An Jian-Ping, Li Rui, Qu Feng-Jia, You Chun-Xiang, Wang Xiao-Fei, Hao Yu-Jin
National Key Laboratory of Crop Biology, National Research Center for Apple Engineering and Technology, College of Horticulture Science and Engineering, Shandong Agricultural University Tai'an, China.
Front Plant Sci. 2016 Nov 17;7:1685. doi: 10.3389/fpls.2016.01685. eCollection 2016.
MAX2 (MORE AXILLARY GROWTH2) is involved in diverse physiological processes, including photomorphogenesis, the abiotic stress response, as well as karrikin and strigolactone signaling-mediated shoot branching. In this study, MdMAX2, an F-box protein that is a homolog of MAX2, was identified and characterized. Overexpression of in apple calli enhanced the accumulation of anthocyanin. Ectopic expression of in exhibited photomorphogenesis phenotypes, including increased anthocyanin content and decreased hypocotyl length. Further study indicated that MdMAX2 might promote plant photomorphogenesis by affecting the auxin signaling as well as other plant hormones. Transcripts of were noticeably up-regulated in response to NaCl and Mannitol treatments. Moreover, compared with the wild-type, the -overexpressing apple calli and exhibited increased tolerance to salt and drought stresses. Taken together, these results suggest that MdMAX2 plays a positive regulatory role in plant photomorphogenesis and stress response.
MAX2(更多腋生生长2)参与多种生理过程,包括光形态建成、非生物胁迫响应以及卡里金和独脚金内酯信号介导的枝条分枝。在本研究中,鉴定并表征了MdMAX2,它是一种F-box蛋白,是MAX2的同源物。在苹果愈伤组织中过表达MdMAX2可增强花青素的积累。在拟南芥中异位表达MdMAX2表现出光形态建成表型,包括花青素含量增加和下胚轴长度缩短。进一步研究表明,MdMAX2可能通过影响生长素信号以及其他植物激素来促进植物光形态建成。MdMAX2的转录本在NaCl和甘露醇处理下显著上调。此外,与野生型相比,过表达MdMAX2的苹果愈伤组织和拟南芥对盐胁迫和干旱胁迫的耐受性增强。综上所述,这些结果表明MdMAX2在植物光形态建成和胁迫响应中起正向调节作用。