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首页> 外文期刊>Soil Science >Low-molecular-weight organic acid exudation of rape (Brassica campestris) roots in cesium-contaminated soils.
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Low-molecular-weight organic acid exudation of rape (Brassica campestris) roots in cesium-contaminated soils.

机译:油菜根系在铯污染土壤中的低分子量有机酸渗出。

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摘要

Caesium is an emission element from nuclear energy generation easily transferred to food chain. More evidence has been found that Brassica crops take up pollutants from soils. The objective of this study was to investigate the correlation between soil bioavailability of caesium and low-molecular-weight organic acids (LMWOAs) in rape (Brassica campestris) root exudates. Longtan (LT) red (Typic Hapladox) and Kuanshan (KS) iron-rich calcareous soils (Typic Paleudalf) were collected for this study. The pot experiments of rape were conducted with cesium-amended soils and plants grown in the soils (4 weeks). Caesium concentration in shoots and roots correlated well with Cs concentration in the amended soils. Within the amended range of 50 to 300 mg Cs kg-1 soil, Cs did not inhibit rape growth. The bioaccumulation ratio ([Cs]root/[Cs]soil or [Cs]shoot/[Cs]soil) for Cs in shoots of pot grown plants ranged between 9 and 31 and showed significant differences (P<0.05). Plant roots can exude LMWOAs, which are important components in root exudation. The total amounts of volatile and nonvolatile LMWOAs in all Cs-amended soils were higher than those in nonamended soils. Meanwhile, the LMWOA concentrations of the rape root exudates showed good correlation with Cs concentrations in the applied range of 50 to 300 mg Cs kg-1 soil..
机译:铯是很容易转移到食物链的核能发电中的排放元素。已经发现更多证据表明芸苔属作物吸收了土壤中的污染物。这项研究的目的是调查土壤中铯的生物利用度与油菜(甘蓝型油菜)根系分泌物中低分子量有机酸(LMWOA)之间的相关性。本研究收集了龙潭(LT)红(典型的Hapladox)和宽山(KS)的富含铁的钙质土壤(典型的Paleudalf)。用铯改良土壤和在土壤中生长的植物(4周)进行盆栽试验。茎和根中的铯浓度与改良土壤中的铯浓度有很好的相关性。在50至300 mg Cs kg-1土壤的修正范围内,Cs不会抑制油菜的生长。盆栽植物芽中Cs的生物累积率([Cs]根/ [Cs]土壤或[Cs] shoot / [Cs]土壤)在9至31之间,差异有统计学意义(P <0.05)。植物根系可能散发LMWOA,LMWOA是根系渗出的重要组成部分。在所有经Cs改良的土壤中,挥发性和非挥发性LMTOA的总量均高于未改良的土壤。同时,在50至300 mg Cs kg-1土壤施用范围内,油菜根系分泌物的LMWOA浓度与Cs浓度显示出良好的相关性。

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