Artykuł w czasopiśmie
Brak miniatury
Licencja

CC-BYCC-BY - Uznanie autorstwa

Harnessing Rhizobia to Improve Heavy-Metal Phytoremediation by Legumes

Autor
Dziewit, Łukasz
Checcucci, Alice
Dębiec-Andrzejewska, Klaudia
Pini, Francesco
diCenzo, George
Mengoni, Alessio
Fagorzi, Camilla
Data publikacji
2018
Abstrakt (EN)

Rhizobia are bacteria that can form symbiotic associations with plants of the Fabaceae family, during which they reduce atmospheric di-nitrogen to ammonia. The symbiosis between rhizobia and leguminous plants is a fundamental contributor to nitrogen cycling in natural and agricultural ecosystems. Rhizobial microsymbionts are a major reason why legumes can colonize marginal lands and nitrogen-deficient soils. Several leguminous species have been found in metal-contaminated areas, and they often harbor metal-tolerant rhizobia. In recent years, there have been numerous efforts and discoveries related to the genetic determinants of metal resistance by rhizobia, and on the effectiveness of such rhizobia to increase the metal tolerance of host plants. Here, we review the main findings on the metal resistance of rhizobia: the physiological role, evolution, and genetic determinants, and the potential to use native and genetically-manipulated rhizobia as inoculants for legumes in phytoremediation practices.

Słowa kluczowe EN
soil bioremediation, heavy-metals, serpentine soils, serpentine vegetation, genome manipulation, cis-hybrid strains
Dyscyplina PBN
nauki biologiczne
Czasopismo
Genes
Tom
9
Zeszyt
11
Strony od-do
542
ISSN
2073-4425
Data udostępnienia w otwartym dostępie
2018-11-08
Licencja otwartego dostępu
Uznanie autorstwa