Plant associated microorganisms, particularly those exhibiting a plant growth promoting (PGP) effect, play an important role in plant nutrition and health and the adaptation to unfavorable climatic conditions, such as drought which threatens the productivity of agricultural crops. The selection of specific microbial populations in the soil habitats associated to plants depends upon the soil physico-chemical parameters besides the \u2018rhizosphere effect\u2019 played by each plant species through rhizodepositions. In this study, we investigated the community structure and PGP potential of the microbiota associated to Citrus sinensis plants located in different geographical regions of Tunisia. The bacteria community structure was correlated ...
The global climate change has predicted drought as a major stress. Application of plant growth promo...
Project Co-ordinators: Dr. Jose Alfonso Gómez Calero (Instituto de Agricultura Sostenible (IAS-CISC)...
Plant growth promoting rhizobacteria (PGPR) can enhance plant performance and plant tolerance to env...
Bacterial communities are among the main players in the colonization of arid ecosystems and their im...
INTRODUCTION: Soil salinity and drought are among the most severe environmental stresses affecting p...
Climate change and anthropogenic activities are responsible for extensive crop yield losses, with ne...
Plant Growth Promoting (PGP) bacteria are known for their role in enhancing plant fitness both in co...
Soil salinity and drought are among the environmental stresses that most severely affect plant growt...
BACKGROUND: Traditional agro-systems in arid areas are a bulwark for preserving soil stability and f...
Agriculture is facing an emerging request of food to satisfy the needs of an increasing world popula...
Environmental stresses are main factors limiting crop production worldwide. Water stress is a primar...
Plant-associated bacteria provide important services to host plants. Environmental factors such as c...
Water scarcity is one of the major worldwide problems affecting in particular agriculture, an intens...
Key message This work reveals the protective role of two rhizobacteria, Pseudomonas putida and Novos...
Background: Aridification is a worldwide serious threat directly affecting agriculture and crop prod...
The global climate change has predicted drought as a major stress. Application of plant growth promo...
Project Co-ordinators: Dr. Jose Alfonso Gómez Calero (Instituto de Agricultura Sostenible (IAS-CISC)...
Plant growth promoting rhizobacteria (PGPR) can enhance plant performance and plant tolerance to env...
Bacterial communities are among the main players in the colonization of arid ecosystems and their im...
INTRODUCTION: Soil salinity and drought are among the most severe environmental stresses affecting p...
Climate change and anthropogenic activities are responsible for extensive crop yield losses, with ne...
Plant Growth Promoting (PGP) bacteria are known for their role in enhancing plant fitness both in co...
Soil salinity and drought are among the environmental stresses that most severely affect plant growt...
BACKGROUND: Traditional agro-systems in arid areas are a bulwark for preserving soil stability and f...
Agriculture is facing an emerging request of food to satisfy the needs of an increasing world popula...
Environmental stresses are main factors limiting crop production worldwide. Water stress is a primar...
Plant-associated bacteria provide important services to host plants. Environmental factors such as c...
Water scarcity is one of the major worldwide problems affecting in particular agriculture, an intens...
Key message This work reveals the protective role of two rhizobacteria, Pseudomonas putida and Novos...
Background: Aridification is a worldwide serious threat directly affecting agriculture and crop prod...
The global climate change has predicted drought as a major stress. Application of plant growth promo...
Project Co-ordinators: Dr. Jose Alfonso Gómez Calero (Instituto de Agricultura Sostenible (IAS-CISC)...
Plant growth promoting rhizobacteria (PGPR) can enhance plant performance and plant tolerance to env...