Screening of Fe-Deficiency Tolerance in Okra ( Abelmoschus esculentus L.) Through Hydroponic Culture

Screening for Fe deficiency tolerance in okra ( Abelmoschus esculentus ) Bangladeshi genotypes (‘BARI-1’, ‘Local variety’, ‘Orca Onamica’, and ‘Prince’) were studied based on different morphological and physiological parameters. Number of leaves, shoot height and weight were significantly reduced in...

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Bibliographic Details
Published in:Notulae Scientia Biologicae
Main Authors: Motiar RAHMAN, Mohammad S. ISLAM, Ahmad Humayan KABIR, Syed A. HAIDER, Nishit K. PAUL
Format: Article in Journal/Newspaper
Language:English
Published: Society of Land Measurements and Cadastre from Transylvania (SMTCT) 2014
Subjects:
Online Access:https://doi.org/10.15835/nsb.6.3.9352
https://doaj.org/article/fa0a3794c8c24959b8027b0dc1c0f912
Description
Summary:Screening for Fe deficiency tolerance in okra ( Abelmoschus esculentus ) Bangladeshi genotypes (‘BARI-1’, ‘Local variety’, ‘Orca Onamica’, and ‘Prince’) were studied based on different morphological and physiological parameters. Number of leaves, shoot height and weight were significantly reduced in ‘Orca Onamica’ and ‘Prince’, whereas ‘BARI-1’ and ‘Local variety’ did not show prominent decrease in the aforesaid growth parameters under Fe deficiency. Again, ‘Orca Onamica’ and ‘Prince’ showed significantly decreased root length and root biomass under Fe deficiency. In contrast, these parameters were unchangeable in ‘BARI’-1 and ‘Local variety’ in Fe shortage compared to controls. Furthermore, Fe deficiency caused severe decrease in chlorophyll ( a and b ) and Fe concentrations in leaves of ‘Orca Onamica’ and ‘Prince’ grown on hydroponic culture. In contrast, chlorophyll ( a and b ) and Fe concentrations were not significantly decreased in ‘BARI-1’ and ‘Local variety’ due to Fe deficiency. Based on these findings, tolerance to Fe deficiency in these okra cultivars can be categorized as: tolerant (‘BARI-1’ and ‘Local’), and sensitive (‘Orca Onamica’ and ‘Prince’). The ranking can be applied in plant breeding program and may have great advantage over conventional methods. This study also demonstrates the effectiveness of hydroponic culture as an efficient method to screen Fe-efficient crop plants.