首页> 美国卫生研究院文献>PLoS Clinical Trials >Endogenous tassel-specific small RNAs-mediated RNA interference enables a novel glyphosate-inducible male sterility system for commercial production of hybrid seed in Zea mays L.
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Endogenous tassel-specific small RNAs-mediated RNA interference enables a novel glyphosate-inducible male sterility system for commercial production of hybrid seed in Zea mays L.

机译:内源性流苏特异性小RNA介导的RNA干扰为玉米杂草的商业化生产提供了一种新型草甘膦可诱导的雄性不育系统。

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摘要

Hybrid crops produce higher yields than their inbred parents due to heterosis. For high purity of hybrid seeds, it is critical to eliminate self-pollination. Manual or mechanical removal of male parts (such as detasseling in maize) is labor-intensive, fuel and time-consuming, and can cause physical damage to female plants, resulting in significant seed yield reductions. Many male-sterility systems either require a maintainer for male-sterile line propagation or are often affected by environmental factors. Roundup® Hybridization System (RHS) utilizes glyphosate to induce male sterility, which effectively eliminates the need for maintainer lines and removal of male parts for commercial hybrid seed production. The first-generation RHS (RHS1) is based on low expression of a glyphosate-insensitive 5-enolpyruvylshikimate-3-phosphate synthase (CP4 EPSPS) in pollen. This report presents the second-generation RHS (RHS2) technology built on RNA interference (RNAi) combined with CP4 EPSPS. It utilizes maize endogenous male tissue-specific small interfering RNAs (mts-siRNAs) to trigger cleavage of the CP4 EPSPS mRNA specifically in tassels, resulting in glyphosate-sensitive male cells due to lack of the CP4 EPSPS protein. Male sterility is then induced by glyphosate application at the stages critical for pollen development, and the male-sterile plants are used as the female parent to produce hybrid seed. The endogenous mts-siRNAs are conserved across maize germplasms, and the inducible male sterility was replicated in representative germplasms through introgression of a CP4 EPSPS transgene containing the mts-siRNA target sequence. This technology combines the relative simplicity and convenience of a systemic herbicide spray methodology with targeted protein expression to create an inducible male sterility system for industrial production of row crop hybrid seeds in an environmentally-independent manner.
机译:由于杂种优势,杂交作物的产量比自交亲本更高。对于高纯度的杂交种子,消除自花传粉至关重要。手动或机械去除雄性部分(例如玉米中的去雄)非常费力,费力且费时,并且可能对雌性植物造成物理损害,从而大大降低种子产量。许多雄性不育系统要么需要维持雄性不育系繁殖的维持者,要么经常受到环境因素的影响。 Roundup ®杂交系统(RHS)利用草甘膦诱导雄性不育,从而有效消除了用于商业杂交种子生产的维持系和雄性部分的需要。第一代RHS(RHS1)是基于在花粉中草甘膦不敏感的5-enolpyruvylshikimate-3-磷酸盐合酶(CP4 EPSPS)的低表达。本报告介绍了基于RNA干扰(RNAi)与CP4 EPSPS相结合的第二代RHS(RHS2)技术。它利用玉米内源性雄性组织特异性小干扰RNA(mts-siRNA)触发流苏中CP4 EPSPS mRNA的裂解,由于缺少CP4 EPSPS蛋白而导致草甘膦​​敏感性雄性细胞。然后在对花粉发育至关重要的阶段通过施用草甘膦诱导雄性不育,并且将雄性不育植物用作雌性亲本以产生杂种种子。内源性mts-siRNA在整个玉米种质中都是保守的,可诱导的雄性不育通过包含mts-siRNA靶序列的CP4 EPSPS转基因的渗入在代表性种质中复制。该技术将系统性除草剂喷雾方法的相对简单性和便利性与目标蛋白表达相结合,从而创造了一种可诱导的雄性不育系统,以环境独立的方式工业生产行间杂交杂种种子。

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