The influence of water regime of sod-podzol soils of watersheds on the yield of red clover

2017 ◽  
pp. 100-104
Author(s):  
V.V. Pchelkin ◽  
◽  
A.M. Sergeeva
1994 ◽  
Vol 29 (4) ◽  
pp. 127-132 ◽  
Author(s):  
Naomi Rea ◽  
George G. Ganf

Experimental results demonstrate bow small differences in depth and water regime have a significant affect on the accumulation and allocation of nutrients and biomass. Because the performance of aquatic plants depends on these factors, an understanding of their influence is essential to ensure that systems function at their full potential. The responses differed for two emergent species, indicating that within this morphological category, optimal performance will fall at different locations across a depth or water regime gradient. The performance of one species was unaffected by growth in mixture, whereas the other performed better in deep water and worse in shallow.


2021 ◽  
Vol 290 ◽  
pp. 110525
Author(s):  
Ignacio Buesa ◽  
Diego S. Intrigliolo ◽  
Juan R. Castel ◽  
Mar Vilanova

2006 ◽  
Vol 64 (1) ◽  
pp. 137-151 ◽  
Author(s):  
A. Ponce-Mendoza ◽  
P. Boeckx ◽  
F. Gutierrez-Miceli ◽  
O. Van Cleemput ◽  
L. Dendooven

2020 ◽  
Vol 12 (4) ◽  
pp. 981-992
Author(s):  
Afonso H. de Oliveira Júnior ◽  
Henrique de O. P. Mendonça ◽  
Rodinei Augusti ◽  
Júlio O. F. Melo ◽  
Cleber J. da Silva

Author(s):  
I. P. Kruzhilin ◽  
N. N. Dubenok ◽  
M. A. Ganiev ◽  
K. A. Rodin ◽  
A. B. Nevezhina

The results of studies on the influence of water or nutrient regimes of the soil on the formation of the root system of rice when watering drip system. Thus, while maintaining the water regime of the soil not less than 80% of HB in the 0.6 m layer, the root mass was in the three years in the 0.4 m layer 4.96, and 0.6 m - 5.64 t/ha. In the variant where soil moisture was maintained at least 80% HB and the depth of soil wetting until the end of the tillering phase by 0.4 with a further decrease to 0.6 m, the plants differed in maximum foliage and habitus, which contributed to an increase in the root mass of aerobic rice in the layer of 0.4 m to 5.40, and in the layer of 0.6 m 6.14 t/ha. In the variant of the water regime of the soil with a moisture content of not less than 80% HB from sowing to the end of the tillering phase in a layer of 0.4 m, followed by a decrease to 0.6 m, and from wax to full ripeness of grain not less than 70% HB the volume of roots compared to the second option for three years in a layer of 0.4 m became less by 0.18 t/ha, and in a layer of 0.6 0.20 t/ha, but more than the first in a layer of 0.4 m by 0.26 m and 0.6 m 0.30 t/ha. Also had a great influence on the root system of aerobic rice. Thus, its lowest value, 5.46 t/ha for the three years, was formed when making N95P62K75 (5 t/ha). Making N114P74K90 (6 t/ha) increased root weight by 0.48 t/ha regarding the N95P62K75 dose (5 t/ha), but was below making N137P90K108 (7 t/ha) 0.60 t/ha. In the result of the conducted researches it was established that maximum yield of grain (of 6.95 t/ha) was obtained in variant water regime of soil 80% of NV in layers of 0.4 and 0.6 m, making N137P90K108 (7 t/ha). The minimum yield, 4.88 t/ha, was obtained in the variant of soil water regime of 80% of NV in a layer of 0.6 m with the introduction of N95P62K75 (5 t/ha).


2019 ◽  
Vol 28 (1) ◽  
Author(s):  
Mariola Staniak

The aim of the research was to assess the impact of water stress on the yield and content of basic nutrients in the biomass of Trifolium pratense and Festulolium braunii cultivated in pure stand and in mixture. A pot experiment was carried out in 2012–2014, at two levels of soil moisture: well-watered and drought stress. The study showed that stress significantly reduced the dry matter yield (DMY), the most in T. pratense, followed by mixture, and F. braunii. The effect of drought stress on the nutritive value was considerable less pronounced than the influence on DMY. No significant influence of water deficit on crude protein, crude fibre and crude ash contents was found, but only on water-soluble carbohydrate and crude fat content in one year of the study. It was found, that under drought stress T. pratense is more suitable for cultivation in the mixture with F. braunii than in pure stand, due to a lower reduction of DMY and no adverse effect of water deficiency on yield quality.


2021 ◽  
Vol 8 (4) ◽  
pp. 401-410
Author(s):  
E.A. Agina ◽  
S.M. Mohamed ◽  
Y. Ghatas ◽  
N.S.A. El-Shayeb ◽  
E.K. Marwan

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