Kobaru Saki, Tanaka Ryusuke, Taira Toki, Uchiumi Toshiki
a Graduate School of Science and Engineering , Kagoshima University , Kagoshima , Japan.
b Department of Bioscience and Biotechnology , University of the Ryukyus , Nishihara-cho , Japan.
Biosci Biotechnol Biochem. 2016 Dec;80(12):2347-2356. doi: 10.1080/09168451.2016.1224640. Epub 2016 Aug 26.
Plant chitinases play diverse roles including defense against pathogenic fungi. Using reverse-transcription quantitative PCR analysis, we found that six chitinase (PpChi) genes and two genes for chitin elicitor receptor kinases (PpCERKs) are expressed at considerable levels in the moss Physcomitrella patens subsp. patens. The expressed PpChis belonged to glycoside hydrolase family 19 (class I: PpChi-Ia and -Ib; class II: PpChi-IIa and -IIc; and class IV: PpChi-IV) and to glycoside hydrolase family 18 (class V: PpChi-Vb). Treatment with chitin tetramer or hexamer increased the expression of class I and IV PpChi genes and decreased that of class II PpChi genes. Recombinant PpChi-Ia, PpChi-IV, and PpChi-Vb were characterized. PpChi-IV exhibited higher activity against chitin tetramer and pentamer than PpChi-Ia did. PpChi-Vb showed transglycosylation activity and PpChi-Ia inhibited fungal growth. These results suggest that chitinases of different classes play different roles in defense mechanism of moss plant against fungal pathogens.
植物几丁质酶发挥着多种作用,包括抵御病原真菌。通过逆转录定量PCR分析,我们发现6个几丁质酶(PpChi)基因和2个几丁质激发子受体激酶(PpCERKs)基因在小立碗藓亚种小立碗藓中大量表达。表达的PpChis属于糖苷水解酶家族19(I类:PpChi-Ia和-Ib;II类:PpChi-IIa和-IIc;IV类:PpChi-IV)和糖苷水解酶家族18(V类:PpChi-Vb)。用几丁质四聚体或六聚体处理可增加I类和IV类PpChi基因的表达,并降低II类PpChi基因的表达。对重组PpChi-Ia、PpChi-IV和PpChi-Vb进行了特性分析。PpChi-IV对几丁质四聚体和五聚体的活性高于PpChi-Ia。PpChi-Vb表现出转糖基化活性,PpChi-Ia抑制真菌生长。这些结果表明,不同类别的几丁质酶在苔藓植物抵御真菌病原体的防御机制中发挥着不同的作用。