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首页> 外文期刊>Canadian Journal of Botany >Isotopic fractionation of zinc in field grown tomato.
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Isotopic fractionation of zinc in field grown tomato.

机译:田间种植的番茄中锌的同位素分馏。

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摘要

Many of the world's soils are deficient in zinc (Zn), and this has implications for plant and human nutrition. Consequently, there is a need to better understand plant uptake and allocation of Zn. Natural abundances of stable isotopes have been used to gain insight into uptake, assimilation, and allocation of various elements by plants. Inductively coupled plasma mass spectrometry was used to study the fractionation of Zn isotopes in the shoots and fruits of mature tomato plants (Solanum lycopersicum L.) grown on an organic farm. Effects of mycorrhizal colonization of roots on Zn fractionation were studied by growing a tomato mutant with reduced mycorrhizal colonization, and its mycorrhizal wild-type progenitor. Fruits of both genotypes were enriched in 64Zn and 66Zn and depleted in 67Zn and 68Zn isotopes, based on calculations that expressed the concentration of each isotope as a percentage of total Zn. The reverse was true of the shoots. Furthermore, shoots of the mycorrhizal genotype were very slightly enriched in 64Zn and 66Zn isotopes relative to those of the reduced mycorrhizal colonization genotype. Possible explanations for fractionation of Zn between shoots and fruits, including differential bonding of Zn to cellular components, processes affecting Zn-phytate-protein complexes, and Zn transport and translocation processes are discussed..
机译:世界上许多土壤都缺乏锌(Zn),这对植物和人类营养产生了影响。因此,需要更好地理解植物对锌的吸收和分配。稳定同位素的自然丰度已被用来了解植物对各种元素的吸收,吸收和分配。电感耦合等离子体质谱法用于研究有机农场种植的成熟番茄植株(番茄)的芽和果实中锌同位素的分馏。通过种植减少了菌根定植的番茄突变体及其菌根野生型祖细胞,研究了根的菌根定植对锌分离的影响。根据将每种同位素的浓度表示为总锌的百分比的计算,两种基因型的水果富含64Zn和66Zn,而富含67Zn和68Zn同位素。相反的是芽。此外,与减少菌根定殖基因型的那些相比,菌根基因型的芽中的64Zn和66Zn同位素非常轻微地富集。讨论了锌在枝条和果实之间分馏的可能解释,包括锌与细胞成分的差异键合,影响锌植酸-蛋白质复合物的过程以及锌的运输和转运过程。

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