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Nematophagous fungus Pochonia chlamydosporia to control parasitic diseases in animals

Applied Microbiology and Biotechnology, 2023
The control of gastrointestinal parasites in animals has become more challenging every year due to parasite resistance to conventional chemical control, which has been observed worldwide. Ovicidal or opportunistic fungi do not form traps to capture larvae.
Júlia dos Santos Fonseca   +5 more
openaire   +2 more sources

Molecular Diagnostics of Pochonia chlamydosporia

2017
Molecular tools have been increasingly used in identification and taxonomy studies of Pochonia (Clavicipitaceae). In recent years there have been important advances in Clavicipitaceae taxonomy, including resolving the differences between Verticillium and Pochonia through ITS sequences molecular analysis. Current molecular identification of Pochonia spp.
María Gabriela Medina-Canales   +1 more
openaire   +1 more source

Formulation of Pochonia chlamydosporia for Plant and Nematode Management

2016
Soil microorganisms play a key role in plant nutrition and health, interacting with soil pests with beneficial, antagonistic effects. The nematode parasitic and root endophytic fungus Pochonia chlamydosporia has been extensively studied in the last years for exploitation, due to its multiple behaviours in soil and the rhizosphere.
Ciancio A   +3 more
openaire   +1 more source

Interactions Between Pochonia chlamydosporia and Nematodes

2017
Pochonia parasitizes the eggs and females of plant-parasitic nematodes (PPN). The fungus-nematode interaction involves a complex series of events which can be affected by the environment. Thus, an understanding of the bionomics of this interaction is essential in order to improve the efficiency of the biological management of PPN.
Thalita S. Avelar Monteiro   +3 more
openaire   +1 more source

Regulatory Factors in Pochonia chlamydosporia-Induced Gene Expression

2017
Soil microorganisms respond to and release signals in the rhizosphere, affecting root growth and their interactions with parasites. Understanding the gene expression patterns that are active in roots is fundamental for successful exploitation of beneficial associations.
Ciancio A   +3 more
openaire   +3 more sources

Secondary Metabolites from Pochonia chlamydosporia and Other Species of Pochonia

2017
This chapter aims to present classification, occurrence, biological activities and functions of 34 secondary metabolites from Pochonia chlamydosporia (= Verticillium chlamydosporium) and 105 secondary metabolites from the other species of Pochonia reported up to the end of 2015. The secondary metabolites from P. chlamydosporia mainly include resorcylic
openaire   +1 more source

Pochonia chlamydosporia Mitochondrial Genome sequencing

2013
The complete mitochondrial genome sequence of Pochonia chlamydosporia was determined. The conserved fungi mitochondrial genes were identified and the phylogenetic placement of Pochonia chlamydosporia was indicated. In this study, the evolution of mitochondrion size of fungi within Ascomycota was investigated.
openaire   +1 more source

Cover crops and Pochonia chlamydosporia for the control of Meloidogyne javanica

Nematology, 2011
AbstractThe objective of this research was to evaluate the effect of the combination of Pochonia chlamydosporia var. chlamydosporia with summer and winter cover plants on the control of Meloidogyne javanica on tomato plants under glasshouse conditions.
Guilherme S. de Podestá   +5 more
openaire   +1 more source

Pochonia chlamydosporia . [Descriptions of Fungi and Bacteria].

Descriptions of Fungi and Bacteria, 2003
Abstract A description is provided for Pochonia chlamydosporia . Information is included on the disease caused by the organism, its transmission, geographical distribution, and hosts. DISEASE: Var. chlamydosporia is parasitic on cysts and eggs of the nematodes, and also ovicidal to
null UK, CAB International   +2 more
openaire   +1 more source

Pesticides on the viability of Pochonia chlamydosporia for controlling Meloidogyne incognita

Australasian Plant Pathology, 2019
One of the major challenges for biological control candidates is the ability to survive after contact with chemical pesticides, which are regularly used in the conventional agriculture. The use of a biological tool does not eliminate the need for less sustainable practices to protect the crops in the field.
E. G. C. Nasu   +6 more
openaire   +1 more source

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