生物
茉莉酸
卵菌
脱落酸
突变体
流苏
甜菜粘虫
植物
防御机制
基因
细胞生物学
遗传学
扎梅斯
农学
重组DNA
夜蛾
作者
Yuanxin Yan,Shawn A. Christensen,Thomas Isakeit,Jürgen Engelberth,Robert Meeley,Allison R. Hayward,R. J. Neil Emery,Michael V. Kolomiets
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2012-04-01
卷期号:24 (4): 1420-1436
被引量:240
标识
DOI:10.1105/tpc.111.094151
摘要
Here, multiple functions of jasmonic acid (JA) in maize (Zea mays) are revealed by comprehensive analyses of JA-deficient mutants of the two oxo-phytodienoate reductase genes, OPR7 and OPR8. Single mutants produce wild-type levels of JA in most tissues, but the double mutant opr7 opr8 has dramatically reduced JA in all organs tested. opr7 opr8 displayed strong developmental defects, including formation of a feminized tassel, initiation of female reproductive buds at each node, and extreme elongation of ear shanks; these defects were rescued by exogenous JA. These data provide evidence that JA is required for male sex determination and suppression of female reproductive organ biogenesis. Moreover, opr7 opr8 exhibited delayed leaf senescence accompanied by reduced ethylene and abscisic acid levels and lack of anthocyanin pigmentation of brace roots. Remarkably, opr7 opr8 is nonviable in nonsterile soil and under field conditions due to extreme susceptibility to a root-rotting oomycete (Pythium spp), demonstrating that these genes are necessary for maize survival in nature. Supporting the importance of JA in insect defense, opr7 opr8 is susceptible to beet armyworm. Overall, this study provides strong genetic evidence for the global roles of JA in maize development and immunity to pathogens and insects.
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