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Phytostimulation and biofertilization in wheat by cyanobacteria
Anwar Hussain, Shahida Hasnain
Improved soil characteristics and wheat germination as influenced by inoculation of Nostoc kihlmani and Anabaena cylindrica
Dalia Abd El-Azeem Ahmed, Saly Gheda
Biofertilizer and biostimulant properties of the microalga Acutodesmus dimorphus
Jesus Garcia-Gonzalez, Milton Sommerfeld
Production, extraction and characterization of Chlorella vulgaris soluble polysaccharides and their applications in AgNPs biosynthesis and biostimulation of plant growth
Mervat Hosny Hussein, Noura El-Ahmady El-Naggar, Sami A. Shaaban-Dessuuki, Shimaa R. Dalal
Dunaliella salina exopolysaccharides: a promising biostimulant for salt stress tolerance in tomato (Solanum lycopersicum)
A. Aafsar, Adil El Baouchi, Badreddine Sijilmassi, Hicham EL Arroussi, Issam Meftah Kadmiri, Najib Bendaou, Najib El Mernissi, R. Benhima, Smouni Abdelaziz
The Impact of Using Microalgae as Biofertilizer in Maize (Zea mays L.)
A. Arumugam, J. Gopalsamy, Jeayaram Subramanian, Kannadasan Sellaiyan, Palanivel Jayasingam, Pitchai Sampathkumar, R. Dineshkumar, S. Kannadasan
Microalgae: New Source of Plant Biostimulants
Giuseppe Colla, Youssef Rouphael
Renewable Sources of Plant Biostimulation: Microalgae as a Sustainable Means to Improve Crop Performance
Giandomenico Corrado, Giuseppe Colla, Marios Kyriacou, Pasquale Chiaiese, Youssef Rouphael
Effect of the foliar application of cyanobacterial hydrolysate (Arthrospira platensis) on the growth of Petunia x hybrida under salinity conditions
Blanca Maria Plaza, C. Gómez-Serrano, E. Rojas, PJ Bayona-Morcillo, Silvia Jimenez-Becker
Microalgae, soil and plants: A critical review of microalgae as renewable resources for agriculture
Adriana L. Alvarez, Brent M Peyton, Hannah Goemann, Robert D. Gardner, Sharon L. Weyers
Biostimulant Potential of Scenedesmus obliquus Grown in Brewery Wastewater
Alice Ferreira, Angela Ruíz-Nieto, Elvira Navarro-López, F. Gabriel Acién, Luisa Gouveia
Este artigo trata do uso de microalgas como estimulante vegetal.
Physiological and transcriptomics analyses reveal that Ascophyllum nodosum extracts induce salinity tolerance in Arabidopsis by regulating the expression of stress responsive genes
Alan T. Critchley, B. Prithiviraj, Jyoti Joshi, M. N. Jithesh, P. Kant, Pushp S. Shukla
Estudou mecanismos antiestresse selecionados no nível do transcriptoma.