scholarly journals Comparative analysis of the SPL gene family in five Rosaceae species: Fragaria vesca, Malus domestica, Prunus persica, Rubus occidentalis, and Pyrus pyrifolia

2021 ◽  
Vol 16 (1) ◽  
pp. 160-171
Author(s):  
Xuwen Jiang ◽  
Peng Chen ◽  
Xiaowen Zhang ◽  
Qizhi Liu ◽  
Heqin Li

Abstract SQUAMOSA promoter-binding protein-like (SPL) transcription factors are very important for the plant growth and development. Here 15 RoSPLs were identified in Rubus occidentalis. The conserved domains and motifs, phylogenetic relationships, posttranscriptional regulation, and physiological function of the 92 SPL family genes in Fragaria vesca, Malus domestica, Prunus persica, R. occidentalis, and Pyrus pyrifolia were analyzed. Sequence alignment and phylogenetic analysis showed the SPL proteins had sequence conservation, some FvSPLs could be lost or developed, and there was a closer relationship between M. domestica and P. pyrifolia, F. vesca and R. occidentalis, respectively. Genes with similar motifs clustering together in the same group had their functional redundancy. Based on the function of SPLs in Arabidopsis thaliana, these SPLs could be involved in vegetative transition from juvenile to adult, morphological change in the reproductive phase, anthocyanin biosynthesis, and defense stress. Forty-eight SPLs had complementary sequences of miR156, of which nine PrpSPLs in P. persica and eight RoSPLs in R. occidentalis as the potential targets of miR156 were reported for the first time, suggesting the conservative regulatory effects of miR156 and indicating the roles of miR156-SPL modules in plant growth, development, and defense response. It provides a basic understanding of SPLs in Rosaceae plants.

2007 ◽  
Vol 30 (2) ◽  
pp. 5-14
Author(s):  
Nasir S. A. Malik ◽  
Joe M. Bradford

2020 ◽  
Vol 9 (10) ◽  
pp. e3409108596
Author(s):  
Letícia Barela Barbosa ◽  
Camila Palma Nunes ◽  
Joice Karina Otênio ◽  
Rosselyn Gimenes Baisch ◽  
Heris Lorenzi dos Santos Perfeito ◽  
...  

This study aims to carry out a bibliographic survey on ethnobotanical, ethnopharmacological and pharmacological information on Rosaceae species. The species addressed were Eriobotrya japonica (yellow-plum), Fragaria vesca (strawberry), Malus domestica (apple), Prunus domestica (plum), Prunus persica (peach), Pyrus communis (pear) and Rubus brasiliensis (raspberry) grown in the garden Medicinal of Universidade Paranaense (UNIPAR) - Campus 2. For this study, the databases were taken from national and international scientific journals without restriction of year of publication. As a result, a category of use was identified, part used, form of preparation, popular use, pharmacological and phytochemical studies for each species. Thus, it is observed that all fruit species are popularly used a medicinal, with records of ethnopharmacological, pharmacological and phytochemical studies. Medicinal plants are very widespread and used, being considered as an important therapeutic resource. However, despite the pharmacological records found, new scientific investigations are still needed to ensure the safer and more effective use of these species by the population.


2012 ◽  
Vol 9 (1) ◽  
pp. 265-278 ◽  
Author(s):  
Ying Zhou ◽  
Dong Guo ◽  
Jing Li ◽  
Jun Cheng ◽  
Hui Zhou ◽  
...  

2019 ◽  
Vol 19 (1) ◽  
Author(s):  
Biruk A. Feyissa ◽  
Muhammad Arshad ◽  
Margaret Y. Gruber ◽  
Susanne E. Kohalmi ◽  
Abdelali Hannoufa

Abstract Background Developing Medicago sativa L. (alfalfa) cultivars tolerant to drought is critical for the crop’s sustainable production. miR156 regulates various plant biological functions by silencing SQUAMOSA-PROMOTER BINDING PROTEIN-LIKE (SPL) transcription factors. Results To understand the mechanism of miR156-modulated drought stress tolerance in alfalfa we used genotypes with altered expression levels of miR156, miR156-regulated SPL13, and DIHYDROFLAVONOL-4-REDUCTASE (DFR) regulating WD40–1. Previously we reported the involvement of miR156 in drought tolerance, but the mechanism and downstream genes involved in this process were not fully studied. Here we illustrate the interplay between miR156/SPL13 and WD40–1/DFR to regulate drought stress by coordinating gene expression with metabolite and physiological strategies. Low to moderate levels of miR156 overexpression suppressed SPL13 and increased WD40–1 to fine-tune DFR expression for enhanced anthocyanin biosynthesis. This, in combination with other accumulated stress mitigating metabolites and physiological responses, improved drought tolerance. We also demonstrated that SPL13 binds in vivo to the DFR promoter to regulate its expression. Conclusions Taken together, our results reveal that moderate relative miR156 transcript levels are sufficient to enhance drought resilience in alfalfa by silencing SPL13 and increasing WD40–1 expression, whereas higher miR156 overexpression results in drought susceptibility.


Molecules ◽  
2013 ◽  
Vol 18 (2) ◽  
pp. 1549-1563 ◽  
Author(s):  
Yulian Liu ◽  
Fei Che ◽  
Lixin Wang ◽  
Rui Meng ◽  
Xiaojun Zhang ◽  
...  

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