Omics studies of citrus, grape and rosaceae fruit trees.

Katsuhiro Shiratake, Mami Suzuki
Author Information
  1. Katsuhiro Shiratake: Graduate School of Bioagricultural Sciences, Nagoya University , Chikusa, Nagoya, Aichi 464-8601 , Japan.
  2. Mami Suzuki: Graduate School of Bioagricultural Sciences, Nagoya University , Chikusa, Nagoya, Aichi 464-8601 , Japan.

Abstract

Recent advance of bioinformatics and analytical apparatuses such as next generation DNA sequencer (NGS) and mass spectrometer (MS) has brought a big wave of comprehensive study to biology. Comprehensive study targeting all genes, transcripts (RNAs), proteins, metabolites, hormones, ions or phenotypes is called genomics, transcriptomics, proteomics, metabolomics, hormonomics, ionomics or phenomics, respectively. These omics are powerful approaches to identify key genes for important traits, to clarify events of physiological mechanisms and to reveal unknown metabolic pathways in crops. Recently, the use of omics approach has increased dramatically in fruit tree research. Although the most reported omics studies on fruit trees are transcriptomics, proteomics and metabolomics, and a few is reported on hormonomics and ionomics. In this article, we reviewed recent omics studies of major fruit trees, i.e. citrus, grapevine and rosaceae fruit trees. The effectiveness and prospects of omics in fruit tree research will as well be highlighted.

