Enhanced Nodulation and Nitrogen Fixation in the Abscisic Acid Low-Sensitive Mutant enhanced nitrogen fixation1 of Lotus japonicus
Author(s) -
Akiyoshi Tominaga,
Maki Nagata,
Koichi Futsuki,
Hidetoshi Abe,
Toshiki Uchiumi,
Mikiko Abe,
Kenichi Kucho,
Masatsugu Hashiguchi,
Ryo Akashi,
Ann M. Hirsch,
Susumu Arima,
Akihiro Suzuki
Publication year - 2009
Publication title -
plant physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.554
H-Index - 312
eISSN - 1532-2548
pISSN - 0032-0889
DOI - 10.1104/pp.109.142638
Subject(s) - abscisic acid , lotus japonicus , nitrogen fixation , nitric oxide , mutant , lotus , endogeny , nitrogenase , root nodule , biology , botany , biochemistry , nitrogen , symbiosis , chemistry , bacteria , genetics , organic chemistry , gene , endocrinology
The phytohormone abscisic acid (ABA) is known to be a negative regulator of legume root nodule formation. By screening Lotus japonicus seedlings for survival on an agar medium containing 70 microM ABA, we obtained mutants that not only showed increased root nodule number but also enhanced nitrogen fixation. The mutant was designated enhanced nitrogen fixation1 (enf1) and was confirmed to be monogenic and incompletely dominant. The low sensitivity to ABA phenotype was thought to result from either a decrease in the concentration of the plant's endogenous ABA or from a disruption in ABA signaling. We determined that the endogenous ABA concentration of enf1 was lower than that of wild-type seedlings, and furthermore, when wild-type plants were treated with abamine, a specific inhibitor of 9-cis-epoxycarotenoid dioxygenase, which results in reduced ABA content, the nitrogen fixation activity of abamine-treated plants was elevated to the same levels as enf1. We also determined that production of nitric oxide in enf1 nodules was decreased. We conclude that endogenous ABA concentration not only regulates nodulation but also nitrogen fixation activity by decreasing nitric oxide production in nodules.
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