首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Genome Editing to Integrate Seed Size and Abiotic Stress Tolerance Traits in Arabidopsis Reveals a Role for DPA4 and SOD7 in the Regulation of Inflorescence Architecture
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Genome Editing to Integrate Seed Size and Abiotic Stress Tolerance Traits in Arabidopsis Reveals a Role for DPA4 and SOD7 in the Regulation of Inflorescence Architecture

机译:基因组编辑整合种子大小和拟南芥中的非生物胁迫耐受性状揭示了DPA4和SOD7在花序调控中的作用。

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摘要

Both seed size and abiotic stress tolerance are important agronomic traits in crops. In Arabidopsis, two closely related transcription repressors DPA4 (Development-Related PcG Target in the APEX4)/NGAL3 and SOD7 (Suppressor of da1-1)/NGAL2 (NGATHA-like protein) function redundantly to regulate seed size, which was increased in the dpa4 sod7 double mutants. Whereas ABA-induced transcription repressors (AITRs) are involved in the regulation of ABA signaling and abiotic stress tolerance, Arabidopsis aitr2 aitr5 aitr6 (aitr256) triple mutant showed enhanced tolerance to drought and salt. Here we performed CRISPR/Cas9 genome editing to disrupt DPA4 and SOD7 in aitr256 mutant, trying to integrate seed size and abiotic stress tolerance traits in Arabidopsis, and also to examine whether DPA4 and SOD7 may regulate other aspects of plant growth and development. Indeed, seed size was increased in the dpa4 sod7 aitr256 quintuple mutants, and enhanced tolerance to drought was observed in the mutants. In addition, we found that shoot branching was affected in the dpa4 sod7 aitr256 mutants. The mutant plants failed to produce secondary branches, and flowers/siliques were distributed irregularly on the main stems of the plants. Floral organ number and fertility were also affected in the dpa4 sod7 aitr256 mutant plants. To examine if these phenotypes were dependent on loss-of-function of AITRs, dpa4 sod7 double mutants were generated in Col wild type background, and we found that the dpa4 sod7 mutant plants showed a phenotype similar to the dpa4 sod7 aitr256 quintuple mutants. Taken together, our results indicate that the integration of seed size and abiotic stress tolerance traits by CRISPR/Cas9 editing was successful, and our results also revealed a role of DPA4 and SOD7 in the regulation of inflorescence architecture in Arabidopsis.
机译:种子大小和非生物胁迫耐受性都是作物重要的农艺性状。在拟南芥中,两个密切相关的转录阻遏物DPA4(APEX4中与发育相关的PcG靶标)/ NGAL3和SOD7(da1-1的阻遏物)/ NGAL2(NGATHA样蛋白)多余地调节种子大小,在种子大小中增加dpa4 sod7双突变体。 ABA诱导的转录阻遏物(AITRs)参与ABA信号传导和非生物胁迫耐受性的调控,而拟南芥aitr2 aitr5 aitr6(aitr256)三重突变体显示出对干旱和盐分的耐受性增强。在这里,我们进行了CRISPR / Cas9基因组编辑以破坏aitr256突变体中的DPA4和SOD7,试图整合拟南芥中的种子大小和非生物胁迫耐受性状,还研究了DPA4和SOD7是否可以调节植物生长发育的其他方面。确实,在dpa4 sod7 aitr256五元组突变体中种子大小增加,并且在突变体中观察到对干旱的耐受性增强。此外,我们发现在dpa4 sod7 aitr256突变体中,芽的分支受到影响。突变植物未能产生次要分支,并且花朵/长角果不规则地分布在植物的主茎上。 dpa4 sod7 aitr256突变植物的花器官数目和育性也受到影响。为了检查这些表型是否依赖于AITRs的功能丧失,在Col野生型背景下生成了dpa4 sod7双重突变体,我们发现dpa4 sod7突变体植物的表型与dpa4 sod7 aitr256五元突变体相似。综上所述,我们的结果表明通过CRISPR / Cas9编辑成功整合了种子大小和非生物胁迫耐受性状,我们的结果还揭示了DPA4和SOD7在拟南芥花序结构调控中的作用。

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