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Reactive oxygen species and ethylene play a positive role in lateral root base nodulation of a semiaquatic legume.


ABSTRACT: Lateral root base nodulation on the tropical, semiaquatic legume Sesbania rostrata results from two coordinated, Nod factor-dependent processes: formation of intercellular infection pockets and induction of cell division. Infection pocket formation is associated with cell death and production of hydrogen peroxide. Pharmacological experiments showed that ethylene and reactive oxygen species mediate Nod factor responses and are required for nodule initiation, whereby induction of division and infection could not be uncoupled. Application of purified Nod factors triggered cell division, and both Nod factors and ethylene induced cavities and cell death features in the root cortex. Thus, in S. rostrata, ethylene and reactive oxygen species act downstream from the Nod factors in pathways that lead to formation of infection pockets and initiation of nodule primordia.

SUBMITTER: D'Haeze W 

PROVIDER: S-EPMC208836 | biostudies-literature | 2003 Sep

REPOSITORIES: biostudies-literature

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Reactive oxygen species and ethylene play a positive role in lateral root base nodulation of a semiaquatic legume.

D'Haeze Wim W   De Rycke Riet R   Mathis RenĂ© R   Goormachtig Sofie S   Pagnotta Sophie S   Verplancke Christa C   Capoen Ward W   Holsters Marcelle M  

Proceedings of the National Academy of Sciences of the United States of America 20030915 20


Lateral root base nodulation on the tropical, semiaquatic legume Sesbania rostrata results from two coordinated, Nod factor-dependent processes: formation of intercellular infection pockets and induction of cell division. Infection pocket formation is associated with cell death and production of hydrogen peroxide. Pharmacological experiments showed that ethylene and reactive oxygen species mediate Nod factor responses and are required for nodule initiation, whereby induction of division and infe  ...[more]

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