首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Enhanced Expression of QTL qLL9/DEP1 Facilitates the Improvement of Leaf Morphology and Grain Yield in Rice
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Enhanced Expression of QTL qLL9/DEP1 Facilitates the Improvement of Leaf Morphology and Grain Yield in Rice

机译:QTL qLL9 / DEP1的增强表达促进水稻叶片形态和籽粒产量的改善

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摘要

In molecular breeding of super rice, it is essential to isolate the best quantitative trait loci (QTLs) and genes of leaf shape and explore yield potential using large germplasm collections and genetic populations. In this study, a recombinant inbred line (RIL) population was used, which was derived from a cross between the following parental lines: hybrid rice Chunyou84, that is, japonica maintainer line Chunjiang16B (CJ16); and indica restorer line Chunhui 84 (C84) with remarkable leaf morphological differences. QTLs mapping of leaf shape traits was analyzed at the heading stage under different environmental conditions in Hainan (HN) and Hangzhou (HZ). A major QTL qLL9 for leaf length was detected and its function was studied using a population derived from a single residual heterozygote (RH), which was identified in the original population. qLL9 was delimitated to a 16.17 kb region flanked by molecular markers C-1640 and C-1642, which contained three open reading frames (ORFs). We found that the candidate gene for qLL9 is allelic to DEP1 using quantitative real-time polymerase chain reaction (qRT-PCR), sequence comparison, and the clustered regularly interspaced short palindromic repeat-associated Cas9 nuclease (CRISPR/Cas9) genome editing techniques. To identify the effect of qLL9 on yield, leaf shape and grain traits were measured in near isogenic lines (NILs) NIL-qLL9CJ16 and NIL-qLL9C84, as well as a chromosome segment substitution line (CSSL) CSSL-qLL9KASA with a Kasalath introgressed segment covering qLL9 in the Wuyunjing (WYJ) 7 backgrounds. Our results showed that the flag leaf lengths of NIL-qLL9C84 and CSSL-qLL9KASA were significantly different from those of NIL-qLL9CJ16 and WYJ 7, respectively. Compared with NIL-qLL9CJ16, the spike length, grain size, and thousand-grain weight of NIL-qLL9C84 were significantly higher, resulting in a significant increase in yield of 15.08%. Exploring and pyramiding beneficial genes resembling qLL9C84 for super rice breeding could increase both the source (e.g., leaf length and leaf area) and the sink (e.g., yield traits). This study provides a foundation for future investigation of the molecular mechanisms underlying the source–sink balance and high-yield potential of rice, benefiting high-yield molecular design breeding for global food security.
机译:在超级稻的分子育种中,必须分离出最佳的数量性状基因座(QTL)和叶形基因,并利用大量种质资源和遗传种群来探索产量潜力。在这项研究中,使用了一个重组自交系(RIL)种群,该种群来自以下亲本系之间的杂交:杂交水稻春优84,即粳稻保持系Chunjiang16B(CJ16);与in恢复系春晖84(C84)的叶片形态差异明显。在海南(HN)和杭州(HZ)不同环境条件下抽穗期叶片形状性状的QTL定位分析。检测了主要的叶长QTL qLL9,并使用源自单个残留杂合子(RH)的种群研究了其功能,该种群在原始种群中得到鉴定。 qLL9被界定为一个16.17 kb区域,侧翼是分子标记C-1640和C-1642,其中包含三个开放阅读框(ORF)。我们发现使用定量实时聚合酶链反应(qRT-PCR),序列比较和成簇规则间隔的短回文重复相关Cas9核酸酶(CRISPR / Cas9)基因组编辑技术,qLL9的候选基因与DEP1等位。为了确定qLL9对产量的影响,在近等基因系NIL-qLL9 CJ16 和NIL-qLL9 C84 以及染色体片段替换线(CSSL)CSSL-qLL9 KASA ,在五云井(WYJ)7背景中,Kasalath渗入片段覆盖qLL9。我们的结果表明,NIL-qLL9 C84 和CSSL-qLL9 KASA 的旗叶长度与NIL-qLL9 CJ16 和WYJ 7,分别。与NIL-qLL9 CJ16 相比,NIL-qLL9 C84 的穗长,穗粒大小和千粒重均显着提高,从而显着提高了产量。 15.08%。探索和传承类似于 qLL9 C84 的超级水稻育种有益基因可以增加来源(例如叶长和叶面积)和库(例如产量性状)。这项研究为进一步研究水稻源-库平衡和水稻高产潜力的分子机制奠定了基础,有利于全球粮食安全的高产分子设计育种。

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