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首页> 外文期刊>Plant Production Science >Effect of Nitrogen Fertilization on Photosynthetic Characters and Dry Matter Production in F1 Hybrids of Rice (Oryza sativa L.)
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Effect of Nitrogen Fertilization on Photosynthetic Characters and Dry Matter Production in F1 Hybrids of Rice (Oryza sativa L.)

机译:施氮对水稻F1杂种光合特性和干物质生产的影响

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This study was carried out to determine heterosis in different photosynthetic and morphological characters, and to observe photosynthetic ability and dry matter production potentiality of two F1 hybrids of rice grown in pots supplied with N fertilizer in the normal or double dose. Photosynthetic rate in terms of CO2 exchange rate (CER), leaf N concentration, SPAD value, soluble protein content and ribulose-1, 5-bisphosphate carboxylase (Rubisco) activity was increased significantly by doubling the dose of fertilizer in most parental cultivars and F1 hybrids, but the rate of increase was higher in F1 hybrids than in their parents. Several morphological parameters were also increased significantly by doubling the dose of fertilizer, but not the percentage of dead leaf blades. The rates of increase of plant height, leaf area and dry matter production were higher in F1 hybrids. In particular, the rates of increase of total dry matter and root weight were very high in one of the F1 hybrids. The percentage of dead leaf blades decreased significantly in plants grown with a high dose of fertilizer as a result of higher leaf N concentration. At a normal fertilizer dose, both F1 hybrids failed to show positive heterosis in most photosynthetic characters. However, positive heterosis was found at a high fertilizer dose. Both F1 hybrids showed positive heterosis over mid-parent in dry matter production per plant at both fertilizer doses. One of the F1 hybrids also showed positive heterosis over the better parent. Heterosis in most photosynthetic and morphological characters was increased by increasing the dose of fertilizer. The sufficient supply by doubling the dose of fertilizer increased the leaf N concentration, chlorophyll content, soluble protein content and Rubisco activity in F1 hybrids, which led to higher positive heterosis in CER. A larger leaf area plus higher CER, especially at a high fertilizer dose, contributed to higher dry matter production in F1 hybrids of rice.
机译:本研究旨在确定不同光合作用和形态特征的杂种优势,并观察在正常或双剂量氮肥条件下种植的两个水稻F1杂交水稻的光合能力和干物质生产潜力。通过在大多数亲本品种和F1中加倍施肥量,可显着提高光合速率,包括CO2交换率(CER),叶片氮浓度,SPAD值,可溶性蛋白质含量和核糖-1、5-双磷酸羧化酶(Rubisco)活性。杂种,但F1杂种的增加率高于其亲本。通过使肥料剂量增加一倍,一些形态参数也显着增加,但死叶片的百分比没有增加。 F1杂种的株高,叶面积和干物质产量的增加率较高。特别是,其中一种F1杂种的总干物质和根重的增加速率非常高。由于较高的叶片氮含量,在高剂量肥料下生长的植物中死叶片的百分比显着降低。在正常肥料剂量下,两个F1杂种在大多数光合特性上均未显示出正杂种优势。然而,在高肥料剂量下发现阳性杂种优势。在两种肥料剂量下,两种F1杂种在单株干物质生产上均表现出高于中亲的杂种优势。 F1杂种之一也表现出比更好的亲本更正的杂种优势。增加肥料的用量可以增加大多数光合和形态特征的杂种优势。通过翻倍施肥来提供足够的供应量可以增加F1杂种的叶片氮素含量,叶绿素含量,可溶性蛋白含量和Rubisco活性,从而导致CER的较高的正杂种优势。较大的叶面积和较高的CER(尤其是在高肥料剂量下)有助于提高水稻F1杂种的干物质产量。

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