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筛选可食用部分镉、砷和铅积累量低但其他部分积累量高的玉米(Zea mays L.)品种:田间小区试验

Screening maize (Zea mays L.) varieties with low accumulation of cadmium, arsenic, and lead in edible parts but high accumulation in other parts: a field plot experiment.

作者信息

Yang Ningke, Wang Hongbin, Wang Haijuan, Wang Zhongzhen, Ran Jiakang, Guo Siyu, Peng Yu

机构信息

Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming, 650500, Yunnan, China.

Yunnan Key Lab of Soil Carbon Sequestration and Pollution Control, Kunming, 650500, Yunnan, China.

出版信息

Environ Sci Pollut Res Int. 2021 Feb 28. doi: 10.1007/s11356-021-12958-y.

Abstract

To find maize varieties with both safe production and soil remediation, 11 maize varieties were planted in field soil which was combinedly polluted by cadmium (Cd), arsenic (As), and lead (Pb). The plant growth, accumulation, phytochemical forms, and translocation of Cd, As, and Pb in different tissues were examined. Furthermore, maize varieties with low metal accumulation in their edible parts but high accumulation in other parts were selected as remediation candidates and pollution-safe varieties. The results showed that the growth of varieties Yayu69, Longhuang2502, and Shennongyu10 were the least affected by heavy metals. The concentrations of Cd, As, and Pb in all of the tested maize grains met the national feed hygiene standards, and the grain concentrations of the three metals in Yayu69, Shengnongyu10, and Yunrui62 all met the national food safety standards. According to the extraction efficiency of Cd, As, and Pb and heavy metal concentrations in grains, four types of maize were classified as follows: (1) the first category was suitable for both soil remediation and safe production, including the varieties Yayu69 (Cd, Pb), Jinyi418 (As, Cd), and Shengnongyu10 (Pb); (2) the second category had a high concentration of metals in edible part but did not exceed the limiting value in national feed hygiene standards, and the metal extraction efficiency was also high, including Beiyu1521 (Cd) and Longhuang2502 (Cd, As, Pb); (3) the third category included heavy metal exclusion varieties with low metals accumulation, such as Yayu749 (Cd), Yunrui62 (As, Pb), and Yunrui8 (As); and (4) the fourth type covered risk maize varieties with food safety risks and unsuitable cultivation at sites polluted with toxic metals, including Chuangui1586 (Pb) and Enyu69 (As). The variety Yayu69 (a Cd/Pb low accumulator in grain) contained a low percentage of inorganic (F) and water-soluble (F) Cd (4%) and Pb (6%) in roots, respectively, but the percentage of F and F Cd and Pb in the variety Beiyu1521 (a Cd/Pb high accumulator in grain) was up to 29% and 13%. Our results provided a new perspective in applying maize varieties with different metal-accumulating ability in their different parts to achieve the remediation of metal-polluted soil and the sustainable development of agricultural production.

摘要

为了找到兼具安全生产和土壤修复功能的玉米品种,在镉(Cd)、砷(As)和铅(Pb)复合污染的田间土壤中种植了11个玉米品种。研究了不同组织中Cd、As和Pb的植物生长、积累、植物化学形态及转运情况。此外,选择可食用部分金属积累量低但其他部分积累量高的玉米品种作为修复候选品种和污染安全品种。结果表明,雅玉69、龙黄2502和神农玉10的生长受重金属影响最小。所有测试玉米籽粒中的Cd、As和Pb浓度均符合国家饲料卫生标准,雅玉69、神农玉10和云瑞62中这三种金属的籽粒浓度均符合国家食品安全标准。根据Cd、As和Pb的提取效率以及籽粒中的重金属浓度,将四种类型的玉米分类如下:(1)第一类既适合土壤修复又适合安全生产,包括雅玉69(Cd、Pb)、金益418(As、Cd)和神农玉10(Pb)品种;(2)第二类可食用部分金属浓度高但未超过国家饲料卫生标准限值,且金属提取效率也高,包括北玉1521(Cd)和龙黄2502(Cd、As、Pb);(3)第三类包括金属积累量低的重金属排斥品种,如玉749(Cd)、云瑞62(As、Pb)和云瑞8(As);(4)第四类包括具有食品安全风险且不适宜在有毒金属污染场地种植的风险玉米品种,包括创贵1586(Pb)和恩玉69(As)。雅玉69品种(籽粒中Cd/Pb低积累品种)根部无机态(F)和水溶态(F)Cd(4%)和Pb(6%)的比例分别较低,但北玉1521品种(籽粒中Cd/Pb高积累品种)中F和F Cd和Pb的比例高达29%和13%。我们的研究结果为应用不同部位具有不同金属积累能力的玉米品种实现金属污染土壤的修复和农业生产的可持续发展提供了新的视角。

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