Blepharidium guatemalense, an obligate nickel hyperaccumulator plant from non-ultramafic soils in Mexico

IF 1.6 3区 环境科学与生态学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Chemoecology Pub Date : 2021-02-07 DOI:10.1007/s00049-021-00338-4
Dulce Montserrat Navarrete Gutiérrez, A. Joseph Pollard, Antony van der Ent, Michel Cathelineau, Marie-Noëlle Pons, Jesús A. Cuevas Sánchez, Guillaume Echevarria
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引用次数: 5

Abstract

Nickel hyperaccumulation in Blepharidium guatemalense Standl. (Rubiaceae) was found in the tropical forests of south-eastern Mexico. This study aimed to document the geographic extent of nickel hyperaccumulation in this species, to understand its process of hyperaccumulation and to explore nickel distribution within the tissues of this plant. To accomplish these objectives, a complete non-destructive elemental screening of herbarium specimens was performed with a hand-held X-ray fluorescence spectrometer. Besides, rhizosphere soils and plant tissues were collected in Mexico and analyzed for physical–chemical parameters. Finally, elemental distribution maps of nickel and other elements in plant tissues were obtained by X-ray fluorescence spectroscopy and microscopy. This study revealed that Blepharidium guatemalense is distributed throughout Chiapas, Tabasco and Campeche, reaching the maximum nickel concentration in leaves (4.3 wt%) followed by roots and seeds (2.0 wt%) and bark (1.8 wt%). Simultaneous hyperaccumulation of cobalt and nickel was found in 15% of the herbarium specimens. Blepharidium guatemalense has uncommon re-distribution mechanisms via phloem since this tissue is the highest nickel-enriched from all parts of the plant (from roots to leaves). A high total nickel (mean of 610?μg?g?1) was found in rhizosphere soils even though no evidence of ophiolite emplacement in that area has been reported. Blepharidium guatemalense represents the first hypernickelophore (>?1 wt% Ni) to be reported as growing in soils that are neither ultramafic nor enriched by anthropogenic pollutants.

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来自墨西哥非超镁性土壤的专性镍超富集植物
瓜地马拉黑螺旋藻中镍的超富集。发现于墨西哥东南部的热带森林。本研究旨在记录该物种镍超富集的地理范围,了解其超富集过程,并探索镍在该植物组织中的分布。为了实现这些目标,用手持x射线荧光光谱仪对植物标本馆标本进行了完整的非破坏性元素筛选。此外,还采集了墨西哥的根际土壤和植物组织,对其理化参数进行了分析。最后,利用x射线荧光光谱和显微技术获得了镍等元素在植物组织中的元素分布图。研究结果表明,危地马拉Blepharidium guatemalense分布在恰帕斯州、塔巴斯科州和坎佩切州,镍含量最高的是叶片(4.3 wt%),其次是根和种子(2.0 wt%)和树皮(1.8 wt%)。在15%的植物标本室标本中发现钴和镍同时超富集。危地马拉Blepharidium guatemalense通过韧皮部具有罕见的再分配机制,因为韧皮部是植物所有部分(从根到叶)中镍含量最高的组织。在根际土壤中发现了高总镍(平均610 μg / 1),尽管该地区没有蛇绿石植入的证据。危地马拉的Blepharidium代表了第一个高镍菌群(>?据报道,1 wt% Ni)生长在既不超镁也不受人为污染物富集的土壤中。
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来源期刊
Chemoecology
Chemoecology 环境科学-生化与分子生物学
CiteScore
4.20
自引率
0.00%
发文量
11
审稿时长
>36 weeks
期刊介绍: It is the aim of Chemoecology to promote and stimulate basic science in the field of chemical ecology by publishing research papers that integrate evolution and/or ecology and chemistry in an attempt to increase our understanding of the biological significance of natural products. Its scopes cover the evolutionary biology, mechanisms and chemistry of biotic interactions and the evolution and synthesis of the underlying natural products. Manuscripts on the evolution and ecology of trophic relationships, intra- and interspecific communication, competition, and other kinds of chemical communication in all types of organismic interactions will be considered suitable for publication. Ecological studies of trophic interactions will be considered also if they are based on the information of the transmission of natural products (e.g. fatty acids) through the food-chain. Chemoecology further publishes papers that relate to the evolution and ecology of interactions mediated by non-volatile compounds (e.g. adhesive secretions). Mechanistic approaches may include the identification, biosynthesis and metabolism of substances that carry information and the elucidation of receptor- and transduction systems using physiological, biochemical and molecular techniques. Papers describing the structure and functional morphology of organs involved in chemical communication will also be considered.
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