Keywords

References

  1. Physiol Plant. 2014 Feb;150(2):252-70 [PMID: 23786612]
  2. BMC Plant Biol. 2011 Nov 18;11:165 [PMID: 22098939]
  3. J Proteomics. 2015 Jan 15;113:206-25 [PMID: 25301534]
  4. J Plant Physiol. 2013 May 15;170(8):748-57 [PMID: 23499453]
  5. BMC Genomics. 2014 Oct 13;15:892 [PMID: 25308090]
  6. Plant Cell Environ. 2013 Mar;36(3):640-54 [PMID: 22913613]
  7. Plant Sci. 2014 Dec;229:215-24 [PMID: 25443848]
  8. Food Chem. 2013 Jan 1;136(1):178-85 [PMID: 23017410]
  9. BMC Plant Biol. 2011 Jan 10;11:7 [PMID: 21219654]
  10. Protein J. 2011 Mar;30(3):194-200 [PMID: 21409615]
  11. BMC Plant Biol. 2011 Oct 17;11:138 [PMID: 22003957]
  12. Mol Plant Pathol. 2015 Feb;16(2):164-76 [PMID: 24989162]
  13. BMC Genomics. 2013 Jan 17;14:38 [PMID: 23327683]
  14. PLoS One. 2014 Oct 14;9(10 ):e109777 [PMID: 25314001]
  15. J Agric Food Chem. 2014 Jul 16;62(28):6585-91 [PMID: 24959841]
  16. BMC Genomics. 2015 Feb 25;16:128 [PMID: 25888129]
  17. BMC Genomics. 2014 Dec 11;15:1088 [PMID: 25495145]
  18. PLoS One. 2015 Jun 05;10(6):e0126973 [PMID: 26046530]
  19. J Integr Plant Biol. 2013 Nov;55(11):1038-53 [PMID: 23758915]
  20. J Agric Food Chem. 2015 Aug 5;63(30):6823-34 [PMID: 26158394]
  21. Plant Physiol Biochem. 2015 Mar;88:17-26 [PMID: 25602440]
  22. Gene. 2014 Jan 15;534(1):78-87 [PMID: 24140126]
  23. PLoS One. 2013 Sep 25;8(9):e74256 [PMID: 24086326]
  24. BMC Plant Biol. 2014 Nov 28;14:328 [PMID: 25430515]
  25. J Chromatogr A. 2012 Aug 17;1251:208-18 [PMID: 22771060]
  26. J Chromatogr A. 2011 Jul 15;1218(28):4517-24 [PMID: 21641602]
  27. PLoS One. 2015 Jul 24;10(7):e0130950 [PMID: 26207751]
  28. Gene. 2012 Nov 15;510(1):47-58 [PMID: 22922390]
  29. Mol Plant. 2011 Nov;4(6):1038-51 [PMID: 21498622]
  30. Plant Sci. 2013 Jul;208:50-7 [PMID: 23683929]
  31. Proteomics. 2013 Jun;13(12-13):1871-84 [PMID: 23986917]
  32. Int J Mol Sci. 2014 Mar 10;15(3):4237-54 [PMID: 24619195]
  33. PLoS One. 2013;8(3):e58740 [PMID: 23516547]
  34. BMC Genomics. 2015 Mar 31;16:253 [PMID: 25887480]
  35. Plant Cell. 2012 Sep;24(9):3489-505 [PMID: 22948079]
  36. Plant Physiol Biochem. 2012 Apr;53:69-76 [PMID: 22326359]
  37. PLoS One. 2012;7(6):e39547 [PMID: 22768087]
  38. Plant Physiol Biochem. 2013 Dec;73:41-55 [PMID: 24056126]
  39. J Exp Bot. 2011 May;62(8):2507-19 [PMID: 21273338]
  40. BMC Plant Biol. 2013 Apr 11;13:59 [PMID: 23578104]
  41. Plant Sci. 2014 Jul;224:120-35 [PMID: 24908513]
  42. BMC Plant Biol. 2014 Dec 19;14:370 [PMID: 25524329]
  43. Virol J. 2013 May 28;10:164 [PMID: 23710752]
  44. Plant Cell Physiol. 2013 Jul;54(7):1200-16 [PMID: 23659918]
  45. J Proteomics. 2013 Jan 14;78:39-57 [PMID: 23178875]
  46. Plant Cell Physiol. 2016 Mar;57(3):505-18 [PMID: 26755692]
  47. J Proteome Res. 2013 Mar 1;12(3):1162-72 [PMID: 23320467]
  48. BMC Plant Biol. 2012 Oct 05;12:181 [PMID: 23035802]
  49. PLoS One. 2012;7(12):e51052 [PMID: 23236430]
  50. Plant Sci. 2011 Oct;181(4):485-95 [PMID: 21889056]
