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小麦(Triticum aestivum L.)种子成熟相关转录程序及种子休眠和大小/重量基因型差异背后的调控网络。

Seed maturation associated transcriptional programs and regulatory networks underlying genotypic difference in seed dormancy and size/weight in wheat (Triticum aestivum L.).

作者信息

Yamasaki Yuji, Gao Feng, Jordan Mark C, Ayele Belay T

机构信息

Department of Plant Science, University of Manitoba, 222 Agriculture Building, Winnipeg, MB, R3T 2N2, Canada.

Morden Research and Development Centre, Agriculture and Agri-Food Canada, Morden, MB, R6M 1Y5, Canada.

出版信息

BMC Plant Biol. 2017 Sep 16;17(1):154. doi: 10.1186/s12870-017-1104-5.

Abstract

BACKGROUND

Maturation forms one of the critical seed developmental phases and it is characterized mainly by programmed cell death, dormancy and desiccation, however, the transcriptional programs and regulatory networks underlying acquisition of dormancy and deposition of storage reserves during the maturation phase of seed development are poorly understood in wheat. The present study performed comparative spatiotemporal transcriptomic analysis of seed maturation in two wheat genotypes with contrasting seed weight/size and dormancy phenotype.

RESULTS

The embryo and endosperm tissues of maturing seeds appeared to exhibit genotype-specific temporal shifts in gene expression profile that might contribute to the seed phenotypic variations. Functional annotations of gene clusters suggest that the two tissues exhibit distinct but genotypically overlapping molecular functions. Motif enrichment predicts genotypically distinct abscisic acid (ABA) and gibberellin (GA) regulated transcriptional networks contribute to the contrasting seed weight/size and dormancy phenotypes between the two genotypes. While other ABA responsive element (ABRE) motifs are enriched in both genotypes, the prevalence of G-box-like motif specifically in tissues of the dormant genotype suggests distinct ABA mediated transcriptional mechanisms control the establishment of dormancy during seed maturation. In agreement with this, the bZIP transcription factors that co-express with ABRE enriched embryonic genes differ with genotype. The enrichment of SITEIIATCYTC motif specifically in embryo clusters of maturing seeds irrespective of genotype predicts a tissue specific role for the respective TCP transcription factors with no or minimal contribution to the variations in seed dormancy.

CONCLUSION

The results of this study advance our understanding of the seed maturation associated molecular mechanisms underlying variation in dormancy and weight/size in wheat seeds, which is a critical step towards the designing of molecular strategies for enhancing seed yield and quality.

摘要

背景

成熟是种子发育的关键阶段之一,其主要特征是程序性细胞死亡、休眠和脱水。然而,对于小麦种子发育成熟阶段休眠获得和贮藏物质积累的转录程序和调控网络,我们了解甚少。本研究对两种种子重量/大小和休眠表型不同的小麦基因型种子成熟过程进行了比较时空转录组分析。

结果

成熟种子的胚和胚乳组织在基因表达谱上呈现出基因型特异性的时间变化,这可能导致种子表型变异。基因簇的功能注释表明,这两种组织具有不同但基因型重叠的分子功能。基序富集预测,基因型不同的脱落酸(ABA)和赤霉素(GA)调控转录网络导致了两种基因型种子重量/大小和休眠表型的差异。虽然其他ABA响应元件(ABRE)基序在两种基因型中均富集,但类似G-box的基序在休眠基因型组织中尤为普遍,这表明不同的ABA介导转录机制控制种子成熟过程中休眠的建立。与此一致的是,与ABRE富集的胚胎基因共表达的bZIP转录因子因基因型而异。无论基因型如何,SITEIIATCYTC基序在成熟种子的胚簇中特异性富集,这预测了相应TCP转录因子在组织中的特定作用,对种子休眠变异的贡献不大或没有贡献。

结论

本研究结果增进了我们对小麦种子休眠和重量/大小变异相关分子机制的理解,这是设计提高种子产量和质量分子策略的关键一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c989/5603048/c42f66b46732/12870_2017_1104_Fig1_HTML.jpg

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