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Effect of l-amino acid-based biostimulants on nitrogen use efficiency (NUE) in lettuce plants
被引:22
|作者:
Navarro-Leon, Eloy
[1
]
Javier Lopez-Moreno, Francisco
[2
]
Borda, Elisabet
[3
]
Marin, Candido
[3
]
Sierras, Nuria
[3
]
Blasco, Begona
[1
]
Manuel Ruiz, Juan
[1
]
机构:
[1] Univ Granada, Fac Sci, Dept Plant Physiol, Granada 18071, Spain
[2] Inst Res & Training Agr & Fisheries, IFAPA, Granada, Spain
[3] SAU, Bioiber, Plant Hlth R&D, Barcelona, Spain
关键词:
biostimulants;
chlorophyll;
l-amino acid;
nitrogen;
nitrogen use efficiency;
lettuce;
NUTRITIONAL QUALITY;
YIELD;
NITRATE;
D O I:
10.1002/jsfa.12071
中图分类号:
S [农业科学];
学科分类号:
09 ;
摘要:
BACKGROUND Biostimulants are increasingly integrated into production systems with the goal of modifying physiological processes in plants to optimize productivity. Specifically, l-alpha-amino acid-based biostimulants enhance plant productivity through improved photosynthesis and increased assimilation of essential nutrients such as nitrogen (N). This element is a major component of fertilizers, which usually are applied in excess. Thus, the inefficient use of N fertilizers has generated a serious environmental pollution issue. The use of biostimulants has the potential to address problems related to N fertilization. Therefore, the objective of this study is to analyze whether two biostimulants based on l-alpha-amino acid (Terra Sorb (R) radicular and Terramin (R) Pro) designed by Bioiberica, S.A.U company can compensate deficient N fertilization and test its effect on lettuce plants. Growth, photosynthetic, N accumulation, and N use efficiency (NUE) parameters were analyzed on lettuce leaves. RESULTS Results showed that regardless of N fertilization, the use of both biostimulants, especially Terramin (R) Pro, increased biomass production. Moreover, both biostimulants enhanced photosynthetic, NO3- and total N accumulations as well as NUE parameters. CONCLUSION Therefore, Terra Sorb (R) radicular and Terramin (R) Pro constitute a useful tool for crops development in N-limiting areas, and in intensive agricultural areas without N deficiency allowing the reduction of N inputs without impairing crop yields and reducing environmental impact. (c) 2022 Society of Chemical Industry.
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页码:7098 / 7106
页数:9
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