Chickpea Defensin Gene Family: Promising Candidates for Resistance Against Soil-Borne Chickpea Fungal Pathogens
Defensins are broad-spectrum antimicrobial peptides that play an important role in providing innate immunity to various biotic stresses in plants. We identified and characterized 22 defensin (DEF) and defensin-like (DEFL) genes in chickpea ( Cicer arientinum ) based on their structures, expression,...
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Veröffentlicht in: | Journal of plant growth regulation 2023-10, Vol.42 (10), p.6244-6260 |
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Sprache: | eng |
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Zusammenfassung: | Defensins are broad-spectrum antimicrobial peptides that play an important role in providing innate immunity to various biotic stresses in plants. We identified and characterized 22 defensin (DEF) and defensin-like (DEFL) genes in chickpea (
Cicer arientinum
) based on their structures, expression, chromosomal localization, conserved motifs, and
cis
-regulatory elements. The localization of
DEF
and
DEFL
genes in chickpea genome revealed the presence of at least two clusters that are likely evolved through local gene duplications. Genotype-specific responses of several
CaDEF
and
CaDEFL
genes in fungal bioassays suggested their involvement in defense against fungal pathogens such as hemi-biotrophic
F. oxysporum
f. sp.
ciceris
and dry root rot causing necrotrophic
R. bataticola
. Molecular docking studies revealed interactions of CaDEFs with fungal plasma membrane components such as phosphatidylserine (PS) and glucosylceramide (GluCer) and their binding sites were identified. Our data will be useful to identify potential candidate genes and their role in host-plant resistance in chickpea, besides presenting opportunities for their potential for possible deployment in other crops. |
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ISSN: | 0721-7595 1435-8107 |
DOI: | 10.1007/s00344-022-10811-1 |