A combination of upstream alleles involved in rice heading hastens natural long-day responses.

IF 1.6 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Genes & genomics Pub Date : 2024-11-20 DOI:10.1007/s13258-024-01597-5
Myung-Shin Kim, Joung Sug Kim, Sang Ik Song, Kyong Mi Jun, Su-Hyeon Shim, Jong-Seong Jeon, Tae-Ho Lee, Sang-Bok Lee, Gang-Seob Lee, Yeon-Ki Kim
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Abstract

Background: The female parental line Jinbuol (JBO, early heading) and two recombinant isogenic lines, JSRIL1 and JSRIL2, have been shown to flower 44, 34 and 16 days earlier, respectively, than the male parental line Samgwang (SG, late heading) in paddy fields.

Objective: To explore how photoperiodicity-related genes are involved in differential heading among these lines.

Methods: Deep sequencing was conducted for these lines, photoperiodicity-related genes (71) were categorized, and qRT-PCR was performed for some key genes.

Results: Deep sequencing revealed a nearly even contribution of parental groups, with 48.5% and 45% of the chromosomes in JSRIL1 and JSRIL2, respectively, inherited from the female parent JBO; however, Chr6 contained the most biased parental contribution, with 99.4% inherited from the female parent. The variation in single-nucleotide polymorphisms (SNPs) among many known flower-inducing genes, including rice GIGANTEA (OsGI); grain number, plant height and heading date 7 (Ghd7); and EARLY HEADING DATE 1 (Ehd1), was minimal. In the JSRILs, HEADING DATE 1 (Hd1) and VERNALIZATION INSENSITIVE 3-LIKE 1 (OsVIL2) originated from JBO, whereas FLAVIN-BINDING, KELCH REPEAT, F BOX 1 (OsFKF1) originated from SG. Interestingly, HEN1 suppressor 1 (OsHESO1) originated from SG in JSRIL1 and JBO in JSRIL2. RNA sequencing and qRT‒PCR analyses of plants at the floral meristem stage revealed that transcriptional regulation through chromosomal restructuring and posttranscriptional regulation might control minute gene regulation, resulting in delayed heading in JSRILs.

Conclusion: Our gene expression and SNP analyses of elite recombinant isogenic lines could be helpful in understanding how photoperiodicity-related genes in rice are modulated.

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参与水稻抽穗的上游等位基因组合可加速自然长日照反应。
背景:在水稻田中,雌性亲本品系Jinbuol(JBO,早熟)和两个重组异源品系JSRIL1和JSRIL2的开花期分别比雄性亲本品系Samgwang(SG,晚熟)早44天、34天和16天:目的:探讨光周期相关基因如何参与这些品系的不同头状花序:方法:对这些品系进行深度测序,对光周期相关基因(71 个)进行分类,并对一些关键基因进行 qRT-PCR 分析:结果:深度测序结果表明,亲本群体的贡献几乎是平均的,JSRIL1和JSRIL2中分别有48.5%和45%的染色体遗传自雌性亲本JBO;然而,Chr6中的亲本贡献最为偏颇,99.4%遗传自雌性亲本。许多已知的花诱导基因,包括水稻 GIGANTEA(OsGI)、谷粒数、株高和头花日期 7(Ghd7)以及早头花日期 1(Ehd1),其单核苷酸多态性(SNPs)的变化极小。在 JSRILs 中,头花日期 1(Hd1)和弱化敏感 3-LIKE 1(OsVIL2)起源于 JBO,而 FLAVIN-BINDING, KELCH REPEAT, F BOX 1(OsFKF1)起源于 SG。有趣的是,在 JSRIL1 中,HEN1 抑制因子 1(OsHESO1)来源于 SG,而在 JSRIL2 中,HEN1 抑制因子 1(OsHESO1)来源于 JBO。对处于花分生组织阶段的植株进行的 RNA 测序和 qRT-PCR 分析表明,通过染色体重组进行的转录调控和转录后调控可能控制着微小基因的调控,从而导致 JSRILs 的延迟萌发:我们对精英重组同源系的基因表达和 SNP 分析有助于了解水稻光周期相关基因是如何被调控的。
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来源期刊
Genes & genomics
Genes & genomics 生物-生化与分子生物学
CiteScore
3.70
自引率
4.80%
发文量
131
审稿时长
6-12 weeks
期刊介绍: Genes & Genomics is an official journal of the Korean Genetics Society (http://kgenetics.or.kr/). Although it is an official publication of the Genetics Society of Korea, membership of the Society is not required for contributors. It is a peer-reviewed international journal publishing print (ISSN 1976-9571) and online version (E-ISSN 2092-9293). It covers all disciplines of genetics and genomics from prokaryotes to eukaryotes from fundamental heredity to molecular aspects. The articles can be reviews, research articles, and short communications.
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