Salas-Muñoz Silvia, Rodríguez-Hernández Aída A, Ortega-Amaro Maria A, Salazar-Badillo Fatima B, Jiménez-Bremont Juan F
Laboratorio de Biotecnología Molecular de Plantas, División de Biología Molecular, Instituto Potosino de Investigación Científica y Tecnológica San Luis Potosí, México.
Front Plant Sci. 2016 Feb 25;7:220. doi: 10.3389/fpls.2016.00220. eCollection 2016.
DnaJ proteins are essential co-chaperones involved in abiotic and biotic stress responses. Arabidopsis AtDjA3 gene encodes a molecular co-chaperone of 420 amino acids, which belongs to the J-protein family. In this study, we report the functional characterization of the AtDjA3 gene using the Arabidopsis knockout line designated j3 and the 35S::AtDjA3 overexpression lines. Loss of AtDjA3 function was associated with small seed production. In fact, j3 mutant seeds showed a reduction of 24% in seed weight compared to Col-0 seeds. Expression analysis showed that the AtDjA3 gene was modulated in response to NaCl, glucose, and abscisic acid (ABA). The j3 line had increased sensitivity to NaCl and glucose treatments in the germination and cotyledon development in comparison to parental Col-0. Furthermore, the j3 mutant line exhibited higher ABA sensitivity in comparison to parental Col-0 and 35S::AtDjA3 overexpression lines. In addition, we examined the expression of ABI3 gene, which is a central regulator in ABA signaling, in j3 mutant and 35S::AtDjA3 overexpression lines. Under 5 μM ABA treatment at 24 h, j3 mutant seedlings displayed higher ABI3 expression, whereas in 35S::AtDjA3 overexpression lines, ABI3 gene expression was repressed. Taken together, these results demonstrate that the AtDjA3 gene is involved in seed development and abiotic stress tolerance.
DnaJ蛋白是参与非生物和生物胁迫反应的重要共伴侣蛋白。拟南芥AtDjA3基因编码一个由420个氨基酸组成的分子共伴侣蛋白,属于J蛋白家族。在本研究中,我们利用拟南芥敲除系j3和35S::AtDjA3过表达系报道了AtDjA3基因的功能特性。AtDjA3功能的丧失与种子产量低有关。事实上,与Col-0种子相比,j3突变体种子的重量减少了24%。表达分析表明,AtDjA3基因的表达受NaCl、葡萄糖和脱落酸(ABA)的调控。与亲本Col-0相比,j3系在发芽和子叶发育过程中对NaCl和葡萄糖处理的敏感性增加。此外,与亲本Col-0和35S::AtDjA3过表达系相比,j3突变体系对ABA的敏感性更高。此外,我们检测了ABA信号通路中的核心调节因子ABI3基因在j3突变体和35S::AtDjA3过表达系中的表达。在24小时5μM ABA处理下,j3突变体幼苗显示出较高的ABI3表达,而在35S::AtDjA3过表达系中,ABI3基因表达受到抑制。综上所述,这些结果表明AtDjA3基因参与种子发育和非生物胁迫耐受性。