Back to Search Start Over

Hydroponic Salinity Screening by Deep Flow Technique on All Paddy Growing Phases

Authors :
N. Nasaruddin
Muhammad Fuad Anshori
Muh. Farid BDR
Hari Iswoyo
Yunus Musa
Muh. Arifuddin
Andi Isti Sakinah
Source :
Agrotech Journal; Vol 6, No 2 (2021): Agrotech Journal; 53-63
Publication Year :
2022
Publisher :
Universitas Sembilanbelas November Kolaka, 2022.

Abstract

Salinity screening under hydroponic Deep Flow Technique (DFT) has not been widely studied, especially on the nature of rice tolerance to salinity stress. According to previous screening studies, this method was effective in distinguishing the nature of rice tolerance to salinity stress. However, they were tested only at generative phase. Therefore, evaluation on screening method with hydroponic DFT at all phases of paddy growth is essential. The objective of this study is to evaluate the filtering under hydroponic DFT at all paddy phase and to determine secondary character that support productivity which can be utilized as selection character in this screening process. The experiment was arranged with a complete nested group design with nested replication is the NaCl stress. There were 5 (Five) tested rice varieties and the stress environment consisted of three levels: 0, 60, and 120 mM of NaCl, all with 3 (three) replications. The nutrient culture screening was adapted to the modified Egdane method. The results showed that screening under hydroponic DFT was effective at the concentration of 60 nM of NaCl. The best selection character was yields per clump, number of productive tillers and total chlorophyll. The variety of Jeliteng, Ciherang and Inpari 34 of Salin Agritan, were classified as tolerant group. This hydroponic DFT Filtering method could be recommended as one salinity screening method for all paddy growing phases

Details

Language :
English
ISSN :
25485121 and 25485148
Database :
OpenAIRE
Journal :
Agrotech Journal
Accession number :
edsair.doi.dedup.....3c8eeb844845e35f87979c32cf391fcd
Full Text :
https://doi.org/10.31327/atj.v6i2