Legume Productivity and Soil Nitrogen Dynamics in Lowland Rice-Based Cropping Systems
| dc.creator | Ladha, J.K. | |
| dc.creator | Kundu, D.K. | |
| dc.creator | Angelo-Van Coppenolle, M.G. | |
| dc.creator | Carangal, V.R. | |
| dc.creator | Peoples, M.B. | |
| dc.creator | Dart, P.J. | |
| dc.date | 1996-01 | |
| dc.date | 2024-12-19T12:57:15Z | |
| dc.date | 2024-12-19T12:57:15Z | |
| dc.date.accessioned | 2026-06-27T04:12:47Z | |
| dc.description | Rice (Oryza sativa L.) in wet season (WS) preceded by a dry season (DS) fallow, commonly practiced in rainfed lowlands, causes large losses of N through NO3 leaching and denitrification. The green‐manure legumes as NO3 catch crops is economically unattractive to farmers. In a 2‐yr study, we (i) assessed productivity of one grain and four forage legumes (pigeonpea [Cajanus cajan (L.) Millsp.], crotalaria (Crotalaria juncea L.), clitoria (Clitoria ternatea L.), desmanthus [Desmanthus virgatus (L.) Willd.], and siratro [Macroptilium atropurpureum (Mocino and Sessé ex DC.) Urban]) grown in the DS, (ii) examined NO3‐N and NH4‐N dynamics in soil (a Typic Tropaquept), and (iii) evaluated legume residues as a N source for succeeding rice. Nitrate‐N was dominant in the 30‐cm topsoil and was higher under legumes compared with weedy fallow. The legumes produced 4.9 to 9.1 t aboveground biomass ha‐1, accumulated 132 to 306 kg N ha‐1 of which 67 to 81% was derived from N2 fixation. After harvests, 2.9 to 5.2 t ha‐1 of residues containing 81 to 162 kg N ha‐1 were returned to soil. By 3 to 4 wk after flooding, legume‐treated plots had as much as 33 to 40 kg mineral N ha‐1 in topsoil compared with 10 to 13 kg N ha‐1 in weedy fallowed plots. Residues significantly increased rice yield and N uptake. Rice recovered 15 to 31% of the residue N. Failow plots required 25 to 50 kg fertilizer N ha‐1 to produce comparable plant growth responses to that obtained after the legumes. Belowground residues of the legumes apparently contributed 13 to 37 kg N ha‐1 to rice. Such DS legumes that improve farm productivity as well as increase soil fertility might ensure sustainability of production in rainfed lowlands. | |
| dc.identifier | https://hdl.handle.net/10568/167325 | |
| dc.identifier.uri | http://hdl.handle.net/123456789/25295 | |
| dc.language | en | |
| dc.publisher | Wiley | |
| dc.source | Ladha, J. K.; Kundu, D. K.; Angelo‐Van Coppenolle, M. G.; Carangal, V. R.; Peoples, M. B. and Dart, P. J. 1996. Legume Productivity and Soil Nitrogen Dynamics in Lowland Rice-Based Cropping Systems. Soil Science Soc of Amer J, Volume 60 no. 1 p. 183-192 | |
| dc.subject | cropping systems | |
| dc.subject | rotations | |
| dc.subject | legumes | |
| dc.subject | fertilizers | |
| dc.subject | nitrogen | |
| dc.subject | soil | |
| dc.subject | mineral nutrition | |
| dc.subject | green manures | |
| dc.title | Legume Productivity and Soil Nitrogen Dynamics in Lowland Rice-Based Cropping Systems | |
| dc.type | Journal Article |
