The field of allelopathy is one of the most fascinating but controversial processes in plant ecology that offers an exciting, interdisciplinary, complex, and challenging study. In spite of the established role of soil microbes in plant health, their role has also been consolidated in studies of allelopathy. Moreover, allelopathy can be better understood by incorporating soil microbial ecology that determines the relevance of allelopathy phenomenon. Therefore, while discussing the role of allelochemicals in plant-plant interactions, the dynamic nature of soil microbes should not be overlooked. The occurrence and toxicity of allelochemicals in soil depend on various factors, but the type of microflora in the surroundings plays a crucial role because it can interfere with its allelopathic nature. Such microbes could be of prime importance for biological control management of weeds reducing the cost and ill effects of chemical herbicides. Among microbes, our main focus is on bacteria--as they are dominant among other microbes and are being used for enhancing crop production for decades--and fungi. Hence, to refer to both bacteria and fungi, we have used the term microbes. This review discusses the beneficial role of microbes in reducing the allelopathic effects of weeds. The review is mainly focused on various functions of bacteria in (1) reducing allelopathic inhibition caused by weeds to reduce crop yield loss, (2) building inherent defense capacity in plants against allelopathic weed, and (3) deciphering beneficial rhizospheric process such as chemotaxis/biofilm, degradation of toxic allelochemicals, and induced gene expression.
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http://dx.doi.org/10.1007/s00253-013-4885-y | DOI Listing |
J Agric Food Chem
December 2024
School of Biotechnology and Food Engineering, Changshu Institute of Technology, Suzhou 215500, China.
Chlorogenic acid (CA) is an abundant plant secondary metabolite with promising allelopathic effects on weed growth. However, the molecular targets and mechanism of action of CA in plants remain elusive. Here, we report the employment of a clickable photoaffinity probe in identifying the protein targets of CA in seedling proteomes.
View Article and Find Full Text PDFPlants (Basel)
November 2024
Plant Physiology Laboratory, Center for Biotechnology, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre 91501-970, Brazil.
Limited phytodiversity and regeneration rates occur in some of the southern Brazilian formations known as the Myrtacean Woodlands. Data on phytotoxicity, chemical composition, and allelopathic potential of O. Berg, a dominant species in such woodlands, is missing.
View Article and Find Full Text PDFJ Toxicol Environ Health A
December 2024
Department of Ecology and Conservation, Federal University of Lavras, Lavras, MG, Brazil.
Coffee beans contain compounds with allelopathic activity, such that some beans that do not meet quality standards might rather be used to obtain a natural herbicide which consequently might be employed to control undesired plants and avoid economic losses. Thus, the objectives of this study were: (1) to investigate the allelopathic effect of different concentrations of green (GC) and roasted (RC) coffee extracts on the inhibition of germination and initial growth of L. L.
View Article and Find Full Text PDFBMC Plant Biol
November 2024
Department of Biology, College of Natural and Computational Sciences, University of Gondar, P.O.Box 196, Gondar, Ethiopia.
BMC Plant Biol
November 2024
Jiangsu Key Laboratory for Pathogen and Ecosystems, Jiangsu Engineering and Technology Research Center for Industrialization of Microbial Resources, College of Life Sciences, Nanjing Normal University, Nanjing, Jiangsu Province, China.
Background: Endophytes play an important role in promoting plant growth. To date, although many reports provided insight into the function of endophytes in their hosts, few reports focus on their impact on nearby plants. Intraspecific allelopathy in plant community is common and presents a notable challenge to medicinal plant yield and productivity.
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