The effect of plant growth-promoting rhizobacteria on yield, water use efficiency and Brix Degree of processing tomato
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DOI: 10.17221/818/2017-PSE
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- S. Lei & Q. Yunzhou & J. Fengchao & S. Changhai & Y. Chao & L. Yuxin & L. Mengyu & D. Baodi, 2009. "Physiological mechanism contributing to efficient use of water in field tomato under different irrigation," Plant, Soil and Environment, Czech Academy of Agricultural Sciences, vol. 55(3), pages 128-133.
- Kuşçu, Hayrettin & Turhan, Ahmet & Demir, Ali Osman, 2014. "The response of processing tomato to deficit irrigation at various phenological stages in a sub-humid environment," Agricultural Water Management, Elsevier, vol. 133(C), pages 92-103.
- Shaikh Abdullah Al MAMUN HOSSAIN & Lixue WANG & Taotao CHEN & Zhenhua LI, 2017. "Leaf area index assessment for tomato and cucumber growing period under different water treatments," Plant, Soil and Environment, Czech Academy of Agricultural Sciences, vol. 63(10), pages 461-467.
- T.-T. Nguyen & S. Fuentes & P. Marschner, 2012. "Effects of compost on water availability and gas exchange in tomato during drought and recovery," Plant, Soil and Environment, Czech Academy of Agricultural Sciences, vol. 58(11), pages 495-502.
- Nangare, D.D. & Singh, Yogeshwar & Kumar, P. Suresh & Minhas, P.S., 2016. "Growth, fruit yield and quality of tomato (Lycopersicon esculentum Mill.) as affected by deficit irrigation regulated on phenological basis," Agricultural Water Management, Elsevier, vol. 171(C), pages 73-79.
- Patanè, C. & Cosentino, S.L., 2010. "Effects of soil water deficit on yield and quality of processing tomato under a Mediterranean climate," Agricultural Water Management, Elsevier, vol. 97(1), pages 131-138, January.
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- Aitazaz A. Farooque & Mahnaz Zare & Farhat Abbas & Qamar Zaman & Melanie Bos & Travis Esau & Bishnu Acharya & Arnold W. Schumann, 2019. "Evaluation of DualEM-II sensor for soil moisture content estimation in the potato fields of Atlantic Canada," Plant, Soil and Environment, Czech Academy of Agricultural Sciences, vol. 65(6), pages 290-297.
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Keywords
vegetable crop; water stress; Solanum lycopersicum L.; microorganisms; rainfall;All these keywords.
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