Soil salinity is one of the main challenges that modern agriculture faces. Avocado, which is classified as a glycophyte, is very sensitive to salt stress. There are botanical varieties of avocado that differ in their salt tolerance. This study investigated how salt stress affects the in vitro germination of two avocado botanical varieties americana (West Indian breed) and drymifolia (Mexican native) with different salt tolerances. This study also assessed the potential role of the avocado PaHAK2 high-affinity K(+) transporter HAK/KUP/KT in response to saline stress during germination. Salinity (60 mM NaCl) delayed the germination speed of the drymifolia variety relative to the americana variety. A computational 3D inference protein model of the PaHAK2 protein showed 10 highly conserved transmembrane domains. During the imbibition period, there was a differential increase in the expression of the PaHAK2 gene at 60 mM NaCl in both varieties, which suggests the presence of osmotic adjustment and regulation. The enhanced expression of PaHAK2 in the americana variety suggests an adaptive advantage to salinity. We conclude that PaHAK2 participates in the response of avocado to salt stress during seed germination.
Characterization of the PaHAK Gene and Its Expression During the In Vitro Seed Germination of Two Botanical Avocado Varieties Under Saline Stress.
盐胁迫下两种植物鳄梨品种体外种子萌发过程中 PaHAK 基因的特征及其表达
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作者:Elekou Essoh Aimé Cesaire, Suárez-RodrÃguez Luis MarÃa, Gómez-Romero Mariela, Bayuelo-Jiménez Jannette Sofia, Belver Andrés, DÃaz-Pérez Juan Carlos, López-Gómez Rodolfo
| 期刊: | Life-Basel | 影响因子: | 3.400 |
| 时间: | 2024 | 起止号: | 2024 Dec 18; 14(12):1680 |
| doi: | 10.3390/life14121680 | 研究方向: | 其它 |
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