The SoNAP gene from sugarcane (Saccharum officinarum) encodes a senescence-associated NAC transcription factor involved in response to osmotic and salt stress

被引:0
作者
Evelyn A. Carrillo-Bermejo
Samuel David Gamboa-Tuz
Alejandro Pereira-Santana
Miguel A. Keb-Llanes
Enrique Castaño
Luis Joel Figueroa-Yañez
Luis C. Rodriguez-Zapata
机构
[1] Centro de Investigacion Cientifica de Yucatan,Biotechnology Unit
[2] Centro de Investigacion Cientifica de Yucatan,Plant Biochemistry and Molecular Biology Unit
[3] Centro de Investigacion y Asistencia en Tecnologia y Diseño del Estado de Jalisco,Industrial Biotechnology Unit
[4] Consejo Nacional de Ciencia y Tecnologia,Direccion de Catedras
来源
Journal of Plant Research | 2020年 / 133卷
关键词
Abiotic stress; Drought; NAC; Phylogenetic analysis; Salinity; Sugarcane;
D O I
暂无
中图分类号
学科分类号
摘要
Climate change has caused serious problems related to the productivity of agricultural crops directly affecting human well-being. Plants have evolved to produce molecular mechanisms in response to environmental stresses, such as transcription factors (TFs), to cope with abiotic stress. The NAC proteins constitute a plant-specific family of TFs involved in plant development processes and tolerance to biotic and abiotic stress. Sugarcane is a perennial grass that accumulates a large amount of sucrose and is a crucial agro-industry crop in tropical regions. Our previous transcriptome analyses on sugarcane that were exposed to drought conditions revealed significant increases in the expression of several NAC TFs through all of the time-point stress conditions. In this work, we characterize all previously detected sugarcane NAC genes, utilizing phylogenetics and expression analyses. Furthermore, we characterized a sugarcane NAC gene orthologous to the senescence-associated genes AtNAP and OsNAP via transient expression in tobacco calluses, from Arabidopsis and rice respectively, thus we named it the SoNAP gene. Transient localization assays on onion epidermal cells confirmed the nuclear localization of the SoNAP. Expression analysis showed that the SoNAP gene was induced by high salinity, drought, and abscisic acid treatments. The overexpression of the SoNAP gene in tobacco calluses caused a senescence associated phenotype. Overall, our results indicated that the SoNAP gene from sugarcane is transcriptionally induced under abiotic stress conditions and conserved the predicted senescence-associated functions when it was overexpressed in a heterologous plant model. This work provides key insights about the senescence mechanisms related to abiotic stress and it provides a benchmark for future work on the improvement of this economically important crop.
引用
收藏
页码:897 / 909
页数:12
相关论文
共 195 条
  • [11] Carvalho FMS(2004)MUSCLE: multiple sequence alignment with high accuracy and high throughput Nucleic Acids Res 10 5-9
  • [12] Telles BR(2015)OrthoFinder: solving fundamental biases in whole genome comparisons dramatically improves orthogroup inference accuracy Genome Biol 8 1-18
  • [13] Capella-Gutiérrez S(2006)Growth, proline and ion accumulation in sugarcane callus cultures under drought-induced osmotic stress and its subsequent relief Afr J Biotechnol 42 222-230
  • [14] Silla-Martínez JM(2015)Climate change and sugarcane production: potential impact and mitigation strategies PLoS ONE 6 1-13
  • [15] Gabaldón T(2017)Sugarcane water stress tolerance mechanisms and its implications on developing biotechnology solutions Front Plant Sci 40 1178-1186
  • [16] Carillo P(2014)Pfam: The protein families database Nucleic Acids Res 32 2847-2849
  • [17] Mastrolonardo G(2015)MicroRNAs and drought responses in sugarcane Front Plant Sci 46 601-612
  • [18] Nacca F(2012)Phytozome: a comparative platform for green plant genomics Nucleic Acids Res 44 903-916
  • [19] Chaves MM(2016)Complex heatmaps reveal patterns and correlations in multidimensional genomic data Bioinformatics 6 271-282
  • [20] Oliveira MM(2006)AtNAP, a NAC family transcription factor, has an important role in leaf senescence Plant J 193–194 18-27