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首页> 外文期刊>Russian Journal of Plant Physiology >Strontium transport, distribution, and toxic effects on maize seedling growth
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Strontium transport, distribution, and toxic effects on maize seedling growth

机译:锶转运,分布及对玉米幼苗生长的毒性影响

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Two-day-old seedlings of maize (Zea mays L.) were incubated on 3 mM and 35 muM solutions of Sr(NO3)(2), and the toxic effects of strontium were assessed by measuring, in the course of four days of incubation, the daily increments of the primary root length and also the root and shoot length by day 7 of incubation, and the length of the fully elongated cells. Sodium rhodizonate, a reagent developing the colored complex with Sr, was used to follow Sr distribution in maize tissues and organs following 2, 24, 48, and 168 h of incubation. Sr was found in all root tissues as soon as after 24 h of incubation; it accumulated mostly in the cell apoplast, whereas its content in the protoplasts was considerably lower. Strontium readily crossed the endodermal barrier via the symplast and was immobilized predominantly in the pericycle cell walls; therefore, it did not hamper root branching. Strontium did not affect the final cell length and hindered root growth (at the concentration of 3 mM) by inhibiting cell division. In the shoots, Sr was found in the xylem cell walls in the vascular bundles of coleoptile, mesocotyl, and leaves on the second day of incubation, an evidence for high Sr mobility. We conclude that the transport of Sr differs from the transport of such heavy metals, as Cd, Pb, and Ni, and is similar in many aspects to the distribution of calcium, another alkaline earth metal, probably due to similar physical and chemical proper-ties of their ions.
机译:将两天大的玉米幼苗(Zea mays L.)在3 mM和35μMSr(NO3)(2)溶液中孵育,并通过在4天的过程中进行测量来评估锶的毒性作用。孵育时,初次根长的日增量以及到孵育第7天的根和茎长的日增量,以及完全拉长的细胞的长度。在培养2、24、48和168小时后,使用重氮酸钠(一种与Sr形成有色复合物的试剂)跟踪Sr在玉米组织和器官中的分布。孵育24小时后,在所有根组织中均发现了Sr。它主要在细胞质外体中积累,而其在原生质体中的含量要低得多。锶很容易通过共生体穿过内皮屏障,并主要固定在周周细胞壁中。因此,它不会妨碍根分支。锶不影响最终细胞的长度,并通过抑制细胞分裂而阻碍了根的生长(在3 mM的浓度下)。在芽中,在培养的第二天,在胚芽鞘,中胚轴和叶片的维管束的木质部细胞壁中发现了Sr,这证明了Sr的高迁移率。我们得出的结论是,Sr的运输不同于Cd,Pb和Ni等重金属的运输,并且在许多方面与另一种碱土金属钙的分布相似,这可能是由于相似的物理和化学性质所致。他们离子的纽带。

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