Guangdong Provincial Key Laboratory of Biotechnology for Plant Development, College of Life Sciences, South China Normal University, Guangzhou 510631, China.
Int J Mol Sci. 2021 Mar 25;22(7):3398. doi: 10.3390/ijms22073398.
abscisic acid transporter like-1 (AhATL1) modulates abscisic acid (ABA) sensitivity by specifically influencing the importing of ABA into cells, and is a key player in plant stress responses. However, there is limited information on ABA transporters in crops. In this study, we found that the level of expression and AhATL1 distribution increased more rapidly in the second drought (D2) compared with in the first drought (D1). Compared with the first recovery (R1), the expression level and ABA content remained at a higher level during the second recovery (R2). The heterologous overexpression of in changed the expression pattern of certain memory genes and changed the post response gene type into the memory gene type. Regarding the proline and water content of Col ( L. Heynh., Col-0), and AhATL1-OX during drought training, the second drought (D2) was more severe than the first drought (D1), which was more conducive to maintaining the cell osmotic balance and resisting drought. In summary, drought stress memory resulted in a rapid increase in the expression and AhATL1 distribution level, and then raised the endogenous ABA content and changed the post response gene type into the memory gene type, which enhanced the drought resistance and recovery ability.
脱落酸转运蛋白样 1(AhATL1)通过特异性影响 ABA 进入细胞来调节 ABA 敏感性,是植物应激反应的关键因子。然而,关于作物中的 ABA 转运蛋白的信息有限。在本研究中,我们发现与第一次干旱(D1)相比,第二次干旱(D2)中表达和 AhATL1 分布的水平增加得更快。与第一次恢复(R1)相比,第二次恢复(R2)期间表达水平和 ABA 含量仍保持在较高水平。在 Col( L. Heynh., Col-0)中异源过表达 改变了某些记忆基因的表达模式,并将后反应基因类型改变为记忆基因类型。关于脯氨酸和水含量在干旱训练中,与 Col-0 相比,第二次干旱(D2)比第一次干旱(D1)更严重,这更有利于维持细胞渗透平衡并抵抗干旱。总之,干旱胁迫记忆导致 表达和 AhATL1 分布水平的快速增加,然后提高内源 ABA 含量并将后反应基因类型改变为记忆基因类型,从而增强了抗旱性和恢复能力。