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MIKCc MADS盒基因的转录谱分析揭示了其在大麦花序发育中的保守和新功能。

Transcript Profiling of MIKCc MADS-Box Genes Reveals Conserved and Novel Roles in Barley Inflorescence Development.

作者信息

Kuijer Hendrik N J, Shirley Neil J, Khor Shi F, Shi Jin, Schwerdt Julian, Zhang Dabing, Li Gang, Burton Rachel A

机构信息

School of Agriculture Food and Wine, University of Adelaide, Glen Osmond, SA, Australia.

Joint International Research Laboratory of Metabolic and Developmental Sciences, Shanghai Jiao Tong University-University of Adelaide Joint Centre for Agriculture and Health, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Front Plant Sci. 2021 Sep 1;12:705286. doi: 10.3389/fpls.2021.705286. eCollection 2021.

Abstract

MADS-box genes have a wide range of functions in plant reproductive development and grain production. The ABCDE model of floral organ development shows that MADS-box genes are central players in these events in dicotyledonous plants but the applicability of this model remains largely unknown in many grass crops. Here, we show that transcript analysis of all MIKCc MADS-box genes through barley ( L.) inflorescence development reveals co-expression groups that can be linked to developmental events. Thirty-four MIKCc MADS-box genes were identified in the barley genome and single-nucleotide polymorphism (SNP) scanning of 22,626 barley varieties revealed that the natural variation in the coding regions of these genes is low and the sequences have been extremely conserved during barley domestication. More detailed transcript analysis showed that MADS-box genes are generally expressed at key inflorescence developmental phases and across various floral organs in barley, as predicted by the ABCDE model. However, expression patterns of some genes, for example (AGAMOUS subfamily) and (SEPALLATA subfamily), clearly deviate from predicted patterns. This places them outside the scope of the classical ABCDE model of floral development and demonstrates that the central tenet of antagonism between A- and C-class gene expression in the ABC model of other plants does not occur in barley. Co-expression across three correlation sets showed that specifically grouped members of the barley MIKCc MADS-box genes are likely to be involved in developmental events driving inflorescence meristem initiation, floral meristem identity and floral organ determination. Based on these observations, we propose a potential floral ABCDE working model in barley, where the classic model is generally upheld, but that also provides new insights into the role of MIKCc MADS-box genes in the developing barley inflorescence.

摘要

MADS盒基因在植物生殖发育和籽粒生产中具有广泛的功能。花器官发育的ABCDE模型表明,MADS盒基因是双子叶植物这些过程的核心参与者,但该模型在许多禾本科作物中的适用性在很大程度上仍不清楚。在此,我们表明,通过大麦(L.)花序发育对所有MIKCc MADS盒基因进行转录分析,揭示了可与发育事件相关联的共表达组。在大麦基因组中鉴定出34个MIKCc MADS盒基因,对22626个大麦品种进行单核苷酸多态性(SNP)扫描发现,这些基因编码区的自然变异较低,且在大麦驯化过程中序列极为保守。更详细的转录分析表明,正如ABCDE模型所预测的,MADS盒基因通常在大麦花序发育的关键阶段以及各种花器官中表达。然而,一些基因的表达模式,例如(AGAMOUS亚家族)和(SEPALLATA亚家族),明显偏离了预测模式。这使它们超出了经典的花发育ABCDE模型的范围,并表明其他植物ABC模型中A类和C类基因表达之间拮抗作用的核心原则在大麦中并不存在。跨三个相关性集的共表达表明,大麦MIKCc MADS盒基因中特定分组的成员可能参与驱动花序分生组织起始、花分生组织特性和花器官决定的发育事件。基于这些观察结果,我们提出了一个大麦潜在的花ABCDE工作模型,其中经典模型总体上得到支持,但也为MIKCc MADS盒基因在发育中的大麦花序中的作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48b9/8442994/1b8e3a0a0536/fpls-12-705286-g001.jpg

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