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A novel male sterility-fertility restoration system in plants for hybrid seed production

机译:一种用于杂交种子生产的新型植物雄性不育恢复系统

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摘要

Hybrid seeds are used for stimulated crop production, as they harness heterosis. The achievement of complete male-sterility in the female-parent and the restored-fertility in F1-hybrids are the major bottlenecks in the commercial hybrid seed production. Here, we report a male sterility–fertility restoration system by engineering the inmost nutritive anther wall layer tapetum of female and male parents. In the female parent, high–level, and stringent expression of Arabidopsis autophagy–related gene BECLIN1 was achieved in the tapetum, which altered the tapetal degeneration program, leading to male sterility. This works on our previously demonstrated expression cassette based on functional complementation of TATA-box mutant (TGTA) promoter and TATA-binding protein mutant3 (TBPm3), with modification by conjugating Long Hypocotyle in Far-Red1 fragment (HFR1NT131) with TBPm3 (HFR1NT131-TBPm3) to exercise regulatory control over it. In the male parent, tapetum–specific Constitutive photo-morphogenesis1 (COP1) was expressed. The F1 obtained by crossing these engineered parents showed decreased BECLIN1 expression, which was further completely abolished when COP1-mutant (COP1L105A) was used as a male parent, leading to normal tapetal development and restored fertility. The system works on COP1-HFR1 interaction and COP1–mediated degradation of TBPm3 pool (HFR1NT131-TBPm3). The system can be deployed for hybrid seed production in agricultural crops.
机译:杂交种子利用杂种优势,可用于刺激作物生产。在雌性双亲中实现完全雄性不育以及在F1杂种中恢复生育力是商业杂交种子生产的主要瓶颈。在这里,我们报告了一种通过对雌性和雄性父母最营养的花药壁层绒毡层进行工程改造而形成的雄性不育-生殖力恢复系统。在雌性亲本中,绒毡层实现了拟南芥自噬相关基因BECLIN1的高水平和严格表达,从而改变了绒毡层变性程序,导致雄性不育。该功能适用​​于我们先前展示的表达盒,该表达盒基于TATA盒突变体(TGTA)启动子和TATA结合蛋白突变体3(TBPm3)的功能互补,并通过结合Far-Red1片段(HFR1 NT131 sup>)与TBPm3(HFR1 NT131 -TBPm3)对其进行监管。在雄性父母中,绒毡层特有的组成型光形态发生1(COP1)被表达。通过与这些工程化亲本杂交获得的F1表现出BECLIN1表达降低,当将COP1突变体(COP1 L105A )用作雄性亲本时,该蛋白进一步被完全消除,导致绒毛正常发育并恢复了生育能力。该系统可用于COP1-HFR1相互作用和COP1介导的TBPm3库(HFR1 NT131 -TBPm3)降解。该系统可用于农作物杂交种子生产。

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