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Effects of distance from a tree line on photosynthetic characteristics and yield of wheat in a jujube tree/wheat agroforestry system

机译:树线距离距离对枣树/小麦农业学系统小麦光合特性及产量的影响

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Planting trees near crops can diversify the landscape, provide pollinators for crops, and allow predators to control insect pests. However, trees can also compete with crops for light, water, and nutrients. Field experiment at the Shihezi Oasis in northern Xinjiang Province assessed the effects of distance on photosynthetic characteristics and yield of wheat in a jujube tree (Zizyphus jujuba Mill.)/wheat (Triticum aestivum L.) agroforestry system. The experiment used two treatments: a control of sole-cropped wheat (D0) and a jujube tree/wheat agroforestry system. The agroforestry system included the different distances of 90, 110, and 130cm (D1, D2, and D3, respectively) between the wheat and the jujube trees. Photosynthetic characteristics, leaf area index (LAI), the number of stems, and yield components of wheat were determined. The net photosynthetic rate (Pn) and the stomatal conductance (Gs) of the D0, D2, and D3 during the filling stage were significantly higher than the D1. No significant difference in transpiration rate (Tr) and intercellular CO2 concentration (Ci) was noted between sole-cropped wheat and agroforestry system. From the tillering to ripening stages, significant differences were observed in stem, tiller number, and dry matter accumulation per plant, and in LAI, which ranked D0>D3>D2>D1. D0 and D3 plants had significantly higher numbers of spikes, grains per spike, and weight of thousand grains than D1 and D2 plants. The crop yield was ranked as D0>D3>D2>D1, with significant differences among D0, D1, D2, and D3. In conclusion, wheat yield increased as the distance from jujube trees increased in this jujube tree/wheat intercropping system.
机译:在农作物附近种植树木可以使景观多样化,为作物提供粉碎机,并允许捕食者控制害虫。然而,树木也可以与养殖作物竞争光,水和营养素。新疆北部石河子绿洲的田间实验评估了枣树(Zizyphus Jujuba Mill)的小麦光合特性和产量距离的影响。实验使用了两种治疗方法:对唯一作物小麦(D0)和枣树/小麦制剂系统的控制。农业遗产系统包括小麦和枣树之间的90,110和130厘米(D1,D2和D3)的不同距离。测定光合特性,叶面积指数(LAI),茎的数量和小麦的产量组分。在填充阶段期间D0,D2和D3的净光合速率(PN)和气孔导率(GS)显着高于D1。在唯一作物小麦和农林美食系统之间注意到蒸腾率(Tr)和细胞间CO 2浓度(CI)没有显着差异。从分蘖到成熟阶段,每株植物和干物质积累观察到显着差异,并在LAI中,其排名为D0> D3> D2> D1。 D0和D3植物数量较高,穗状数量较高,每穗颗粒和比D1和D2植物的粒度的重量。作物产量被评为D0> D3> D2> D1,D0,D1,D2和D3之间具有显着差异。总之,小麦产量随着枣树在该枣树/小麦间作系统中增加的距离而增加。

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