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LMI1 样和 KNOX1 基因协同调控双子叶植物的叶片发育。

LMI1-like and KNOX1 genes coordinately regulate plant leaf development in dicotyledons.

机构信息

State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Agriculture, Nanjing Agricultural University, Nanjing, 210095, China.

Crop Science Institute, Agronomy Department, College of Agriculture and Biotechnology, Zhejiang University, Zhejiang, 310029, China.

出版信息

Plant Mol Biol. 2019 Mar;99(4-5):449-460. doi: 10.1007/s11103-019-00829-7. Epub 2019 Jan 28.

Abstract

This report reveals that the LMI1-like and KNOX1 genes coordinately control the leaf development and different combinations of those genes which produce diverse leaf shapes including broad, lobed and compound leaves. Class I KNOTTED1-like homeobox (KNOX1) genes are involved in compound leaf development and are repressed by the ASYMMETRIC LEAVES1 (AS1)-AS2 complex. Cotton plants have a variety of leaf shapes, including broad leaves and lobed leaves. GhOKRA, a LATE MERISTEM IDENTITY 1 (LMI1)-like gene, controls the development of an okra leaf shape. We cloned the corresponding cotton homologs of Arabidopsis thaliana AS1 and AS2 and seven KNOX1 genes. Through virus-induced gene silencing technology, we found that either GhAS1 or GhAS2-silenced cotton plants showed a great change in leaf shape from okra leaves to trifoliolate dissected leaves. In the shoot tips of these plants, the expression of the cotton ortholog of Knotted in A. thaliana 1 (KNAT1), GhKNOTTED1-LIKE2/3/4 (GhKNL2/3/4), was increased. However, GhKNOX1s-silenced plants maintained the wild-type okra leaves. A novel dissected-like leaf in A. thaliana was further generated by crossing plants constitutively expressing GhOKRA with either as1-101 or as2-101 mutant plants. The dissected-like leaves showed two different leaf vein patterns. This report reveals that the LMI1-like and KNOX1 genes coordinately control leaf development, and different combinations of these genes produce diverse leaf shapes including broad leaves, lobed leaves and compound leaves. This is the first report on the artificial generation of compound leaves from simple leaves in cotton.

摘要

本报告揭示 LMI1 样和 KNOX1 基因协同控制叶片发育,不同基因组合产生不同的叶片形状,包括宽叶、裂片叶和复叶。I 类 KNOTTED1 类同源盒(KNOX1)基因参与复叶发育,并受 ASYMMETRIC LEAVES1(AS1)-AS2 复合物的抑制。棉花植物具有多种叶片形状,包括宽叶和裂片叶。GhOKRA 是 LATE MERISTEM IDENTITY 1(LMI1)样基因,控制着黄秋葵叶形状的发育。我们克隆了拟南芥 AS1 和 AS2 及七个 KNOX1 基因的棉花同源基因。通过病毒诱导的基因沉默技术,我们发现 GhAS1 或 GhAS2 沉默的棉花植株的叶片形状从黄秋葵叶变为三叶分裂叶。在这些植株的茎尖中,拟南芥 Knotted in A. thaliana 1(KNAT1)的棉花同源基因 GhKNOTTED1-LIKE2/3/4(GhKNL2/3/4)的表达增加。然而,GhKNOX1 沉默的植株保持了野生型黄秋葵叶。通过将 GhOKRA 组成型表达的植株与 as1-101 或 as2-101 突变植株杂交,进一步产生了拟南芥的新型分裂叶。这种分裂叶表现出两种不同的叶脉模式。本报告揭示 LMI1 样和 KNOX1 基因协同控制叶片发育,不同基因组合产生不同的叶片形状,包括宽叶、裂片叶和复叶。这是第一个关于在棉花中从简单叶人工产生复叶的报告。

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