Wang Chii-Jeng, Chan Yuan-Li, Shien Chin Hui, Yeh Kai-Wun
Institute of Plant Biology, National Taiwan University, Taipei, Taiwan; Hualien District Agricultural Research and Extension Station, Council of Agriculture, Hualien, Taiwan.
AVRDC-The World Vegetable Center, PO Box 42, Shanhua, Tainan 74199, Taiwan.
J Plant Physiol. 2015 Apr 1;177:83-92. doi: 10.1016/j.jplph.2015.01.011. Epub 2015 Jan 25.
In this study, expression of four peroxidase genes, LePrx09, LePrx17, LePrx35 and LePrxA, was identified in immature tomato fruits, and the function in the regulation of fruit growth was characterized. Analysis of amino acid sequences revealed that these genes code for class III peroxidases, containing B, D and F conserved domains, which bind heme groups, and a buried salt bridge motif. LePrx35 and LePrxA were identified as novel peroxidase genes in Solanum lycopersicum (L.). The temporal expression patterns at various fruit growth stages revealed that LePrx35 and LePrxA were expressed only in immature green (IMG) fruits, whereas LePrx17 and LePrx09 were expressed in both immature and mature green fruits. Tissue-specific expression profiles indicated that only LePrx09 was expressed in the mesocarp but not the inner tissue of immature fruits. The effects of hormone treatments and stresses on the four genes were examined; only the expression levels of LePrx17 and LePrx09 were altered. Transcription of LePrx17 was up-regulated by jasmonic acid (JA) and pathogen infection and expression of LePrx09 was induced by ethephon, salicylic acid (SA) and JA, in particular, as well as wounding, pathogen infection and H2O2 stress. Tomato plants over-expressing LePrx09 displayed enhanced resistance to H2O2 stress, suggesting that LePrx09 may participate in the H2O2 signaling pathway to regulate fruit growth and disease resistance in tomato fruits.
在本研究中,在未成熟番茄果实中鉴定了四个过氧化物酶基因LePrx09、LePrx17、LePrx35和LePrxA的表达,并对其在果实生长调控中的功能进行了表征。氨基酸序列分析表明,这些基因编码III类过氧化物酶,包含结合血红素基团的B、D和F保守结构域以及一个埋藏的盐桥基序。LePrx35和LePrxA被鉴定为番茄中的新型过氧化物酶基因。不同果实生长阶段的时间表达模式表明,LePrx35和LePrxA仅在未成熟绿色(IMG)果实中表达,而LePrx17和LePrx09在未成熟和成熟绿色果实中均有表达。组织特异性表达谱表明,只有LePrx09在未成熟果实的中果皮中表达,而在内层组织中不表达。检测了激素处理和胁迫对这四个基因的影响;只有LePrx17和LePrx09的表达水平发生了改变。LePrx17的转录受茉莉酸(JA)和病原体感染上调,LePrx09的表达尤其受乙烯利、水杨酸(SA)和JA诱导,以及伤口、病原体感染和H2O2胁迫诱导。过表达LePrx09的番茄植株对H2O2胁迫表现出增强的抗性,表明LePrx09可能参与H2O2信号通路以调节番茄果实的生长和抗病性。