TY - JOUR
T1 - Protein-Based Biostimulants to Enhance Plant Growth-State-of-the-Art and Future Direction with Sugar Beet as an Example
AU - Jolayemi, Okanlawon Lekan
AU - Malik, Ali H.
AU - Ekblad, Tobias
AU - Fredlund, Kenneth M.
AU - Olsson, Marie
AU - Johansson, Eva
PY - 2022
Y1 - 2022
N2 - Protein-based biostimulants (PBBs) are derived from the hydrolysis of protein-rich raw materials of plant and/or animal origins, usually by-products or wastes from agro-industries. The active ingredients (AIs) produced by hydrolysis have the capacity to influence physiological and metabolic processes in plants, leading to enhanced growth, nutrient and water-use efficiency, tolerance to abiotic and biotic stresses, and improved crop yield and quality. This paper reviews the state-of-the-art and future opportunities for use of PBBs, based on potential effects on the soil, crops, and sustainability (social, economic, environmental). In this case, two examples of PBBs (hydrolyzed wheat gluten and potato protein) and their effects on the early growth of three sugar beet varieties are described and discussed. Both PBBs have a significant stimulating effect on early sugar beet growth and development. The opportunity to develop PBBs into superabsorbent polymers (SAPs) is discussed. To conclude, PBBs/SAPs developed from agro-industrial wastes have the potential for sustainably supplying water and nutrients in agricultural systems and for enhancing plant growth and development over a substantial period.
AB - Protein-based biostimulants (PBBs) are derived from the hydrolysis of protein-rich raw materials of plant and/or animal origins, usually by-products or wastes from agro-industries. The active ingredients (AIs) produced by hydrolysis have the capacity to influence physiological and metabolic processes in plants, leading to enhanced growth, nutrient and water-use efficiency, tolerance to abiotic and biotic stresses, and improved crop yield and quality. This paper reviews the state-of-the-art and future opportunities for use of PBBs, based on potential effects on the soil, crops, and sustainability (social, economic, environmental). In this case, two examples of PBBs (hydrolyzed wheat gluten and potato protein) and their effects on the early growth of three sugar beet varieties are described and discussed. Both PBBs have a significant stimulating effect on early sugar beet growth and development. The opportunity to develop PBBs into superabsorbent polymers (SAPs) is discussed. To conclude, PBBs/SAPs developed from agro-industrial wastes have the potential for sustainably supplying water and nutrients in agricultural systems and for enhancing plant growth and development over a substantial period.
KW - biostimulant
KW - hydrolyzed wheat gluten
KW - potato protein
KW - sugar beet
KW - sustainable development
KW - agro-industrial wastes
KW - superabsorbent polymers
KW - biostimulant
KW - hydrolyzed wheat gluten
KW - potato protein
KW - sugar beet
KW - sustainable development
KW - agro-industrial wastes
KW - superabsorbent polymers
UR - https://res.slu.se/id/publ/120557
U2 - 10.3390/agronomy12123211
DO - 10.3390/agronomy12123211
M3 - Review article
SN - 2073-4395
VL - 12
JO - Agronomy
JF - Agronomy
IS - 12
M1 - 3211
ER -