Biochemistry Research Laboratory (Rm 216), Department of Life Sciences, The University of the West Indies, St. Augustine, Trinidad and Tobago.
ScienceVisions Inc., Brookings, South Dakota, United States of America.
PLoS One. 2023 Nov 3;18(11):e0288481. doi: 10.1371/journal.pone.0288481. eCollection 2023.
Abscisic acid (ABA) signaling in plants is essential to several aspects of plant development, such as tolerance to environmental stresses and growth. ABA signaling is also important for storage organ formation in crops, such as sweet potato. However, the repertoire of I. batatas ABA signaling gene families has not yet been fully characterized, so that it is unclear which members of these families are necessary for tuberization. Therefore, genome-wide identification of the sweet potato ABF/ AREB/ ABI5, SnRK2, and PYL gene families was performed, along with phylogenetic, motif, cis-regulatory element (CRE), and expression analyses. Nine ABF, eight SnRK2, and eleven PYL gene family members were identified, and there was high sequence conservation among these proteins that were revealed by phylogenetic and motif analyses. The promoter sequences of these genes had multiple CREs that were involved in hormone responses and stress responses. In silico and qRT-PCR expression analyses revealed that these genes were expressed in various tissues and that IbABF3, IbABF4, IbDPBF3, IbDPBF4, IbPYL4, IbSnRK2.1, and IbSnRK2.2 were significantly expressed during storage root development. These results are an important reference that can be used for functional validation studies to better understand how ABA signaling elicits storage root formation at the molecular level.
脱落酸(ABA)信号在植物的多个方面都很重要,如对环境胁迫和生长的耐受性。ABA 信号在作物如甘薯的储存器官形成中也很重要。然而,甘薯 ABA 信号基因家族的全部内容尚未得到充分描述,因此尚不清楚这些家族的哪些成员对块茎形成是必要的。因此,进行了甘薯 ABF/ AREB/ ABI5、SnRK2 和 PYL 基因家族的全基因组鉴定,同时进行了系统发育、基序、顺式调控元件(CRE)和表达分析。鉴定出了 9 个 ABF、8 个 SnRK2 和 11 个 PYL 基因家族成员,这些蛋白的系统发育和基序分析表明它们具有高度的序列保守性。这些基因的启动子序列具有多个 CRE,参与激素反应和应激反应。计算机分析和 qRT-PCR 表达分析表明,这些基因在各种组织中表达,并且 IbABF3、IbABF4、IbDPBF3、IbDPBF4、IbPYL4、IbSnRK2.1 和 IbSnRK2.2 在储存根发育过程中表达显著。这些结果是一个重要的参考,可以用于功能验证研究,以更好地理解 ABA 信号如何在分子水平上引发储存根形成。