  51. BMC Genomics. 2012 Sep 15;13:481 [PMID: 22978558]
  52. Appl Biochem Biotechnol. 2012 Sep;168(2):306-26 [PMID: 22733236]
  53. Plant Mol Biol. 2011 Oct;77(3):261-74 [PMID: 21786204]
  54. Eur J Nutr. 2013 Mar;52(2):833-46 [PMID: 22699306]
  55. J Insect Physiol. 2016 Jan;84:114-27 [PMID: 26068004]
  56. Anal Chim Acta. 2013 May 13;777:41-8 [PMID: 23622963]
  57. J Plant Physiol. 2012 Nov 15;169(17):1776-88 [PMID: 23036314]
  58. PLoS One. 2014 Mar 17;9(3):e92339 [PMID: 24637773]
  59. Plant Mol Biol. 2013 Feb;81(3):211-20 [PMID: 23306528]
  60. J Exp Bot. 2015 Sep;66(19):5739-52 [PMID: 26038306]
  61. J Proteomics. 2011 Jun 10;74(7):1135-49 [PMID: 21550427]
  62. J Exp Bot. 2012 Oct;63(17):6237-51 [PMID: 23105132]
  63. PLoS One. 2014 Dec 31;9(12 ):e116056 [PMID: 25551568]
  64. BMC Genomics. 2012 Dec 12;13:700 [PMID: 23234335]
  65. BMC Plant Biol. 2011 Aug 12;11:114 [PMID: 21838877]
  66. J Agric Food Chem. 2011 Apr 27;59(8):3819-27 [PMID: 21401120]
  67. BMC Plant Biol. 2014 May 07;14:123 [PMID: 24885979]
  68. J Plant Physiol. 2010 Mar 1;167(4):301-10 [PMID: 19864041]
  69. PLoS One. 2013;8(1):e54196 [PMID: 23342103]
  70. BMC Genomics. 2012 Jan 10;13:10 [PMID: 22230690]
  71. PLoS One. 2015 Jul 13;10(7):e0131408 [PMID: 26168247]
  72. Heredity (Edinb). 2010 Sep;105(3):299-308 [PMID: 19953121]
  73. PLoS One. 2014 Aug 26;9(8):e105959 [PMID: 25158067]
  74. Plant Cell Physiol. 2013 Jul;54(7):1132-51 [PMID: 23624675]
  75. BMC Genomics. 2015 Mar 26;16:245 [PMID: 25887353]
  76. PLoS One. 2012;7(6):e38992 [PMID: 22761719]
  77. Gene. 2015 Jan 1;554(1):64-74 [PMID: 25455100]
  78. PLoS One. 2015 Jun 18;10(6):e0122233 [PMID: 26086845]
  79. Front Plant Sci. 2013 Nov 12;4:449 [PMID: 24273548]
  80. J Exp Bot. 2015 Apr;66(7):1769-85 [PMID: 25675955]
  81. PLoS One. 2014 Apr 15;9(4):e95239 [PMID: 24736405]
  82. PLoS One. 2012;7(8):e43760 [PMID: 22952759]
  83. J Proteome Res. 2012 Jan 1;11(1):461-75 [PMID: 22050466]
  84. BMC Plant Biol. 2014 Jul 26;14:188 [PMID: 25064275]
  85. Plant Sci. 2015 Jul;236:44-60 [PMID: 26025520]
  86. Plant Physiol. 2011 Dec;157(4):1696-710 [PMID: 22021422]
  87. Int J Mol Sci. 2014 May 30;15(6):9644-69 [PMID: 24886812]
  88. Proteomics. 2015 Sep;15(17):3048-60 [PMID: 25959233]
  89. J Plant Physiol. 2015 Apr 15;178:43-54 [PMID: 25765362]
  90. J Agric Food Chem. 2011 Feb 9;59(3):793-802 [PMID: 21226517]
  91. Physiol Plant. 2014 Apr;150(4):565-79 [PMID: 24117905]
  92. Plant Cell. 2013 Dec;25(12):4777-88 [PMID: 24319081]
  93. Proc Natl Acad Sci U S A. 2013 Oct 8;110(41):16663-8 [PMID: 24067657]
  94. J Proteome Res. 2013 Feb 1;12(2):785-95 [PMID: 23244174]
  95. Plant Physiol Biochem. 2015 Oct;95:1-14 [PMID: 26151858]
  96. Methods Mol Biol. 2014;1153:203-12 [PMID: 24777799]
  97. J Exp Bot. 2014 Nov;65(20):5975-88 [PMID: 25180109]
  98. PLoS One. 2014 Mar 05;9(3):e90706 [PMID: 24598973]
  99. J Plant Physiol. 2013 Aug 15;170(12):1101-12 [PMID: 23608743]
  100. Plant Physiol. 2015 May;168(1):47-59 [PMID: 25761715]
