生物化学
NADPH氧化酶
细胞生物学
GTP酶
效应器
活性氧
生物
木质素
酶
过氧化物酶
植物对草食的防御
还原酶
信号转导
激发子
化学
植物
基因
作者
Tsutomu Kawasaki,Hisako Koita,Tomoyuki Nakatsubo,Kana Hasegawa,Ken‐ichi Wakabayashi,Hiroki Takahashi,Kenji Umemura,Toshiaki Umezawa,Ko Shimamoto
标识
DOI:10.1073/pnas.0509875103
摘要
OsRac1, one of the Rac/Rop family of small GTPases, plays important roles in defense responses, including a role in the production of reactive oxygen species mediated by NADPH oxidase. We have identified an effector of OsRac1, namely rice ( Oryza sativa ) cinnamoyl-CoA reductase 1 (OsCCR1), an enzyme involved in lignin biosynthesis. Lignin, which is polymerized through peroxidase activity by using H 2 O 2 in the cell wall, is an important factor in plant defense responses, because it presents an undegradable mechanical barrier to most pathogens. Expression of OsCCR1 was induced by a sphingolipid elicitor, suggesting that OsCCR1 participates in defense signaling. In in vitro interaction and two-hybrid experiments, OsRac1 was shown to bind OsCCR1 in a GTP-dependent manner. Moreover, the interaction of OsCCR1 with OsRac1 led to the enzymatic activation of OsCCR1 in vitro . Transgenic cell cultures expressing the constitutively active OsRac1 accumulated lignin through enhanced CCR activity and increased reactive oxygen species production. Thus, it is likely that OsRac1 controls lignin synthesis through regulation of both NADPH oxidase and OsCCR1 activities during defense responses in rice.
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