Collaborative Innovation Center of Modern Biological Breeding, Henan Institute of Science and Technology, Xinxiang, 453003, China.
Genes Genomics. 2022 Aug;44(8):993-1006. doi: 10.1007/s13258-022-01279-0. Epub 2022 Jun 30.
There were significant differences in the change of moisture content and grain composition at the late stage of grain development among different maize varieties, but the regulation mechanism is not clear.
To explore the key genes causing the variation in physiological traits of two typical maize inbred lines in late grain development.
The grains at different development stages were selected as materials to determine the content of water, sucrose, starch and ABA. Transcriptomic and proteomic analysis of the materials were performed to screen relevant genes.
The grain dehydration rate and the content of sucrose, starch and ABA were showed significant differences between two varieties in the late stage of grain development. The enrichment analysis of common differentially expressed genes (proteins) showed that most of the genes (proteins) were enriched in the extracellular region. The downregulated genes were mainly concentrated in carbohydrate metabolism and lipid metabolism, while the upregulated genes were mainly in response to stress. Furthermore, this study also identified many key candidate genes (dehydrin genes, pathogenesis-related genes, sucrose synthase and secondary metabolites related genes) related to late grain development of maize.
The suggested genes related to late grain development of maize can be candidates for further functional study.
不同玉米品种在灌浆后期的含水量和籽粒成分变化存在显著差异,但调控机制尚不清楚。
探讨两个典型玉米自交系在灌浆后期生理性状变异的关键基因。
以不同发育阶段的籽粒为材料,测定水分、蔗糖、淀粉和 ABA 的含量。对材料进行转录组和蛋白质组分析,筛选相关基因。
两个品种在灌浆后期籽粒脱水率以及蔗糖、淀粉和 ABA 的含量存在显著差异。共同差异表达基因(蛋白)的富集分析表明,大多数基因(蛋白)富集在外泌体区。下调基因主要集中在碳水化合物代谢和脂质代谢,而上调基因主要与应激反应有关。此外,本研究还鉴定了许多与玉米灌浆后期发育相关的关键候选基因(脱水素基因、病程相关基因、蔗糖合酶和次生代谢物相关基因)。
所提出的与玉米灌浆后期发育相关的基因可以作为进一步功能研究的候选基因。