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杨树遗传工程增强植物修复能力的展望。

Perspectives for genetic engineering of poplars for enhanced phytoremediation abilities.

机构信息

Department of Bio and Nano Technology, Guru Jambheshwar University of Science and Technology, Hisar, 125001 Haryana, India.

出版信息

Ecotoxicology. 2010 Nov;19(8):1574-88. doi: 10.1007/s10646-010-0543-7. Epub 2010 Sep 17.

DOI:10.1007/s10646-010-0543-7
PMID:20848189
Abstract

Phytoremediation potential has been widely accepted as highly stable and dynamic approach for reducing eco-toxic pollutants. Earlier reports endorse remediation abilities both in herbaceous plants as well as woody trees. Poplars are dominant trees to the ecosystem structure and functioning in riparian forests of North America Rivers and also to other part of the world. Understanding of the fact that how genetic variation in primary producer structures communities, affects species distribution, and alters ecosystem-level processes, attention was paid to investigate the perspectives of genetic modification in poplar. The present review article furnishes documented evidences for genetic engineering of Populus tree for enhanced phytoremediation abilities. The versatility of poplar as a consequence of its distinct traits, rapid growth rates, extensive root system, high perennial biomass production, and immense industrial value, bring it in the forefront of phytoremediation. Furthermore, remediative capabilities of Populus can be significantly increased by introducing cross-kingdom, non-resident genes encoding desirable traits. Available genome sequence database of Populus contribute to the determination of gene functions together with elucidating phytoremediation linked metabolic pathways. Adequate understanding of functional genomics in merger with physiology and genetics of poplar offers distinct advantage in identifying and upgrading phytoremediation potential of this model forest tree species for human welfare.

摘要

植物修复的潜力已被广泛认可为减少生态毒性污染物的高度稳定和动态的方法。早期的报告支持草本植物和木本植物都具有修复能力。杨树是北美的河流滨岸森林以及世界其他地区生态系统结构和功能的主要树种。人们已经认识到,初级生产者结构的遗传变异如何影响群落结构,影响物种分布,并改变生态系统水平的过程,因此人们开始关注杨树遗传修饰的研究。本文综述了杨树遗传工程增强植物修复能力的研究进展。杨树具有独特的特性、快速的生长速度、广泛的根系、高多年生生物量生产和巨大的工业价值,使其成为植物修复的前沿。此外,通过引入跨王国的、非居民的编码理想特性的基因,可以显著提高杨树的修复能力。杨树的可用基因组序列数据库有助于确定基因功能,同时阐明与植物修复相关的代谢途径。将功能基因组学与杨树的生理学和遗传学相结合,可以充分了解,这为鉴定和提高这种模式造林树种的植物修复潜力,造福人类提供了明显的优势。

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Aeration Increases Cadmium (Cd) Retention by Enhancing Iron Plaque Formation and Regulating Pectin Synthesis in the Roots of Rice (Oryza sativa) Seedlings.通气通过增强水稻(Oryza sativa)幼苗根系中铁膜的形成和调节果胶合成来增加镉(Cd)的滞留。
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