Al Atalah Bassam, De Vleesschauwer David, Xu Jing, Fouquaert Elke, Höfte Monica, Van Damme Els J M
Ghent University, Dept. Molecular Biotechnology, Lab of Biochemistry and Glycobiology, Coupure Links 653, 9000 Ghent, Belgium.
Ghent University, Dept. Plant Protection, Lab of Phytopathology, Coupure Links 653, 9000 Ghent, Belgium.
J Plant Physiol. 2014 Jul 15;171(12):986-92. doi: 10.1016/j.jplph.2014.04.004. Epub 2014 Apr 21.
The rice genome encodes several genes for putative carbohydrate-binding proteins belonging to the family of Euonymus related lectins (EULs). This lectin family was discovered recently and evidence shows that the expression of these proteins is subject to multiple environmental stresses. In this study, quantitative reverse transcription PCR (qRT-PCR) was conducted on rice seedlings exposed to various abiotic (150mM NaCl, 100mM mannitol, and 100μM abscisic acid (ABA)) and biotic (Xanthomonas oryzae pv. oryzae and Magnaporthe oryzae) stresses to compare the transcriptional behavior of the EULs and a known stress related lectin Orysata belonging to the family of jacalin-related lectins. All EUL transcripts were strongly up-regulated after ABA and NaCl treatments in the roots whereas the overall expression level was generally lower and more variable in the shoots. Moreover, all abiotic stresses induced Orysata in both tissues except for mannitol treatment which failed to show an effect in the roots. Orysata also strongly accumulated after X. oryzae pv. oryzae infection, as were various D-type EUL lectins. In contrast, some of the EUL proteins, including OrysaEULS3, OrysaEULD1A and OrysaEULD2, as well as Orysata were significantly down-regulated upon M. oryzae attack, suggesting fungal manipulation of these genes. Collectively, our results clearly show that rice expresses multiple carbohydrate-binding proteins in response to a wide variety of abiotic and biotic stress conditions. We hypothesize that the Euonymus related proteins fulfill a prominent role in sensing and responding to multiple environmental cues.
水稻基因组编码了几个与卫矛属相关凝集素(EULs)家族的假定碳水化合物结合蛋白的基因。这个凝集素家族最近才被发现,有证据表明这些蛋白的表达受到多种环境胁迫的影响。在本研究中,对暴露于各种非生物胁迫(150mM氯化钠、100mM甘露醇和100μM脱落酸(ABA))和生物胁迫(水稻白叶枯病菌和稻瘟病菌)的水稻幼苗进行了定量逆转录PCR(qRT-PCR),以比较EULs和一种已知胁迫相关凝集素Orysata(属于jacalin相关凝集素家族)的转录行为差异。ABA和氯化钠处理后,所有EUL转录本在根部均强烈上调,而在地上部总体表达水平通常较低且变化较大。此外,除甘露醇处理在根部未显示出效果外,所有非生物胁迫均在两个组织中诱导了Orysata的表达。水稻白叶枯病菌感染后,Orysata也强烈积累,各种D型EUL凝集素也是如此。相比之下,一些EUL蛋白,包括OrysaEULS3、OrysaEULD1A和OrysaEULD2,以及Orysata在稻瘟病菌攻击后显著下调,表明真菌对这些基因进行了调控。总体而言,我们的结果清楚地表明,水稻在应对多种非生物和生物胁迫条件时会表达多种碳水化合物结合蛋白。我们推测,卫矛属相关蛋白在感知和响应多种环境信号方面发挥着重要作用。