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利用同源重组介导的基因靶向技术创制的一个新的水稻 OsMADS1 基因缺失突变体的鉴定。

Characterization of a new rice OsMADS1 null mutant generated by homologous recombination-mediated gene targeting.

机构信息

Department of Plant Biotechnology, School of Biotechnology, Madurai Kamaraj University, Madurai, Tamil Nadu, 625021, India.

Department of Microbiology and Cell Biology, Indian Institute of Science, Bengaluru, 560012, India.

出版信息

Planta. 2021 Jan 21;253(2):39. doi: 10.1007/s00425-020-03547-3.

Abstract

A new, stable, null mutant of OsMADS1 generated by homologous recombination-based gene targeting in an indica rice confirms its regulatory role for floral meristem identity, its determinate development and floral organ differentiation. OsMADS1, an E-class MADS-box gene, is an important regulator of rice flower development. Studies of several partial loss-of-function and knockdown mutants show varied floret organ defects and degrees of meristem indeterminacy. The developmental consequences of a true null mutant on floret meristem identity, its determinate development and differentiation of grass-specific organs such as the lemma and palea remain unclear. In this study, we generated an OsMADS1 null mutant by homologous recombination-mediated gene targeting by inserting a selectable marker gene (hpt) in OsMADS1 and replacing parts of its cis-regulatory and coding sequences. A binary vector was constructed with diphtheria toxin A chain gene (DT-A) as a negative marker to eliminate random integrations and the hpt marker for positive selection of homologous recombination. Precise disruption of the endogenous OsMADS1 locus in the rice genome was confirmed by Southern hybridization. The homozygous osmads1ko null mutant displayed severe defects in all floral organs including the lemma and palea. We also noticed striking instances of floral reversion to inflorescence and vegetative states which has not been reported for other mutant alleles of OsMADS1 and further reinforces the role of OsMADS1 in controlling floral meristem determinacy. Our data suggest, OsMADS1 commits and maintains determinate floret development by regulating floral meristem termination, carpel and ovule differentiation genes (OsMADS58, OsMADS13) while its modulation of genes such as OsMADS15, OsIG1 and OsMADS32 could be relevant in the differentiation and development of palea. Further, our study provides an important perspective on developmental stage-dependent modulation of some OsMADS1 target genes.

摘要

利用基于同源重组的基因靶向技术在籼稻中生成的一个新的、稳定的 OsMADS1 无效突变体,证实了它对花分生组织身份、其决定的发育和花器官分化的调控作用。OsMADS1 是一个 E 类 MADS 框基因,是水稻花发育的重要调控因子。对几个部分功能丧失和敲低突变体的研究表明,小花器官存在不同程度的缺陷和分生组织不定的程度。一个真正的无效突变体对小花分生组织身份、其决定的发育以及颖片和内稃等草特有的器官的分化的发育后果仍然不清楚。在这项研究中,我们通过同源重组介导的基因靶向将一个选择标记基因(hpt)插入 OsMADS1 并替换其部分顺式调控和编码序列,从而生成了一个 OsMADS1 无效突变体。构建了一个带有白喉毒素 A 链基因(DT-A)作为负标记的二元载体,以消除随机整合,并用 hpt 标记进行同源重组的阳性选择。通过 Southern 杂交证实了水稻基因组中内源 OsMADS1 基因座的精确破坏。纯合的 osmads1ko 无效突变体在所有花器官包括颖片和内稃中都表现出严重的缺陷。我们还注意到花向花序和营养状态的惊人反转,这在其他 OsMADS1 突变等位基因中没有报道过,进一步强化了 OsMADS1 在控制花分生组织确定性中的作用。我们的数据表明,OsMADS1 通过调节花分生组织终止、心皮和胚珠分化基因(OsMADS58、OsMADS13)来启动和维持决定的小花发育,而其对 OsMADS15、OsIG1 和 OsMADS32 等基因的调节可能与内稃的分化和发育有关。此外,我们的研究为一些 OsMADS1 靶基因在发育阶段的依赖性调节提供了一个重要的视角。

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