Depot Institutionnel de l'UMBB >
Publications Scientifiques >
Publications Internationales >
Veuillez utiliser cette adresse pour citer ce document :
http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/7925
|
Titre: | Effective biofertilizer trichoderma spp. isolates with enzymatic activity and metabolites enhancing plant growth |
Auteur(s): | Reghmit, Abdenacer Benzina-tihar, Farida Djeziri, Mourad Hadjouti, Rima Oukali, Zahia Sahir-Halouane, Fatma |
Mots-clés: | Trichoderma sp Phytohormones Biofertilizer Plant growth Olive crop |
Date de publication: | 2022 |
Editeur: | Research square |
Résumé: | Trichoderma species have been widely recognized as biofertilizer fungi for their ability to produce
phytohormones and enhancing plant growth. In our current study, fifteen strains of Trichoderma spp (T1-
T15) were screened for their capacity to produce phytohormones and metabolites eliciting plant growth.
The stains were previously isolated from olive rhizosphere soil in northern Algeria. Plant growth
promoting (PGP) potential of Trichoderma spp. was evaluated in-vitro through the production of
phosphatases, iron chelators (siderophores), cyanhydric acid (HCN) and ammonia (NH3). Besides, Plant
growth phytohormones such as gibberellic acid and indole-3-acetic acid (IAA) were assessed
quantitatively by a colorimetric assay. Results showed an effective potential of Trichoderma isolates in
PGP biomolecules production. Importantly, qualitative estimation of phosphate solubilization indicates
that T10 gave the highest P-solubilization on medium Pikovskaya’s with a solubilization index (SI) of 3,
whereas, the high capacity nitrogen-fixing was related to T8. In other hand, quantitative analysis of IAA
and gibberellic acid revealed a production varying between (1.30 µg mL
− 1 − 21.15 µg mL
− 1
) and
(0.53µg/ml − 7.87µg/ml), respectively, the highest amount of both phytohormones was obtained by T11
isolate. Indeed, analysis of ethyl acetate extracts of T11 isolate by high-performance liquid
chromatography (HPLC) revealed a high amount (71.19 mgL
− 1
) of IAA. Overall, Results showed clearly
that isolate T11 has promising plant growth promoting properties. Hence, this native Trichoderma isolate
(T11) identified as Trichoderma harzianum strain (OL587563) could be used later as biofertilizer for
sustainable olive crop agriculture |
URI/URL: | https://www.researchsquare.com/article/rs-1310274/v1 http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/7925 |
ISSN: | 2693-5015 |
Collection(s) : | Publications Internationales
|
Fichier(s) constituant ce document :
|
Tous les documents dans DSpace sont protégés par copyright, avec tous droits réservés.
|