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1.
World J Microbiol Biotechnol ; 36(7): 92, 2020 Jun 19.
Article En | MEDLINE | ID: mdl-32562008

All plants harbor many microbial species including bacteria and fungi in their tissues. The interactions between the plant and these microbes could be symbiotic, mutualistic, parasitic or commensalistic. Mutualistic microorganisms are endophytic in nature and are known to play a role in plant growth, development and fitness. Endophytes display complex diversity depending upon the agro-climatic conditions and this diversity could be exploited for crop improvement and sustainable agriculture. Plant-endophyte partnerships are highly specific, several genetic and molecular cascades play a key role in colonization of endophytes in host plants leading to rapid changes in host and endophyte metabolism. This results in the accumulation of secondary metabolites, which play an important role in plant defense against biotic and abiotic stress conditions. Alkaloids are one of the important class of metabolites produced by Epichloë genus and other related classes of endophytes and confer protection against insect and mammalian herbivory. In this context, this review discusses the evolutionary aspects of the Epichloë genus along with key molecular mechanisms determining the lifestyle of Epichloë endophytes in host system. Novel hypothesis is proposed to outline the initial cellular signaling events during colonization of Epichloë in cool season grasses. Complex clustering of alkaloid biosynthetic genes and molecular mechanisms involved in the production of alkaloids have been elaborated in detail. The natural defense and advantages of the endophyte derived metabolites have also been extensively discussed. Finally, this review highlights the importance of endophyte-arbitrated plant immunity to develop novel approaches for eco-friendly agriculture.


Endophytes/metabolism , Epichloe/metabolism , Plant Immunity , Poaceae/microbiology , Alkaloids/metabolism , Aspergillus/classification , Aspergillus/metabolism , Calcineurin/metabolism , Endophytes/isolation & purification , Epichloe/isolation & purification , Ergolines/metabolism , Ergot Alkaloids/metabolism , Evolution, Molecular , Fungal Proteins/metabolism , Indole Alkaloids/metabolism , Lysergic Acid/metabolism , Multigene Family , NADPH Oxidases/metabolism , Protein Kinases/metabolism , Reactive Oxygen Species/metabolism , Stress, Physiological , Symbiosis , Transcriptome
2.
Chemosphere ; 56(10): 957-65, 2004 Sep.
Article En | MEDLINE | ID: mdl-15268962

Rhizospheric distribution of nutrients and heavy metals in sludge amended soil was investigated using the rhizobag technique to give an indication of the release of metals from wastewater sludge. DTPA-extractable Zn, Cd, Ni and Mn, and available P, K and NH4+-N in the rhizosphere were markedly depleted when soil was amended with sludge. There was no conspicuous depletion or accumulation of DTPA-extractable Cu in the rhizosphere when the soil was amended with sewage sludge but DTPA-extractable Fe accumulated in the rhizosphere when the soil was amended with increasing amounts of sludge. The pH value in the rhizosphere increased with distance from the roots when soil was amended with larger amounts of sludge. The exchangeable fraction of Cu in the rhizosphere was depleted whether or not the soil was treated with sludge. Carbonate, oxide, organic and residual fractions of Cu and Zn were depleted in the rhizosphere at a distance of 0-2 mm from the roots when soil was amended with 50% sludge. Application of sewage sludge had a positive effect on alfalfa growth. With an increase in sludge amounts, the concentrations of Fe, Cu and Zn in alfalfa shoots did not change. Soil amendments with less than 25% sludge did not increase the availability or mobility of heavy metals. The depletion in rhizospheric DTPA-extractable Zn, Cd and Ni indicates that with the sole exception of Cu, release of metals from sludge amended soil was very limited.


Medicago sativa/growth & development , Metals, Heavy/analysis , Sewage/analysis , Soil/analysis , Analysis of Variance , Hong Kong , Hydrogen-Ion Concentration , Medicago sativa/metabolism , Metals, Heavy/pharmacokinetics , Phosphorus , Potassium , Quaternary Ammonium Compounds , Spectrophotometry, Atomic
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