Javascript must be enabled to continue!
Impact of fruit-tree shade intensity on the growth,yield, and quality of intercropped wheat
View through CrossRef
Abstract
Agroforestry is a common traditional practice in China-especially in the southern Xinjiang of Northwest China. However, the productivity of many agroforestry systems has been lower than expected in recent years, highlighting the need for an actionably deep mechanistic understanding of the competition between crops and trees. Here, we chose 3 different fruit tree/wheat intercropping agroforestry systems to investigate influence of different fruit tree shade intensity on the growth, yield and quality of intercropping wheat: jujube/wheat, apricot /wheat, and walnut /wheat. We found that compared to the monoculture wheat system, the mean daily shade intensity of the jujube-, apricot-, and walnut-based intercropping systems were, respectively, 23.2%, 57.5%, and 80.7% shade. The photosynthetic rate of wheat in the jujube-, apricot-, and walnut-based intercropping systems decreased by, respectively, 11.3%, 31.9%, and 36.2% compared to monoculture wheat, and the mean number of fertile florets per spike decreased by 26.4%, 37.4%, and 49.5%. Moreover, the apricot- and walnut-based intercropping systems deleteriously affected grain yield (constituent components spike number, grains per spike, and thousand grain weight) and decreased the total N, P, and K content of intercropping wheat. Tree shading intensity strongly enhanced the protein content, wet gluten content, falling number, dough development time, and dough stability time of wheat, but significantly decreased the softening degree. Strong negative linear correlations were observed between tree shade intensity and the number of fertile florets, grain yield (including spike number, grains per spike, and thousand grain weight), nutrient content (N, P and K), and softening degree of wheat. In contrast, we found that daily shade intensity was positively linearly correlated with protein content, wet gluten content, falling number, dough development time, and dough stability time. We conclude that jujube-based intercropping systems can be practical in the region, as they do not decrease the yield and quality of intercropping wheat. Further research should focus on the above-ground/below-ground interspecific interactions and the mechanisms behind the observations that we observed amongst the intercropping systems.
Title: Impact of fruit-tree shade intensity on the growth,yield, and quality of intercropped wheat
Description:
Abstract
Agroforestry is a common traditional practice in China-especially in the southern Xinjiang of Northwest China.
However, the productivity of many agroforestry systems has been lower than expected in recent years, highlighting the need for an actionably deep mechanistic understanding of the competition between crops and trees.
Here, we chose 3 different fruit tree/wheat intercropping agroforestry systems to investigate influence of different fruit tree shade intensity on the growth, yield and quality of intercropping wheat: jujube/wheat, apricot /wheat, and walnut /wheat.
We found that compared to the monoculture wheat system, the mean daily shade intensity of the jujube-, apricot-, and walnut-based intercropping systems were, respectively, 23.
2%, 57.
5%, and 80.
7% shade.
The photosynthetic rate of wheat in the jujube-, apricot-, and walnut-based intercropping systems decreased by, respectively, 11.
3%, 31.
9%, and 36.
2% compared to monoculture wheat, and the mean number of fertile florets per spike decreased by 26.
4%, 37.
4%, and 49.
5%.
Moreover, the apricot- and walnut-based intercropping systems deleteriously affected grain yield (constituent components spike number, grains per spike, and thousand grain weight) and decreased the total N, P, and K content of intercropping wheat.
Tree shading intensity strongly enhanced the protein content, wet gluten content, falling number, dough development time, and dough stability time of wheat, but significantly decreased the softening degree.
Strong negative linear correlations were observed between tree shade intensity and the number of fertile florets, grain yield (including spike number, grains per spike, and thousand grain weight), nutrient content (N, P and K), and softening degree of wheat.
In contrast, we found that daily shade intensity was positively linearly correlated with protein content, wet gluten content, falling number, dough development time, and dough stability time.
We conclude that jujube-based intercropping systems can be practical in the region, as they do not decrease the yield and quality of intercropping wheat.
Further research should focus on the above-ground/below-ground interspecific interactions and the mechanisms behind the observations that we observed amongst the intercropping systems.
Related Results
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Relay intercropping soybean [Glycine max(L.) Merr.] into winter wheat (Triticum aestivum L.) may increase soybean yields compared with doublecropping. Once the soybean crop is esta...
Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Abstract
Xinhuamai 818 was used as the experimental material for high-stem wheat varieties, HHH was used as the control plot for high-stem wheat varieties (one lett...
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Abstract
Using Xinhuamai818 as the experimental material for high stem wheat varieties, HHH as the control plot for high stem wheat varieties(One letter represents ...
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Crop rotation could be a possible intervention to resolve multifaceted problems of monoculture. In recent years, there is a concern about soil depletion caused by intensive farming...
British Food Journal Volume 35 Issue 5 1933
British Food Journal Volume 35 Issue 5 1933
The Fruit Control Act, 1924, is an important one as it provides for the establishment of a Fruit Control Board, and is described as an “Act to make Provision for Control of the Fru...
Temporal Shade on Creeping Bentgrass Turf
Temporal Shade on Creeping Bentgrass Turf
Creeping bentgrass (Agrostis palustris Huds.) turf exposed to shade during morning hours may decline more readily than similar turf exposed to afternoon shade. This study compared ...
Tree Planting Configuration Influences Shade on Residential Structures in Four U.S. Cities
Tree Planting Configuration Influences Shade on Residential Structures in Four U.S. Cities
Expanding urbanization, characterized by increased impervious surfaces and decreased tree canopy, is contributing to rising urban temperatures. This trend has implications for ener...
Track to Combat Wheat Stem Rust (
Puccinia graminis
f. sp.
tritici
) Races: Pathogenicity Spectrum, Tempo-Spatial Dynamics, and Impacts on Irrigated Wheat in Ethiopia under Climate Ch
Track to Combat Wheat Stem Rust (
Puccinia graminis
f. sp.
tritici
) Races: Pathogenicity Spectrum, Tempo-Spatial Dynamics, and Impacts on Irrigated Wheat in Ethiopia under Climate Ch
1.
Abstract
Wheat stem rust (Puccinia graminis f. sp. tritici) is a major global threat to wheat production, driven by rapid shifts in virulence and...

