Ko Moon Kyung, Jeon Woong Bae, Kim Kwang Sang, Lee Hyun Hwa, Seo Hyo Hyoun, Kim Young Soon, Oh Boung-Jun
Kumho Life and Environmental Science Laboratory, Korea Kumho Petrochemical Co., Ltd., Buk-gu, Gwangju, Korea.
Plant Mol Biol. 2005 Jul;58(4):529-41. doi: 10.1007/s11103-005-7088-9.
Ripe fruits of pepper (Capsicum annuum) are resistant to the anthracnose fungus, Colletotrichum gloeosporioides, whereas unripe-mature fruits are susceptible. A pepper esterase gene (PepEST) that is highly expressed during an incompatible interaction between the ripe fruit of pepper and C. gloeosporioides was previously cloned. Deduced amino acid sequence of PepEST cDNA showed homology to both esterases and lipases, and contained -HGGGF- and -GXSXG- motifs and a catalytic triad. Inhibition of PepEST activity by a specific inhibitor of serine hydrolase demonstrated that a serine residue is critical for the enzyme activity. Expression of PepEST gene was fruit-specific in response to C. gloeosporioides inoculation, and up-regulated by wounding or jasmonic acid treatment during ripening. PepEST mRNA and protein was differentially accumulated in ripe vs. unripe fruit from 24 h after inoculation when C. gloeosporioides is invading into fruits. Immunochemical examination revealed that PepEST accumulation was localized in epidermal and cortical cell layers in infected ripe fruit, but rarely even in epidermal cells in infected unripe one. Over-expression of PepEST in transgenic Arabidopsis plants caused restriction of Alternaria brassicicola colonization by inhibition of spore production, resulting in enhanced resistance against A.brassicicola. These results suggest that PepEST is involved in the resistance of ripe fruit against C.gloeosporioides infection.
辣椒(Capsicum annuum)的成熟果实对炭疽病菌(Colletotrichum gloeosporioides)具有抗性,而未成熟的果实则易感病。先前已克隆了一个在辣椒成熟果实与炭疽病菌的不亲和互作过程中高表达的辣椒酯酶基因(PepEST)。PepEST cDNA推导的氨基酸序列与酯酶和脂肪酶均具有同源性,并包含-HGGGF-和-GXSXG-基序以及一个催化三联体。丝氨酸水解酶特异性抑制剂对PepEST活性的抑制作用表明,一个丝氨酸残基对该酶的活性至关重要。PepEST基因的表达在接种炭疽病菌后具有果实特异性,并且在成熟过程中受到创伤或茉莉酸处理的上调。当炭疽病菌侵入果实后,接种24小时起,PepEST mRNA和蛋白在成熟果实与未成熟果实中的积累存在差异。免疫化学检测显示,PepEST在受感染成熟果实的表皮和皮层细胞层中积累,但在受感染未成熟果实中甚至在表皮细胞中都很少积累。在转基因拟南芥植物中过表达PepEST通过抑制孢子产生限制了链格孢(Alternaria brassicicola)的定殖,从而增强了对链格孢的抗性。这些结果表明,PepEST参与了成熟果实对炭疽病菌感染的抗性。