| Literature DB >> 31121992 |
Philippe Laîné1, Cylia Haddad2, Mustapha Arkoun3, Jean-Claude Yvin4, Philippe Etienne5.
Abstract
To limit the environmental pollutionEntities:
Keywords: agronomic indexes; micronutrients; rapeseed; silicon; yield
Year: 2019 PMID: 31121992 PMCID: PMC6571727 DOI: 10.3390/plants8050137
Source DB: PubMed Journal: Plants (Basel) ISSN: 2223-7747
Physical and chemical characteristics of the soil in the lysimeters. nd: non-detected value.
| Depth (cm) | Particle Size Distribution (%) | pH (Water) | Total S (mg S g−1) | Organic C (mg C g−1) | Total N (mg N g−1) | Inorganic N (µg N g−1) | C:N Ratio | CEC (mol kg−1) | CaCO3 (%) | ||
|---|---|---|---|---|---|---|---|---|---|---|---|
| Sand | Silt | Clay | |||||||||
| 0–20 | 32 | 38 | 30 | 7.9 | 0.1 | 25.4 | 3.2 | 7.4 | 7.9 | 16.5 | 10 |
| 20–40 | 34 | 38 | 28 | 8.1 | 0.1 | 15.0 | 1.9 | 7.5 | 8.0 | 11.5 | 12 |
| 40–65 | 41 | 35 | 24 | 8.3 | 0.1 | 7.6 | 0.9 | 4.5 | 8.2 | 7.2 | 28 |
| 65–100 | 49 | 34 | 17 | 8.4 | nd | 3.4 | 0.4 | 4.7 | 8.5 | 4.6 | 38 |
Figure 1Experimental design used to study the effect of silicon (Si) on the agronomic performance of Brassica napus L. cultivated into lysimeter boxes. When plants were at stage C1 (March 17, 2017), fertilization combining nitrogen (N: 30 or 80 kg ha−1 for 60 and 160 N treatments, respectively), phosphorus (P: 50 kg ha−1), potassium (K: 50 kg ha−1) and sulfur (S: 30 kg ha−1) was applied. At stage E (March 31 2017), a second N fertilization with 30 or 80 kg N ha−1 was applied to the 60 and 160 N treatments, respectively. In addition, for each N treatment (60 and 160 N), fertilization with Si (Si: 12 kg ha−1 as Si(OH)4) was applied in four times (March 17 and 31 and April 7 and 25 2017: 60 N + Si and 160 N + Si) or not (controls: 60 N and 160 N). For all treatments, plants were harvested at T1 and T2 corresponding to the G1 and G5 stages, respectively.
Figure 2Compartment and total biomasses (A) and percentage of green and senescent leaves (B) of rapeseed plants harvested at T1 (G1 stage). Plants were grown in lysimeters with 60 (60 N) or 160 kg of N ha−1 (160 N) and supplied with or without Si (12 kg ha−1: 60 N + Si and 160 N + Si). Values correspond to the mean ± SE for n = 3. The data obtained from plants treated with silicon (60 N + Si and 160 N + Si) were compared to their respective controls. * indicates a significant difference at p ≤ 0.05.
Figure 3Compartment and total biomasses (A), total nitrogen amount (B) and N concentration (C) in rapeseed plants harvested at T2 (G5 stage). Plants were grown in lysimeter with 60 (60 N) or 160 kg of N ha−1 (160 N) and supplied with or without Si (12 kg Si ha−1: 60 N + Si and 160 N + Si). Values correspond to the mean ± SE for n = 3. The data obtained from plants treated with silicon (60 N + Si and 160 N + Si) were compared to their respective control. * indicates a significant difference at p ≤ 0.05.
Figure 4Nitrogen (A), Iron (B), Cobalt (C) and Nickel (D) concentrations in mature seeds of plants harvested at T2 (G5 stage). Plants were grown in lysimeters with 60 (60 N) or 160 kg of N ha−1 (160 N) and supplied with or without Si (12 kg ha−1: 60 N + Si and 160 N + Si). Values correspond to the mean ± SE for n = 3. The data obtained from plants treated with silicon (60 N + Si and 160 N + Si) were compared to their respective controls. * indicates a significant difference at p ≤ 0.05.
Yield component, concentration of oil, protein and glucosinolate concentrations and linoleic acid (ω-6): linolenic acid (ω-3) ratio (ω-6: ω-3 ratio) in mature seeds from rapeseed cultivated with 60 (60 N) or 160 kg of N ha−1 (160 N) and supplied with or without Si (12 kg ha−1: 60 N + Si and 160 N + Si). Values correspond to the mean ± SE for n = 3. The data obtained for seeds from plants treated with silicon (60 N + Si and 160 N + Si) were compared to their respective control * indicates significant difference at p ≤ 0.05.
| Yield (kg ha−1) | Thousand-Seed Weight (g) | Glucosinolate Concentration (µg g−1 DW) | Oil Concentration (% DW) | Protein Concentration (% DW) | ||
|---|---|---|---|---|---|---|
| 60 N | 2696.96 ± 217.90 | 5.27 ± 0.33 | 13.10 ± 0.85 | 49.70 ± 0.96 | 2.37 ± 0.27 | 14.77 ± 0.13 |
| 60 N + Si | 3122.13 ± 74.37 | 4.92 ± 0.21 | 15.43 ± 0.55 | 50.45 ± 0.55 | 2.42 ± 0.13 | 14.58 ± 0.45 |
| 160 N | 3644.37 ± 182.48 | 4.81 ± 0.40 | 17.97 ± 0.66 | 47.4 ± 0.67 | 2.48 ± 0.06 | 16.50 ± 0.10 |
| 160 N + Si | 4247.20 ± 75.23 * | 4.54 ± 0.28 | 16.53 ± 1.54 | 47.93 ± 0.42 | 2.24 ± 0.10 | 17.33 ± 0.26 |
Figure 5Agronomic efficiency of N fertilizer (A), apparent nitrogen recovery (B), the nitrogen harvest index (C) and N content in fallen leaves (D) of plants harvested at T2 (G5 stage). Plants were cultivated in lysimeters with 60 (60 N) or 160 kg of N ha−1 (160 N) and supplied with or without Si (12 kg of SiO4 ha−1; 60 N + Si, 160 N + Si). Values correspond to the mean ± SE for n = 3. The data obtained from plants treated with silicon (60 N + Si and 160 N + Si) were compared to their respective controls (60 N and 160 N). * indicates a significant difference at p ≤ 0.05 and different letters indicate significant difference between treatments at p ≤ 0.05.