NH4(+)-EXCRETING AZOSPIRILLUM-BRASILENSE MUTANTS ENHANCE THE NITROGEN SUPPLY OF A WHEAT HOST

被引:41
作者
CHRISTIANSENWENIGER, C
VANVEEN, JA
机构
关键词
D O I
10.1128/AEM.57.10.3006-3012.1991
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Spontaneous ethylenediamine-resistant mutants of Azospirillum brasilense were selected on the basis of their excretion of NH4+. Two mutants exhibited no repression of their nitrogenase enzyme systems in the presence of high (20 mM) concentrations of NH4+. The nitrogenase activities of these mutants on nitrogen-free minimal medium were two to three times higher than the nitrogenase activity of the wild type. The mutants excreted substantial amounts of ammonia when they were grown either under oxygen-limiting conditions (1 kPa of O2) or aerobically on nitrate or glutamate. The mutants grew well on glutamate as a sole nitrogen source but only poorly on NH4Cl. Both mutants failed to incorporate [C-14]methylamine. We demonstrated that nitrite ammonification occurs in the mutants. Wild-type A. brasilense, as well as the mutants, became established in the rhizospheres of axenically grown wheat plants at levels of > 10(7) cells per g of root. The rhizosphere acetylene reduction activity was highest in the preparations containing the mutants. When plants were grown on a nitrogen-free nutritional medium, both mutants were responsible for significant increases in root and shoot dry matter compared with wild-type-treated plants or with noninoculated controls. Total plant nitrogen accumulation increased as well. When they were exposed to a N-15(2)-enriched atmosphere, both A. brasilense mutants incorporated significantly higher amounts of N-15 inside root and shoot material than the wild type did. The results of our nitrogen balance and N-15 enrichment studies indicated that NH4+-excreting A. brasilense strains potentially support the nitrogen supply of the host plants.
引用
收藏
页码:3006 / 3012
页数:7
相关论文
共 47 条
[1]   REGULATORY ASPECTS OF INORGANIC NITROGEN-METABOLISM IN THE RHODOSPIRILLACEAE [J].
ALEF, K ;
KLEINER, D .
ARCHIVES OF MICROBIOLOGY, 1982, 133 (03) :239-241
[2]  
BANI D, 1980, J GEN MICROBIOL, V119, P239
[3]   THE N-15-ISOTOPE DILUTION TECHNIQUE APPLIED TO THE ESTIMATION OF BIOLOGICAL NITROGEN-FIXATION ASSOCIATED WITH PASPALUM-NOTATUM CV BATATAIS IN THE FIELD [J].
BODDEY, RM ;
CHALK, PM ;
VICTORIA, R ;
MATSUI, E .
SOIL BIOLOGY & BIOCHEMISTRY, 1983, 15 (01) :25-32
[4]   EFFECT OF INOCULATION OF AZOSPIRILLUM SPP ON NITROGEN ACCUMULATION BY FIELD-GROWN WHEAT [J].
BODDEY, RM ;
BALDANI, VL ;
BALDANI, JI ;
DOBEREINER, J .
PLANT AND SOIL, 1986, 95 (01) :109-121
[5]  
CHARYLULU PBB, 1985, AZOSPIRILLUM, V2, P163
[6]  
Christiansen-Weniger C., 1988, AZOSPIRILLUM, VIV, P141
[7]  
CHRISTIANSENWEN.C, 1985, AZOSPIRILLUM, V3, P180
[8]  
CHRISTIANSENWEN.C, UNPUB
[9]   PHYSIOLOGICAL ASPECTS OF N-2-FIXATION BY A SPIRILLUM FROM DIGITARIA ROOTS [J].
DAY, JM ;
DOBEREINER, J .
SOIL BIOLOGY & BIOCHEMISTRY, 1976, 8 (01) :45-50
[10]   HETEROTROPHIC (N-15)2 FIXATION AND DISTRIBUTION OF NEWLY FIXED NITROGEN IN A RICE-FLOODED SOIL SYSTEM [J].
ESKEW, DL ;
EAGLESHAM, ARJ ;
APP, AA .
PLANT PHYSIOLOGY, 1981, 68 (01) :48-52