• ISSN 1008-505X
  • CN 11-3996/S
田松, 银婷, 陈雪平, 王彦华, 罗双霞, 申书兴. 不同氮效率茄子基因型及其杂种F1的氮素吸收特性[J]. 植物营养与肥料学报, 2011, 17(1): 147-153. DOI: 10.11674/zwyf.2011.0120
引用本文: 田松, 银婷, 陈雪平, 王彦华, 罗双霞, 申书兴. 不同氮效率茄子基因型及其杂种F1的氮素吸收特性[J]. 植物营养与肥料学报, 2011, 17(1): 147-153. DOI: 10.11674/zwyf.2011.0120
TIAN Song, YIN Ting, CHEN Xue-ping, WANG Yan-hua, LUO Shuang-xia, SHEN Shu-xing. Characteristics of nitrogen uptake in eggplant genotypes with different nitrogen efficiency and their hybrid F1s[J]. Journal of Plant Nutrition and Fertilizers, 2011, 17(1): 147-153. DOI: 10.11674/zwyf.2011.0120
Citation: TIAN Song, YIN Ting, CHEN Xue-ping, WANG Yan-hua, LUO Shuang-xia, SHEN Shu-xing. Characteristics of nitrogen uptake in eggplant genotypes with different nitrogen efficiency and their hybrid F1s[J]. Journal of Plant Nutrition and Fertilizers, 2011, 17(1): 147-153. DOI: 10.11674/zwyf.2011.0120

不同氮效率茄子基因型及其杂种F1的氮素吸收特性

Characteristics of nitrogen uptake in eggplant genotypes with different nitrogen efficiency and their hybrid F1s

  • 摘要: 为阐明杂种一代在氮素吸收方面的优势,研究了不同氮效率茄子基因型及其杂种 F1的氮素吸收特性。试验以3个典型氮效率的茄子基因型及其F1代为材料,研究其在正常供氮和低氮胁迫条件下的根系体积、根系干重、氮素吸收总量、根系活力、硝酸还原酶活性及谷氨酰胺合成酶活性。结果表明,与高氮低效-低氮低效基因型L相比,氮高效基因型H1、H2的单株根系体积、根系干重、根系活力以及氮素吸收总量均较大; 且具有较高的硝酸还原酶与谷氨酰胺合成酶活性。三个杂交组合F1-1(L×H1)、F1-2(L×H2)和F1-3(H1×H2)的单株根系体积、根系干重、根系活力、硝酸还原酶活性、谷氨酰胺合成酶活性以及氮素吸收总量的中亲优势(Hm)和超亲优势(Hp)多为正向优势; 其中,组合F1-3杂种优势最为明显。利用杂种在氮素吸收方面的优势,对于改善植株体内的氮代谢水平进而提高氮效率具有重要意义。

     

    Abstract: In order to elucidate the heterosis on nitrogen uptake in the F1 hybrids, the nitrogen (N) absorption characteristics of the eggplant genotypes with different N efficiencies and their hybrid F1s were studied. Under normal and low N stress conditions, root volume, root dry weight, N uptake, root activity, nitrate reductase activity and glutamine synthetase activity of leaves were studied in three typical eggplant genotypes with different N efficiencies and their hybrids. Compared with low N efficiency genotypes(L),the root volume, root dry weight, root activity, total N uptake per plant, nitrate reductase activity and glutamine synthetase activity of the cultivars with high N efficiency (H1 and H2) are all higher. In the three F1 hybrids, F1-1 (L × H1), F1-2 (L × H2), and F1-3 (H1 × H2), the root volume, root dry weight , root activity, nitrate reductase activityof leaves, glutamine synthetase activity of leaves and total N uptake per plant of Hm and Hp are mostly positive,in which the hybrid F1-3 has the best heterosis. Using the heterosis on N uptake in the F1 hybrids, it will be useful to improve the N metabolism and increase the N efficiency of the plant.

     

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