Plant Physiology and Biochemistry2022,Vol.17211.DOI:10.1016/j.plaphy.2022.01.010

Isolation and functional analysis of two CONSTANS-like 1 genes from mango

Guo, Yi-Hang Luo, Cong Liu, Yuan Liang, Rong-Zhen Yu, Hai-Xia Lu, Xin-Xi Mo, Xiao Chen, Shu-Quan He, Xin-Hua
Plant Physiology and Biochemistry2022,Vol.17211.DOI:10.1016/j.plaphy.2022.01.010

Isolation and functional analysis of two CONSTANS-like 1 genes from mango

Guo, Yi-Hang 1Luo, Cong 1Liu, Yuan 1Liang, Rong-Zhen 1Yu, Hai-Xia 1Lu, Xin-Xi 1Mo, Xiao 1Chen, Shu-Quan 1He, Xin-Hua1
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作者信息

  • 1. Guangxi Univ
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Abstract

The CONSTANS-LIKE1 (COL1) gene plays an important role in the regulation of photoperiodic flowering in plants. In this study, two COL1 homolog genes, MiCOL1A and MiCOL1B, were isolated from mango (Mangifera indica L.). The open reading frames of MiCOL1A and MiCOL1B are 852 and 822 bp in length and encode 284 and 274 amino acids, respectively. The MiCOL1A and MiCOL1B proteins contain only one CCT domain and belong to the CO/COL group IV protein family. MiCOL1A and MiCOL1B were expressed both in vegetative and reproductive organs but with expression level differences. MiCOL1A was highly expressed in juvenile and adult leaves, but MiCOL1B was highly expressed in flowers. Seasonal expression analysis showed that MiCOL1A and MiCOL1B have similar expression patterns and higher expression levels during flower induction and flower organ differentiation periods. However, MiCOL1A and MiCOL1B exhibited unstable patterns in circadian expression analysis. MiCOL1A and MiCOL1B were localized in the nucleus and had transcriptional activation activity in yeast. Overexpression of MiCOL1A and MiCOL1B resulted in significantly delayed flowering time in Arabidopsis. Furthermore, we also found that overexpression of MiCOL1A and MiCOL1B enhanced drought tolerance in transgenic Arabidopsis. The results demonstrated that MiCOL1A and MiCOL1B are not only involved in flowering regulation but also play a role in the stress response of plants.

Key words

Mango CONSTANS-LIKE Flowering time/functional analysis drought tolerance/CONSTANS-LIKE GENE/FLOWERING TIME/EXPRESSION ANALYSIS/MOLECULAR-CLONING/PROTEIN/DELAYS/FT/HOMOLOG/DROUGHT/FAMILY

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出版年

2022
Plant Physiology and Biochemistry

Plant Physiology and Biochemistry

SCI
ISSN:0981-9428
被引量9
参考文献量54
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