  101. J Exp Bot. 2013 Mar;64(5):1345-55 [PMID: 23364938]
  102. J Proteomics. 2013 Oct 8;91:309-30 [PMID: 23933133]
  103. Plant Cell Physiol. 2015 Sep;56(9):1748-61 [PMID: 26076968]
  104. BMC Genomics. 2013 Apr 12;14:247 [PMID: 23586643]
  105. PLoS One. 2014 Aug 14;9(8):e104541 [PMID: 25122458]
  106. Plant Sci. 2013 Jan;198:46-57 [PMID: 23199686]
  107. Proteome Sci. 2014 Feb 07;12(1):7 [PMID: 24507458]
  108. PLoS One. 2014 Jun 24;9(6):e100477 [PMID: 24959894]
  109. Eur J Mass Spectrom (Chichester). 2013;19(4):305-24 [PMID: 24575629]
  110. J Agric Food Chem. 2011 Jul 27;59(14):7679-87 [PMID: 21657255]
  111. J Exp Bot. 2011 Nov;62(15):5297-309 [PMID: 21841170]
  112. J Proteome Res. 2011 Feb 4;10 (2):429-46 [PMID: 20945943]
  113. Funct Integr Genomics. 2011 Jun;11(2):357-68 [PMID: 21221699]
  114. Tree Physiol. 2010 Mar;30(3):431-9 [PMID: 20086118]
  115. Physiol Plant. 2011 Nov;143(3):235-45 [PMID: 21838733]
  116. J Exp Bot. 2012 Sep;63(14):5155-70 [PMID: 22936830]
  117. BMC Plant Biol. 2015 Feb 12;15:44 [PMID: 25849782]
  118. Dev Growth Differ. 2010 Sep;52(7):635-44 [PMID: 20887564]
  119. Planta. 2012 Jun;235(6):1383-96 [PMID: 22241135]
  120. Plant Physiol Biochem. 2013 Nov;72:87-95 [PMID: 23684499]
  121. J Proteomics. 2012 Feb 16;75(5):1618-38 [PMID: 22178302]
  122. J Plant Physiol. 2013 Feb 15;170(3):258-64 [PMID: 23127362]
  123. Proteome Sci. 2014 May 25;12:31 [PMID: 24904238]
  124. PLoS One. 2015 Mar 23;10(3):e0121164 [PMID: 25799516]
  125. Physiol Plant. 2015 Jun 10;:null [PMID: 26096498]
  126. BMC Plant Biol. 2011 Nov 02;11:149 [PMID: 22047180]
  127. Mol Genet Genomics. 2015 Feb;290(1):365-75 [PMID: 25252890]
  128. BMC Plant Biol. 2014 May 19;14:137 [PMID: 24885290]
  129. Proteomics. 2011 Feb;11(4):756-75 [PMID: 21246733]
  130. PLoS One. 2012;7(5):e38039 [PMID: 22675433]
  131. J Proteomics. 2013 Nov 20;93:276-94 [PMID: 23435059]
  132. Mycorrhiza. 2011 Aug;21(6):473-93 [PMID: 21210159]
  133. Plant Physiol Biochem. 2013 Jan;62:95-106 [PMID: 23202483]
  134. Funct Integr Genomics. 2010 Aug;10(3):367-81 [PMID: 19841954]
  135. PLoS One. 2014 Sep 12;9(9):e107562 [PMID: 25215597]
  136. J Exp Bot. 2014 Jul;65(12):3029-44 [PMID: 24706719]
  137. PLoS One. 2015 Apr 20;10(4):e0124442 [PMID: 25893685]
  138. Plant Physiol Biochem. 2012 Nov;60:35-45 [PMID: 22902552]
  139. BMC Plant Biol. 2013 Feb 22;13:30 [PMID: 23433030]
  140. PLoS One. 2014 Feb 06;9(2):e88145 [PMID: 24516597]
  141. Plant Physiol. 2010 Nov;154(3):1439-59 [PMID: 20826702]
  142. Plant Cell Environ. 2012 Feb;35(2):405-17 [PMID: 21689113]
  143. BMC Plant Biol. 2010 Oct 25;10 :229 [PMID: 20973957]
  144. PLoS One. 2013 Jun 05;8(6):e65737 [PMID: 23755275]
  145. J Proteome Res. 2014 Jun 6;13(6):2998-3015 [PMID: 24824475]
  146. J Sep Sci. 2011 Dec;34(24):3561-7 [PMID: 21898815]
  147. Mol Biol Rep. 2014 May;41(5):3071-80 [PMID: 24477585]
  148. Funct Integr Genomics. 2011 Jun;11(2):341-55 [PMID: 21234783]
  149. Proteomics. 2011 Dec;11(24):4688-701 [PMID: 22002957]
