首页> 外文期刊>Acta Physiologiae Plantarum >Different response of an elite Bt restorer line of hybrid rice (Oryza sativa L.) in adaptation to nitrogen deficiency
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Different response of an elite Bt restorer line of hybrid rice (Oryza sativa L.) in adaptation to nitrogen deficiency

机译:杂交稻(Oryza Sativa L.)的Elite BT恢复系的不同响应适应氮缺乏

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Transgenic Bacillus thuringiensis (Bt) rice have been reported to acquire effective resistance against the target pests; however, the insertion and expression of alien Bt genes may have some unintended effects on the growth characteristics of rice. A screen-house experiment was conducted and repeated twice to investigate the growth characteristics and Bt protein expressions in two Bt rice lines [MH63 (Cry2A*) and MH63 (Cry1Ab/Ac)], which had different Bt protein expression levels in leaves, under zero nitrogen (N0) and recommended nitrogen (NR) fertilizer applications. Compared to the counterpart MH63, MH63 (Cry2A*) under N0 experienced accelerated leaf senescence and a lower internal N use efficiency (IEN), resulting in a 23.2% decrease in grain yield and a lower accumulated biomass. These variations were revealed to be correlated to the higher ratio of the Bt protein content to the soluble protein content (BTC/SPC) with a maximum value of 4.3 parts per thousand in MH63 (Cry2A*) leaves in the late growth stage. Under NR, no differences in growth characteristics between MH63 (Cry2A*) and MH63 were found. The growth characteristics of MH63 (Cry1Ab/Ac), with a lower BTC/SPC in the late growth stage compared to MH63 (Cry2A*), were identical to those of MH63 under the two N applications. Results show that the transgenic Bt rice MH63 (Cry2A*), with a relatively higher Bt protein expression in the late growth stage, had an inferior adaptation to nitrogen deficiency compared to its non-Bt counterpart. And this inferior adaptation was found to be correlated with the higher BTC/SPC in MH63 (Cry2A*) leaves in the late growth stage.
机译:据报道,转基因芽孢杆菌(BT)米氏植物(BT)米为目标害虫获得有效抗性;然而,外星Bt基因的插入和表达可能对水稻的生长特性有一些意外的作用。进行屏幕房屋实验并重复两次,以研究两个BT稻米[MH63(Cry2a *)和MH63(Cry1ab / Ac)中的生长特性和Bt蛋白表达],其在叶子下具有不同的BT蛋白表达水平零氮(N0)和推荐的氮气(NR)肥料应用。与N0经历的促进叶片衰老(MH63)的对应MH63,MH63(CRY2A *)相比,较低的内部N使用效率(IEN),导致籽粒产量和较低的累积生物质降低23.2%。揭示这些变化与Bt蛋白质含量与可溶性蛋白质含量(BTC / SPC)的较高比率相关,其在晚期生长阶段的MH63(Cry2a *)中最大值为4.3份每千份。在NR下,发现MH63(CRY2A *)和MH63之间的生长特性没有差异。与MH63(Cry2a *)相比,MH63(Cry1ab / Ac)的生长特性,具有下降生长阶段的低BTC / SPC,与两种N申请中的MH63相同。结果表明,与其非BT对应相比,转基因BT水稻MH63(Cry2A *)具有相对较高的BT蛋白表达,对氮缺乏症进行了较差的适应性。发现这种较差的适应与晚期生长阶段的叶片中的较高BTC / SPC相关。

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