| Literature DB >> 27026947 |
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Abstract
Continuous cropping of rice (Oryza sativa L.) and wheat (Triticum aestivum L.) deplete soil fertility and crop productivity. One strategy to increase crop productivity under rice-wheat system is balanced application of crop nutrients. Field experiment was conducted to assess the impact of phosphorus (0, 40, 80, 120 kg P ha(-1)) and zinc (0, 5, 10, 15 kg Zn ha(-1)) on the productivity of rice genotypes (fine and coarse) and their residual effects on the grain yield (GY) and its components (YC) of the succeeding wheat crop under rice-wheat cropping system (RWCS) in North Western Pakistan during 2011-12 and 2012-13. After rice harvest in both years, wheat variety "Siren-2010" was grown on the same layout but no additional P, K and Zn was applied to wheat crop in each year. The GY and YC of wheat significantly increased in the treatments receiving the higher P levels (120 > 80 > 40 > 0 kg P ha(-1)) and Zn (15 > 10 > 5 > 0 kg Zn ha(-1)) in the previous rice crop. The residual soil P and Zn contents after rice harvest, GY and YC of wheat increased significantly under low yielding fine genotype (B-385) as compared to the high yielding coarse genotypes (F-Malakand and Pukhraj). The residual soil P and Zn, GY and of wheat increased significantly in the second year as compared with the first year of experiment. These results confirmed strong carry over effects of both P and Zn applied to the previous rice crop on the subsequent wheat crop under RWCS.Entities:
Keywords: Grain yield; Soil residual P and Zn contents; Yield components
Year: 2016 PMID: 27026947 PMCID: PMC4773322 DOI: 10.1186/s40064-016-1907-0
Source DB: PubMed Journal: Springerplus ISSN: 2193-1801
Fig. 1Rainfall and temperature data in the experimental site for the two growing seasons of rice in rice–wheat cropping system
Residual soil phosphorous (P) and zinc (Zn), number of spikes m−2, number of grains spike−1, thousand grains weight and grain yield of wheat as affected by preceding rice genotypes, phosphorus and zinc levels under rice–wheat cropping system
| Applied (kg P ha−1) | Residual soil P (mg kg−1) | Residual soil Zn (mg kg−1) | Number of spikes m−2 | Number of grains spike−1 | Thousand grains weight (g) | Grain yield (kg ha−1) |
|---|---|---|---|---|---|---|
| 0 | 4.1 d | 1.13 c | 226 d | 45 d | 36.06 c | 3434 d |
| 40 | 8.1 c | 1.20 b | 256 c | 49 c | 39.08 b | 3974 c |
| 80 | 9.8 b | 1.23 ab | 282 b | 51 b | 40.46 a | 4194 b |
| 120 | 11.3 a | 1.26 a | 290 a | 52 a | 40.54 a | 4291 a |
| LSD0.05 | 0.23 | 0.030 | 5.13 | 0.7 | 0.578 | 72.34 |
| Applied Zn (kg ha−1) | ||||||
| 0 | 7.8 c | 0.75 d | 253 c | 48 c | 38.51 c | 3800 c |
| 5 | 8.3 b | 1.26 c | 261 b | 49 b | 39.25 ab | 3965 b |
| 10 | 8.4 b | 1.37 b | 268 a | 50 a | 39.53 a | 4010 b |
| 15 | 8.8 a | 1.44 a | 271 a | 50 a | 38.86 bc | 4118 a |
| LSD0.05 | 0.19 | 0.027 | 4.55 | 0.5 | 0.455 | 75.70 |
| Rice genotypes | ||||||
| Basmati-385 | 9.1 a | 1.34 a | 277 a | 50 a | 39.47 a | 4234 a |
| F-Malakand | 8.1 b | 1.19 b | 270 b | 50 a | 39.19 a | 4085 b |
| Pukhraj | 7.8 c | 1.08 c | 243 c | 48 b | 38.44 b | 3601 c |
| LSD0.05 | 0.20 | 0.026 | 4.44 | 0.6 | 0.500 | 62.65 |
| Years | ||||||
| Year-I | 7.9 b | 1.17 b | 261 a | 49 b | 38.73 b | 3850 b |
| Year-II | 8.8 a | 1.24 a | 265 a | 50 a | 39.34 a | 4097 a |
| P × Zn | **Fig | **Fig | **Fig | **Fig | *Fig | ***Fig. |
Means of the same category followed by different letters are significantly different at 5 % level of probability using LSD test
ns stands for non-significant, while *, ** and *** stands for significant at 5, 1 and 0.1 % level of probability, respectively
Fig. 2Residual soil phosphorous (mg kg−1) after rice harvest as affected by residual soil phosphorus into zinc (P × Zn) interaction
Fig. 3Residual soil zinc (mg kg−1) after rice harvest as affected by residual soil phosphorus into zinc (P × Zn) interaction
Fig. 4Number of spikes m−2 of wheat as affected by residual soil phosphorus into zinc (P × Zn) interaction
Fig. 5Number of grains spike−1 of wheat as affected by residual soil phosphorus into zinc (P × Zn) interaction
Fig. 6Thousand grains weight (g) of wheat as affected by residual soil phosphorus into zinc (P × Zn) interaction
Fig. 7Grain yield (kg ha−1) of wheat as affected by residual soil phosphorus into zinc (P × Zn) interaction