  150. PLoS One. 2013 Nov 04;8(11):e78457 [PMID: 24223809]
  151. J Exp Bot. 2014 Apr;65(6):1651-71 [PMID: 24600016]
  152. Plant Cell Environ. 2014 Apr;37(4):864-85 [PMID: 24112028]
  153. BMC Plant Biol. 2015 Mar 03;15:69 [PMID: 25849288]
  154. Plant Physiol Biochem. 2011 Sep;49(9):1059-63 [PMID: 21764593]
  155. BMC Genomics. 2011 Jan 26;12:63 [PMID: 21269450]
  156. J Plant Physiol. 2015 Jul 20;184:20-7 [PMID: 26202445]
  157. Gene. 2012 May 1;498(2):223-30 [PMID: 22353365]
  158. Gene. 2015 Jan 25;555(2):362-76 [PMID: 25447903]
  159. J Proteomics. 2015 Apr 24;119:143-53 [PMID: 25688916]
  160. Plant Sci. 2014 Mar;217-218:87-98 [PMID: 24467900]
  161. PLoS One. 2013 Sep 18;8(9):e74217 [PMID: 24058529]
  162. J Proteomics. 2014 Feb 26;98 :31-43 [PMID: 24333156]
  163. J Exp Bot. 2013 Jul;64(10):2997-3008 [PMID: 23698628]
  164. Funct Integr Genomics. 2014 Mar;14(1):135-48 [PMID: 24122211]
  165. Plant Biol (Stuttg). 2013 Jan;15(1):233-42 [PMID: 22672637]
  166. Gene. 2012 Jul 15;503(1):110-7 [PMID: 22565192]
  167. PLoS One. 2015 Mar 17;10(3):e0120503 [PMID: 25781174]
  168. J Chromatogr A. 2012 Oct 12;1259:121-7 [PMID: 22381888]
  169. J Plant Physiol. 2011 Mar 1;168(4):392-402 [PMID: 20926159]
  170. J Proteomics. 2011 May 1;74(5):607-19 [PMID: 21315198]
  171. BMC Genomics. 2013 Nov 23;14:823 [PMID: 24267665]
  172. Plant Physiol Biochem. 2014 Jan;74:141-55 [PMID: 24296250]
  173. J Agric Food Chem. 2013 Feb 13;61(6):1373-87 [PMID: 23311914]
  174. AoB Plants. 2013;5:plt021 [PMID: 23671787]
  175. Physiol Plant. 2011 Aug;142(4):390-406 [PMID: 21496031]
  176. Proteome Sci. 2010 Dec 16;8:68 [PMID: 21162737]
  177. J Mass Spectrom. 2010 Sep;45(9):966-70 [PMID: 20862730]
  178. AoB Plants. 2013;5:pls047 [PMID: 23346344]
  179. Plant Sci. 2010 Nov;179(5):489-98 [PMID: 21802607]
  180. Genome Biol. 2013 Jun 07;14(6):r54 [PMID: 23759170]
  181. BMC Genomics. 2014 Nov 27;15:1030 [PMID: 25431125]
  182. BMC Plant Biol. 2015 Aug 07;15:191 [PMID: 26245744]
  183. Plant Cell Environ. 2014 Mar;37(3):601-16 [PMID: 23937123]
  184. Int J Mol Sci. 2013 Oct 18;14(10):21053-70 [PMID: 24145753]
  185. Front Plant Sci. 2013 Mar 22;4:39 [PMID: 23526060]
  186. PLoS One. 2013 Sep 17;8(9):e74394 [PMID: 24069307]
  187. Nature. 2007 Sep 27;449(7161):463-7 [PMID: 17721507]

Word Cloud

Created with Highcharts 10.0.0fruitomicstreestranscriptomicsproteomicsmetabolomicstreestudiescitrusrosaceaestudygeneshormonomicsionomicsresearchreportedgrapevineRecentadvancebioinformaticsanalyticalapparatusesnextgenerationDNAsequencerNGSmassspectrometerMSbroughtbigwavecomprehensivebiologyComprehensivetargetingtranscriptsRNAsproteinsmetaboliteshormonesionsphenotypescalledgenomicsphenomicsrespectivelypowerfulapproachesidentifykeyimportanttraitsclarifyeventsphysiologicalmechanismsrevealunknownmetabolicpathwayscropsRecentlyuseapproachincreaseddramaticallyAlthougharticlereviewedrecentmajorieeffectivenessprospectswillwellhighlightedOmicsgrape

Similar Articles

Cited By