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甜瓜短节间基因(CmSi)编码一种类ERECTA受体激酶,通过生长素信号传导调节茎的伸长。

Melon short internode (CmSi) encodes an ERECTA-like receptor kinase regulating stem elongation through auxin signaling.

作者信息

Yang Sen, Zhang Kaige, Zhu Huayu, Zhang Xiaojing, Yan Wenkai, Xu Nana, Liu Dongming, Hu Jianbin, Wu Yufeng, Weng Yiqun, Yang Luming

机构信息

College of Horticulture, Henan Agricultural University, 63 Nongye Road, 450002, Zhengzhou, China.

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

出版信息

Hortic Res. 2020 Dec 1;7(1):202. doi: 10.1038/s41438-020-00426-6.

Abstract

Plant height is one of the most important agronomic traits that directly determines plant architecture, and compact or dwarf plants can allow for increased planting density and land utilization as well as increased lodging resistance and economic yield. At least four dwarf/semidwarf genes have been identified in different melon varieties, but none of them have been cloned, and little is known about the molecular mechanisms underlying internode elongation in melon. Here, we report map-based cloning and functional characterization of the first semidwarf gene short internode (Cmsi) in melon, which encodes an ERECTA-like receptor kinase regulating internode elongation. Spatial-temporal expression analyses revealed that CmSI exhibited high expression in the vascular bundle of the main stem during internode elongation. The expression level of CmSI was positively correlated with stem length in the different melon varieties examined. Ectopic expression of CmSI in Arabidopsis and cucumber suggested CmSI as a positive regulator of internode elongation in both species. Phytohormone quantitation and transcriptome analysis showed that the auxin content and the expression levels of a number of genes involved in the auxin signaling pathway were altered in the semidwarf mutant, including several well-known auxin transporters, such as members of the ABCB family and PIN-FORMED genes. A melon polar auxin transport protein CmPIN2 was identified by protein-protein interaction assay as physically interacting with CmSI to modulate auxin signaling. Thus, CmSI functions in an auxin-dependent regulatory pathway to control internode elongation in melon. Our findings revealed that the ERECTA family gene CmSI regulates stem elongation in melon through auxin signaling, which can directly affect polar auxin transport.

摘要

株高是直接决定植株形态的最重要农艺性状之一,紧凑型或矮化型植株能够提高种植密度和土地利用率,同时增强抗倒伏能力并提高经济产量。在不同甜瓜品种中已鉴定出至少4个矮化/半矮化基因,但均未被克隆,关于甜瓜节间伸长的分子机制也知之甚少。在此,我们报道了甜瓜中首个半矮化基因短节间(Cmsi)的图位克隆及功能特性分析,该基因编码一种调控节间伸长的类ERECTA受体激酶。时空表达分析表明,CmSI在节间伸长期间于主茎维管束中高表达。在所检测的不同甜瓜品种中,CmSI的表达水平与茎长呈正相关。CmSI在拟南芥和黄瓜中的异位表达表明,CmSI在这两个物种中均为节间伸长的正向调节因子。植物激素定量和转录组分析表明,半矮化突变体中的生长素含量以及一些参与生长素信号通路的基因的表达水平发生了改变,包括几个著名的生长素转运蛋白,如ABCB家族成员和PIN-FORMED基因。通过蛋白质-蛋白质相互作用试验鉴定出一种甜瓜极性生长素转运蛋白CmPIN2与CmSI发生物理相互作用以调节生长素信号。因此,CmSI在生长素依赖性调控途径中发挥作用,以控制甜瓜的节间伸长。我们的研究结果表明,ERECTA家族基因CmSI通过生长素信号调节甜瓜茎的伸长,这可直接影响极性生长素运输。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec9f/7705010/0a98f0876b33/41438_2020_426_Fig1_HTML.jpg

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