School of Life Sciences and Biotechnology, Korea University, Seoul 136-701, Korea.
Plant Physiol. 2010 Feb;152(2):1015-29. doi: 10.1104/pp.109.147645. Epub 2009 Dec 16.
Screening of the expressed sequence tag library of the wild rice species Oryza minuta revealed an unknown gene that was rapidly and strongly induced in response to attack by a rice fungal pathogen (Magnaporthe oryzae) and an insect (Nilaparvata lugens) and by wounding, abscisic acid (ABA), and methyl jasmonate treatments. Its recombinant protein was identified as a bifunctional nuclease with both RNase and DNase activities in vitro. This gene was designated OmBBD (for O. minuta bifunctional nuclease in basal defense response). Overexpression of OmBBD in an Arabidopsis (Arabidopsis thaliana) model system caused the constitutive expression of the PDF1.2, ABA1, and AtSAC1 genes, which are involved in priming ABA-mediated callose deposition. This activation of defense responses led to an increased resistance against Botrytis cinerea. atbbd1, the knockout mutant of the Arabidopsis ortholog AtBBD1, was susceptible to attack by B. cinerea and had deficient callose deposition. Overexpression of either OmBBD or AtBBD1 in atbbd1 plants complemented the susceptible phenotype of atbbd1 against B. cinerea as well as the deficiency of callose deposition. We suggest that OmBBD and AtBBD1 have a novel regulatory role in ABA-mediated callose deposition.
野生稻种 Oryza minuta 表达序列标签文库的筛选揭示了一个未知基因,该基因在受到水稻真菌病原体(Magnaporthe oryzae)和昆虫(Nilaparvata lugens)的攻击以及受到创伤、脱落酸(ABA)和茉莉酸甲酯处理时,会迅速且强烈地被诱导。其重组蛋白被鉴定为一种具有体外 RNase 和 DNase 活性的双功能核酸酶。该基因被命名为 OmBBD(代表基础防御反应中的 O. minuta 双功能核酸酶)。在拟南芥(Arabidopsis thaliana)模型系统中过表达 OmBBD 导致 PDF1.2、ABA1 和 AtSAC1 基因的组成型表达,这些基因参与了 ABA 介导的胼胝质沉积的引发。这种防御反应的激活导致对 Botrytis cinerea 的抗性增加。拟南芥同源物 AtBBD1 的 knockout 突变体 atbbd1 易受 B. cinerea 的攻击,且胼胝质沉积缺陷。在 atbbd1 植物中过表达 OmBBD 或 AtBBD1 均可补充 atbbd1 对 B. cinerea 的易感性表型以及胼胝质沉积的缺陷。我们认为 OmBBD 和 AtBBD1 在 ABA 介导的胼胝质沉积中具有新的调节作用。