Molecular elucidation for the variance of organic acid profile between citrus top and bottom canopy fruits

被引:8
作者
Alam, Shariq Mahmood [1 ]
Liu, Dong-Hai [1 ]
Liu, Yong-Zhong [1 ]
Han, Han [1 ]
Hussain, Syed Bilal [1 ]
Ateeq, Muhammad [1 ]
机构
[1] Huazhong Agr Univ, Coll Hort & Forestry Sci, Key Lab Hort Plant Biol, Wuhan 430070, Peoples R China
关键词
Citrus fruit; Canopy position; Citric acid; Malic acid; Proton pump; CITRATE ACCUMULATION; MALATE ACCUMULATION; GENE-EXPRESSION; QUALITY; INVOLVEMENT;
D O I
10.1016/j.scienta.2022.111181
中图分类号
S6 [园艺];
学科分类号
0902 ;
摘要
Organic acids are key metabolites for diverse fruit flavoring and vital for fruit quality measures. Their contents are significantly varied regarding the canopy position. However, the underlying mechanism is still unclear. In this study by using Citrus raticulata cv. Bendizao as research material, a significant 2-fold increase in citrate content and a 2-fold decrease in malate content were noticed in bottom-canopy fruits subjected to less light and low temperature compared to top-canopy fruits. Moreover, transcript levels of genes like citrate synthase (CS1), aconitate hydratase genes (ACO1 and ACO2), NAD-dependent malic enzyme gene (NAD-ME) and malate dehydrogenase genes (MDH1 and MDH2) were significantly higher, while transcript levels of other genes such as citrate utilization genes (ACL2, ACL3 and ACO3), malate synthase gene (MS) and cytosolic NAD-dependent malate dehydrogenase gene (cytNAD-MDH) were significantly lower in bottom-canopy fruits compared to top canopy fruits. Additionally, transcript levels of proton pump genes (CsPHs and VHA), two transporter genes (MATE and ALMT9), and four transcription factor genes (MYB73, Noemi, MYC-N, and bHLH) were significantly higher, while mRNA levels of two transcription factor genes (MYB10 and WRKY14) and transporter genes (CsCit1 and ALMT9-like) were significantly lower in bottom-canopy fruits than those in top-canopy fruits. Taken together, the variance of organic acid profiles in the canopy could be attributed to the microclimate change, which comprehensively influences the organic acid accumulation-related genes' transcript levels; reduced malate accumulation in bottom-canopy fruits is mainly due to the minimal expression of MS and cytNAD-MDH, and high expression of malate utilization genes (MDH and NAD-ME), while the higher citrate content in the bottom-canopy fruits is probably due to the enhanced vacuolar storage through increasing vacuolar proton pump genes and MATE transcript levels, and the minimal citrate degradation and efflux through decreasing ACL2, ACL3, ACO3 and CsCit1 transcript levels.
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页数:7
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共 39 条
[1]   Metabolic signatures of the true physiological impact of canopy light environment on peach fruit quality [J].
Anthony, Brendon M. ;
Chaparro, Jacqueline M. ;
Sterle, David G. ;
Prenni, Jessica E. ;
Minas, Ioannis S. .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2021, 191
[2]   Simultaneous determination of soluble sugars and organic acids as their trimethylsilyl derivatives in apricot fruits by gas-liquid chromatography [J].
Bartolozzi, F ;
Bertazza, G ;
Bassi, D ;
Cristoferi, G .
JOURNAL OF CHROMATOGRAPHY A, 1997, 758 (01) :99-107
[3]   Manipulating the taste-related composition of strawberry fruits (Fragaria x ananassa) from different cultivars using deficit irrigation [J].
Bordonaba, J. Gine ;
Terry, L. A. .
FOOD CHEMISTRY, 2010, 122 (04) :1020-1026
[4]   Noemi Controls Production of Flavonoid Pigments and Fruit Acidity and Illustrates the Domestication Routes of Modern Citrus Varieties [J].
Butelli, Eugenio ;
Licciardello, Concetta ;
Ramadugu, Chandrika ;
Durand-Hulak, Marie ;
Celant, Alessandra ;
Recupero, Giuseppe Reforgiato ;
Froelicher, Yann ;
Martin, Cathie .
CURRENT BIOLOGY, 2019, 29 (01) :158-+
[5]   Effect of hot air treatment on organic acid- and sugar-metabolism in Ponkan (Citrus reticulata) fruit [J].
Chen, Ming ;
Jiang, Qian ;
Yin, Xue-Ren ;
Lin, Qiong ;
Chen, Jin-Yin ;
Allan, Andrew C. ;
Xu, Chang-Jie ;
Chen, Kun-Song .
SCIENTIA HORTICULTURAE, 2012, 147 :118-125
[6]   The vacuolar channel VvALMT9 mediates malate and tartrate accumulation in berries of Vitis vinifera [J].
De Angeli, Alexis ;
Baetz, Ulrike ;
Francisco, Rita ;
Zhang, Jingbo ;
Chaves, Maria Manuela ;
Regalado, Ana .
PLANTA, 2013, 238 (02) :283-291
[7]   Inhibition of aconitase in citrus fruit callus results in a metabolic shift towards amino acid biosynthesis [J].
Degu, Asfaw ;
Hatew, Bayissa ;
Nunes-Nesi, Adriano ;
Shlizerman, Ludmila ;
Zur, Naftali ;
Katz, Ehud ;
Fernie, Alisdair R. ;
Blumwald, Eduardo ;
Sadka, Avi .
PLANTA, 2011, 234 (03) :501-513
[8]   What controls fleshy fruit acidity? A review of malate and citrate accumulation in fruit cells [J].
Etienne, A. ;
Genard, M. ;
Lobit, P. ;
Mbeguie-A-Mbeguie, D. ;
Bugaud, C. .
JOURNAL OF EXPERIMENTAL BOTANY, 2013, 64 (06) :1451-1469
[9]   Effects of location within the tree canopy on carbohydrates, organic acids, amino acids and phenolic compounds in the fruit peel and flesh from three apple (Malus X domestica) cultivars [J].
Feng, Fengjuan ;
Li, Mingjun ;
Ma, Fengwang ;
Cheng, Lailiang .
HORTICULTURE RESEARCH, 2014, 1
[10]   Citrate Accumulation-Related Gene Expression and/or Enzyme Activity Analysis Combined With Metabolomics Provide a Novel Insight for an Orange Mutant [J].
Guo, Ling-Xia ;
Shi, Cai-Yun ;
Liu, Xiao ;
Ning, Dong-Yuan ;
Jing, Long-Fei ;
Yang, Huan ;
Liu, Yong-Zhong .
SCIENTIFIC REPORTS, 2016, 6