negative than vesicles from cv Atlas (-37.2 versus -29.5 millicoulombs m-2). Growth experiments indicated that cv Scout is slightly more sensitive to La3+ than is cv Atlas, that the cultivars are equally sensitive to H+, and that cv Atlas is slightly more sensitive to SeO42-. The difference in sensitivity to Al3+ was very large; for a 50% inhibition, a 16-fold greater activity of Al3+ was required for cv Atlas. Using a newly developed Gouy-Chapman-Stern model for ion sorption to the PM together with growth-response curves, we estimate that the difference in surface-charge density can account for the slightly greater sensitivity of cv Scout to cationic toxicants and the slightly greater sensitivity of cv Atlas to anionic toxicants. According to our estimates the differences in PM surface negativity and Al sorptive capacity probably account for some of the difference in sensitivity to Al3+, but the greater part of the difference probably arises from other tolerance mechanisms expressed in cv Atlas root tips that reduce the amount of Al3+ that can reach the PM.
机译:为了进一步阐明不同基因型对铝的耐受性的机制,从小麦(耐小麦和耐铝)品种(cv)的全根,根尖和无尖根中分离出质膜(PM)囊泡。侦察兵66和简历阿特拉斯66。与从其他任何来源制备的囊泡相比,来自cv Scout根尖的囊泡吸收的铝更多。从cv Scout分离的囊泡的固有表面电荷密度比从cv Atlas分离的囊泡的负表面电荷高26%(-37.2对-29.5毫微仑m-2)。生长实验表明,cv Scout对La3 +的敏感性比对Atvlas的敏感性高,品种对H +的敏感性相同,对AtO42-的敏感性更高。对Al3 +的敏感性差异很大;对于50%的抑制,cv Atlas需要Al3 +的活性提高16倍。使用新开发的Gouy-Chapman-Stern模型将离子吸附到PM以及生长响应曲线,我们估计表面电荷密度的差异可以解释cv Scout对阳离子有毒物质的敏感性稍高,而对阳离子毒物的敏感性稍高。简历Atlas对阴离子毒物的敏感性。根据我们的估计,PM表面负电性和Al吸附能力的差异可能是对Al3 +敏感性的某些差异,但是差异的很大一部分可能是由cv Atlas根尖中表达的其他耐受机制引起的,从而降低了Al3 +的含量。可以达到PM的Al3 +。

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