College of Tobacco Science, Henan Agricultural University, Zhengzhou, 450002, China.
Technology Center, China Tobacco Henan Industrial Co., Ltd, Zhengzhou, 450000, China.
BMC Plant Biol. 2019 Oct 24;19(1):444. doi: 10.1186/s12870-019-2023-4.
The plant-specific homeodomain-leucine zipper class IV (HD-ZIP IV) gene family has been involved in the regulation of epidermal development.
Fifteen genes coding for HD-ZIP IV proteins were identified (NtHD-ZIP-IV-1 to NtHD-ZIP-IV-15) based on the genome of N. tabacum. Four major domains (HD, ZIP, SAD and START) were present in these proteins. Tissue expression pattern analysis indicated that NtHD-ZIP-IV-1, - 2, - 3, - 10, and - 12 may be associated with trichome development; NtHD-ZIP-IV-8 was expressed only in cotyledons; NtHD-ZIP-IV-9 only in the leaf and stem epidermis; NtHD-ZIP-IV-11 only in leaves; and NtHD-ZIP-IV-15 only in the root and stem epidermis. We found that jasmonates may induce the generation of glandular trichomes, and that NtHD-ZIP-IV-1, - 2, - 5, and - 7 were response to MeJA treatment. Dynamic expression under abiotic stress and after application of phytohormones indicated that most NtHD-ZIP IV genes were induced by heat, cold, salt and drought. Furthermore, most of these genes were induced by gibberellic acid, 6-benzylaminopurine, and salicylic acid, but were inhibited by abscisic acid. NtHD-ZIP IV genes were sensitive to heat, but insensitive to osmotic stress.
NtHD-ZIP IV genes are implicated in a complex regulatory gene network controlling epidermal development and abiotic stress responses. The present study provides evidence to elucidate the gene functions of NtHD-ZIP IVs during epidermal development and stress response.
植物特有的同源域亮氨酸拉链 IV 类(HD-ZIP IV)基因家族参与了表皮发育的调控。
根据烟草基因组,鉴定出 15 个编码 HD-ZIP IV 蛋白的基因(NtHD-ZIP-IV-1 至 NtHD-ZIP-IV-15)。这些蛋白中存在四个主要结构域(HD、ZIP、SAD 和 START)。组织表达模式分析表明,NtHD-ZIP-IV-1、-2、-3、-10 和-12 可能与毛状体发育有关;NtHD-ZIP-IV-8 仅在子叶中表达;NtHD-ZIP-IV-9 仅在叶片和茎表皮中表达;NtHD-ZIP-IV-11 仅在叶片中表达;NtHD-ZIP-IV-15 仅在根和茎表皮中表达。我们发现茉莉酸可能诱导腺毛的产生,并且 NtHD-ZIP-IV-1、-2、-5 和-7 对 MeJA 处理有反应。非生物胁迫和植物激素处理下的动态表达表明,大多数 NtHD-ZIP IV 基因受到热、冷、盐和干旱的诱导。此外,这些基因中的大多数受到赤霉素、6-苄基氨基嘌呤和水杨酸的诱导,但受到脱落酸的抑制。NtHD-ZIP IV 基因对热敏感,但对渗透胁迫不敏感。
NtHD-ZIP IV 基因参与了一个复杂的调控基因网络,该网络控制表皮发育和非生物胁迫反应。本研究为阐明 NtHD-ZIP IV 在表皮发育和应激反应过程中的基因功能提供了证据。