Guan Jiantao, Wang Zhenyu, Liu Shaoshuai, Kong Xingchen, Wang Fang, Sun Guoliang, Geng Shuaifeng, Mao Long, Zhou Peng, Li Aili
National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Sino-Agro Research Station for Salt Tolerant Crops, Yellow River Delta, Kenli District, Dongying 257500, China.
Biology (Basel). 2022 Feb 10;11(2):281. doi: 10.3390/biology11020281.
Grain development, as a vital process in the crop's life cycle, is crucial for determining crop quality and yield. The wheat grain expanding phase is the early process involving the rapid morphological changes and initiation of grain filling. However, little is known about the molecular basis of grain development at this stage. Here, we provide a time-series transcriptome profile of developing wheat grain at 0, 2, 4, 6, 8, and 10 days after pollination of the wheat landrace Chinese Spring. A total of 26,892 differentially expressed genes, including 1468 transcription factors, were found between adjacent time points. Co-expression cluster analysis and Gene Ontology enrichment revealed dynamic expressions of cell division and starch biosynthesis related structural genes and transcription factors. Moreover, diverse, differential and drastically varied expression trends of the key genes related to hormone metabolism were identified. Furthermore, ~30% of triads showed unbalanced expression patterns enriching for genes in multiple pivotal metabolic pathways. Hormone metabolism related genes, such as (YUCCA flavin-containing monooxygenase 10), (allene oxide synthase 2), (cytochrome P450 90D2), and (cytokinin dehydrogenase 1), were dominantly contributed by A or D homoeologs of the triads. Our study provided a systematic picture of transcriptional regulation of wheat grains at the early grain expanding phase which should deepen our understanding of wheat grain development and help in wheat yield improvement.
籽粒发育作为作物生命周期中的一个重要过程,对于决定作物品质和产量至关重要。小麦籽粒膨大期是一个早期过程,涉及快速的形态变化和籽粒灌浆的启动。然而,目前对于这一阶段籽粒发育的分子基础知之甚少。在此,我们提供了小麦地方品种中国春授粉后0、2、4、6、8和10天发育中小麦籽粒的时间序列转录组图谱。在相邻时间点之间共发现了26,892个差异表达基因,其中包括1468个转录因子。共表达聚类分析和基因本体富集揭示了细胞分裂和淀粉生物合成相关结构基因及转录因子的动态表达。此外,还鉴定了与激素代谢相关的关键基因的多样、差异和剧烈变化的表达趋势。此外,约30%的三联体显示出不平衡的表达模式,富集了多个关键代谢途径中的基因。激素代谢相关基因,如(含黄素单加氧酶10)、(丙二烯氧化物合酶2)、(细胞色素P450 90D2)和(细胞分裂素脱氢酶1),主要由三联体的A或D同源基因贡献。我们的研究提供了小麦籽粒早期膨大阶段转录调控的系统图景,这将加深我们对小麦籽粒发育的理解,并有助于提高小麦产量。