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APETALA2同源基因CaFFN调控辣椒开花时间。

The APETALA2 homolog CaFFN regulates flowering time in pepper.

作者信息

Yuan Xinjie, Fang Rong, Zhou Kunhua, Huang Yueqin, Lei Gang, Wang Xiaowu, Chen Xuejun

机构信息

Institute of Vegetables and Flowers, Jiangxi Academy of Agricultural Sciences, 330200, Nanchang, China.

Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, 100081, Beijing, China.

出版信息

Hortic Res. 2021 Nov 1;8(1):208. doi: 10.1038/s41438-021-00643-7.

Abstract

Flowering time is an important agronomic trait that contributes to fitness in plants. However, the genetic basis of flowering time has not been extensively studied in pepper. To understand the genetics underlying flowering time, we constructed an F population by crossing a spontaneous early flowering mutant and a late-flowering pepper line. Using bulked segregant RNA-seq, a major locus controlling flowering time in this population was mapped to the end of chromosome 2. An APETALA2 (AP2) homolog (CaFFN) cosegregated with flowering time in 297 individuals of the F population. A comparison between the parents revealed a naturally occurring rare SNP (SNP2T > C) that resulted in the loss of a start codon in CaFFN in the early flowering mutant. Transgenic Nicotiana benthamiana plants with high CaFFN expression exhibited a delay in flowering time and floral patterning defects. On the other hand, pepper plants with CaFFN silencing flowered early. Therefore, the CaFFN gene acts as a flowering repressor in pepper. CaFFN may function as a transcriptional activator to activate the expression of CaAGL15 and miR156e and as a transcriptional repressor to repress the expression of CaAG, CaAP1, CaSEP3, CaSOC1, and miR172b based on a qRT-PCR assay. Direct activation of CaAGL15 by CaFFN was detected using yeast one-hybrid and dual-luciferase reporter assays, consistent with the hypothesis that CaFFN regulates flowering time. Moreover, the CaFFN gene association analysis revealed a significant association with flowering time in a natural pepper population, indicating that the CaFFN gene has a broad effect on flowering time in pepper. Finally, the phylogeny, evolutionary expansion and expression patterns of CaFFN/AP2 homologs were analyzed to provide valuable insight into CaFFN. This study increases our understanding of the involvement of CaFFN in controlling flowering time in pepper, thus making CaFFN a target gene for breeding early maturing pepper.

摘要

开花时间是一个重要的农艺性状,对植物的适应性有重要影响。然而,辣椒开花时间的遗传基础尚未得到广泛研究。为了了解开花时间的遗传机制,我们通过将一个自发的早花突变体与一个晚花辣椒品系杂交构建了一个F群体。利用混合分组分离RNA测序,将该群体中控制开花时间的一个主要位点定位到2号染色体末端。一个APETALA2(AP2)同源基因(CaFFN)在F群体的297个个体中与开花时间共分离。亲本之间的比较揭示了一个自然发生的罕见单核苷酸多态性(SNP2T>C),该多态性导致早花突变体中CaFFN的起始密码子丢失。高表达CaFFN的转基因本氏烟草植株表现出开花时间延迟和花型缺陷。另一方面,CaFFN沉默的辣椒植株开花较早。因此,CaFFN基因在辣椒中作为开花抑制因子发挥作用。基于qRT-PCR分析,CaFFN可能作为转录激活因子激活CaAGL15和miR156e的表达,并作为转录抑制因子抑制CaAG、CaAP1、CaSEP3、CaSOC1和miR172b的表达。通过酵母单杂交和双荧光素酶报告基因分析检测到CaFFN对CaAGL15的直接激活,这与CaFFN调节开花时间的假设一致。此外,CaFFN基因关联分析显示在一个自然辣椒群体中与开花时间存在显著关联,表明CaFFN基因对辣椒开花时间有广泛影响。最后,分析了CaFFN/AP2同源基因的系统发育、进化扩张和表达模式,为深入了解CaFFN提供了有价值的见解。本研究增进了我们对CaFFN参与调控辣椒开花时间的理解,从而使CaFFN成为培育早熟辣椒的目标基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef0a/8558333/f4af81a8fe8a/41438_2021_643_Fig1_HTML.jpg

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