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1.
【目的】添加生化抑制剂是提高水稻肥料利用率的有效途径之一。本研究旨在结合不同施肥模式揭示其节肥增效的群体优势,寻找适合黄泥田地区水稻高产高效的施用方式。【方法】采用二因素随机区组设计,研究生化抑制剂组合与施肥模式(一次性和分次施肥)互作对黄泥田水稻群体质量的影响。【结果】尿素分次施用处理水稻有效茎蘖数、有效叶面积指数(LAI)、抽穗至成熟期干物质积累量、抽穗期SPAD值和籽粒产量较一次性施用处理分别显著提高0.8%、24.0%、9.3%、1.5%和14.2%。不同施肥模式下,配施生化抑制剂组合N-丁基硫代磷酰三胺/N-丙基硫代磷酰三胺+2-氯-6-(三氯甲基)吡啶(NBPT/NPPT+CP)显著提高水稻有效茎蘖数及茎蘖成穗率,增加抽穗后干物质积累量,增大有效LAI,增加抽穗期SPAD值,提高水稻粒叶比,改善源库关系。相关性分析表明,抽穗至成熟期干物质累积与水稻籽粒产量呈显著正相关。新型脲酶抑制剂N-丙基硫代磷酰三胺(NPPT)单独施用及与2-氯-6-(三氯甲基)吡啶(CP)配施的水稻群体质量与N-丁基硫代磷酰三胺(NBPT)相似。【结论】通过施肥技术和抑制剂配施的集成与优化,可以改善黄泥田水稻群体质量,提高光合产物转化,获得更高产量。  相似文献   

2.
To investigate the effects of genotype and growing environment on avenanthramides and antioxidant activity of oats, the total phenolic content (TPC), avenanthramide compositions, and antioxidant activity were determined for whole oat from 39 cultivars grown in four locations in northwestern China (Inner Mongolia, Qinghai, Shanxi and Gansu). The results demonstrated that environment (E), genotype (G) and the interaction of these factors (E × G) significantly affected TPC, concentration of avenanthramide 2c (2c, ranged from 6.24 to 136.20 mg kg−1), avenanthramide 2p (2p, 6.07–112.25 mg kg−1), avenanthramide 2f (2f, 7.26–222.77 mg kg−1) and antioxidant activity of oats. The effect of E was considerably greater than that of G or E × G. Based on G plus G × E interaction biplots (GGE biplots) analysis, the four locations in northwestern China can be divided into either two or three regions. Qinghai was determined to be distinct from the other locations. Cultivar Bayou 9 and oats grown in Gansu exhibited the highest TPCs, concentrations of 2c, 2p, 2f and antioxidant activity. The results suggest that oats containing more avenanthramides and exhibiting high levels of antioxidant activity could be obtained by selecting an appropriate genotype and growth location.  相似文献   

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