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首页> 外文期刊>Frontiers in Plant Science >High Potassium Application Rate Increased Grain Yield of Shading-Stressed Winter Wheat by Improving Photosynthesis and Photosynthate Translocation
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High Potassium Application Rate Increased Grain Yield of Shading-Stressed Winter Wheat by Improving Photosynthesis and Photosynthate Translocation

机译:通过改善光合作用和光合物易位,高钾施用速率提高着阴影强调冬小麦的籽粒产量

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Wheat ( Triticum aestivum L) production on the Huang-Huai Plain of China has substantially affected in the past 50 years as a result of the decreasing total solar radiation and sunshine hours. Potassium has a significant effect on improving leaf photosynthesis ability under stress conditions. Five potassium application rates (K), 0 (K0), 50 (K50), 100 (K100), 150 (K150), and 250 (K250) mg K _(2)O kg ~(-1) soil, combined with two shading levels, no shading (NS) and shading at early filling stage for 10 days (SE), were used to investigate the effects of K application on winter wheat growth under SE condition. Under NS condition, the parameters related to chlorophyll fluorescence characteristics, dry matter productivity and grain yields reached the maximum values at a middle K application rate (100 mg K _(2)O kg ~(-1) soil). Shading stress significantly reduced leaf SPAD value, showed negative effects on chlorophyll fluorescence characteristics and reduced grain yield of winter wheat. However, as the result of the interaction of K×S, compared to NS condition, higher K application rate (150 mg and 250 K _(2)O kg ~(-1) soil) was beneficial in terms of achieving a higher grain yield of winter wheat under SE by improving leaf SPAD value, alleviating the damage of SE on the winter wheat photosynthetic system, and increasing fructan content and dry matter translocation percentage.
机译:小麦(Triticum Aestivum L)在中国黄淮平原的产量在过去50年里大幅影响,由于太阳辐射总辐射和阳光时间减少。钾对压力条件下改善叶片光合能力有显着影响。五个钾施用速率(k),0(k0),50(K50),100(K100),150(K150)和250(K250)Mg K _(2)O Kg〜(-1)土壤,结合早期填充阶段的两个阴影水平,没有阴影(NS)和遮蔽10天(SE),探讨K在SE条件下对冬小麦生长的影响。在NS条件下,与叶绿素荧光特性,干物质生产率和谷物产率相关的参数达到中间K施用速率(100mg K _(2)kg〜(-1)土壤)的最大值。遮蔽应力显着降低了叶子Spad值,对叶绿素荧光特性和冬小麦的降低谷物产量显示出负面影响。然而,随着K×S的相互作用的结果,与NS条件相比,较高的K施用率(150mg和250k _(2)o kg〜(-1)土壤)在实现更高的谷物方面是有益的通过改善叶片表值,减轻冬小麦光合体系的损伤,增加果岭含量和干物质易位百分比SE冬小麦产量。

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