Investigation of the role of TmMYB16/123 and their targets (TmMTP1/11) in the tolerance of Taxus media to cadmium.
Shangguo FengHou KailinHongshan ZhangCheng ChenJiefang HuangQicong WuZhenhao ZhangYadi GaoXiaomei WuHuizhong WangChenjia ShenPublished in: Tree physiology (2023)
The toxicity and stress caused by heavy metal contamination has become an important constraint to the growth and flourishing of trees. In particular, species belonging to the genus Taxus, which are the only natural source for the anti-tumor medicine paclitaxel, are known to be highly sensitive to environmental changes. To investigate the response of Taxus spp. to heavy metal stress, we analyzed the transcriptomic profiles of Taxus media trees exposed to cadmium (Cd2+). In total, six putative genes from the metal tolerance protein (MTP) family were identified in T. media, including two Cd2+ stress inducible TMP genes (TmMTP1 and TmMTP11). Secondary structure analyses predicted that TmMTP1 and TmMTP11, which are members of the Zn-CDF and Mn-CDF subfamilies proteins, respectively, contained six and four classic transmembrane domains, respectively. The introduction of TmMTP1/11 into the ∆ycf1 yeast cadmium-sensitive mutant strain showed that TmMTP1/11 might regulate the accumulation of Cd2+ to yeast cells. To screen the up-stream regulators, partial promoter sequences of the TmMTP1/11 genes were isolated using the chromosome walking method. Several MYB recognition elements were identified in the promoters of these genes. Furthermore, two Cd2+-induced R2R3-MYB TFs, TmMYB16 and TmMYB123, were identified. Both in vitro and in vivo assays confirmed that TmMTB16/123 play a role in Cd2+ tolerance by activating and repressing the expression of TmMTP1/11 genes. The present study elucidated new regulatory mechanisms underlying the response to Cd stress and can contribute to the breeding of Taxus species with high environmental adaptability.
Keyphrases
- heavy metals
- transcription factor
- genome wide
- genome wide identification
- risk assessment
- nk cells
- health risk
- bioinformatics analysis
- dna methylation
- oxidative stress
- induced apoptosis
- poor prognosis
- signaling pathway
- stress induced
- copy number
- mass spectrometry
- heat stress
- saccharomyces cerevisiae
- sewage sludge
- amino acid
- molecularly imprinted
- ionic liquid