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一种新型MORN基序型基因GmMRF2调控大豆的开花时间和株高。

A novel MORN-motif type gene GmMRF2 controls flowering time and plant height of soybean.

作者信息

Zhang Jialing, Chen Li, Cai Yupeng, Su Qiang, Chen Yingying, Li Min, Hou Wensheng

机构信息

National Center for Transgenic Research in Plants, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

National Center for Transgenic Research in Plants, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Int J Biol Macromol. 2023 Aug 1;245:125464. doi: 10.1016/j.ijbiomac.2023.125464. Epub 2023 Jun 20.

Abstract

The flowering time of soybean is a highly important agronomic characteristic, which affects the adaptability and yield. AtMRF1, a MORN-repeat motif gene, acts as a floral promoter in Arabidopsis, its functions in soybean are not yet understood. Here, we employed qRT-PCR to analyze the tissue expression patten of MRF1 homologs in soybean and determined that the GmMRF2 gene, containing a MORN-motif, highly expressed in the shoot and responded to photoperiod. GmMRF2 overexpression soybean lines exhibited earlier flowering time under long-day (LD) conditions, and increased plant height under both LD and short-day (SD) conditions compared to wild-type (WT) plants. The expression levels of gibberellic acid (GA) pathway genes that positively regulate plant height genes and flowering-promoting genes were up-regulated in the GmMRF2 overexpression lines, were up-regulated in the GmMRF2 overexpression lines. Further study revealed that GmMRF2 interacted with GmTCP15 to co-induce the expression of GmSOC1b. Together, our results preliminarily reveal the functions and mechanisms of GmMRF2 in regulating flowering time and plant height, provide a new promising gene for soybean crop improvement.

摘要

大豆的开花时间是一个非常重要的农艺性状,它影响着适应性和产量。AtMRF1是一个含有MORN重复基序的基因,在拟南芥中作为开花促进因子,但其在大豆中的功能尚不清楚。在这里,我们采用qRT-PCR分析了大豆中MRF1同源基因的组织表达模式,并确定含有MORN基序的GmMRF2基因在地上部高表达且对光周期有响应。与野生型(WT)植株相比,GmMRF2过表达大豆株系在长日(LD)条件下开花时间提前,在LD和短日(SD)条件下株高均增加。在GmMRF2过表达株系中,正向调控株高基因和促进开花基因的赤霉素(GA)途径基因的表达水平上调。进一步研究发现,GmMRF2与GmTCP15相互作用共同诱导GmSOC1b的表达。总之,我们的结果初步揭示了GmMRF2在调控开花时间和株高方面的功能和机制,为大豆作物改良提供了一个有前景的新基因。

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