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首页> 外文期刊>Scientific reports. >Knock out of the PHOSPHATE 2 Gene TaPHO2-A1 Improves Phosphorus Uptake and Grain Yield under Low Phosphorus Conditions in Common Wheat
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Knock out of the PHOSPHATE 2 Gene TaPHO2-A1 Improves Phosphorus Uptake and Grain Yield under Low Phosphorus Conditions in Common Wheat

机译:淘汰磷酸盐2 Gene Tapho2-A1在普通小麦中改善低磷条件下的磷吸收和籽粒产量

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摘要

MiR399 and its target PHOSPHATE2 (PHO2) play pivotal roles in phosphate signaling in plants. Loss of function mutation in PHO2 leads to excessive Pi accumulation in shoots and growth retardation in diploid plants like Arabidopsis thaliana and rice (Oryza sativa). Here we isolated three PHO2 homologous genes TaPHO2-A1, -B1 and -D1 from hexaploid wheat (Triticum aestivum). These TaPHO2 genes all contained miR399-binding sites and were able to be degraded by tae-miR399. TaPHO2-D1 was expressed much more abundantly than TaPHO2-A1 and -B1. The ion beam-induced deletion mutants were used to analyze the effects of TaPHO2s on phosphorus uptake and plant growth. The tapho2-a1, tapho2-b1 and tapho2-d1 mutants all had significant higher leaf Pi concentrations than did the wild type, with tapho2-d1 having the strongest effect, and tapho2-b1 the weakest. Two consecutive field experiments showed that knocking out TaPHO2-D1 reduced plant height and grain yield under both low and high phosphorus conditions. However, knocking out TaPHO2-A1 significantly increased phosphorus uptake and grain yield under low phosphorus conditions, with no adverse effect on grain yield under high phosphorus conditions. Our results indicated that TaPHO2s involved in phosphorus uptake and translocation, and molecular engineering TaPHO2 shows potential in improving wheat yield with less phosphorus fertilizer.
机译:MiR399及其靶磷酸盐2(PHO2)在植物中发挥磷酸盐信号中的枢转作用。 PHO2中功能突变的丧失导致分脂植物中的芽和生长迟缓的过度PI积累,如拟南芥和米饭(Oryza sativa)。在这里,我们将三个pho2同源基因Tapho2-a1,-b1和-d1分离出来的六倍体小麦(Triticum aestivum)。这些Tapho2基因均含有miR399结合位点,并且能够通过Tae-miR399降解。 TaphO2-D1比Tapho2-A1和-B1更大。离子束诱导的缺失突变体用于分析Tapho2s对磷吸收和植物生长的影响。 Tapho2-A1,Tapho2-B1和Tapho2-D1突变体均具有显着的叶PI浓度,而不是野生型,具有最强的效果,Tapho2-B1最弱。两个连续的现场实验表明,在低磷条件下敲除TaphO2-D1降低的植物高度和籽粒产量。然而,敲除Tapho2-A1在低磷条件下显着增加了磷吸收和籽粒产量,对高磷条件下的籽粒产量没有不利影响。我们的结果表明,涉及磷吸收和易位的Tapho2s和分子工程Tapho2显示出改善小麦产量的潜力较少的磷肥。

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