Liaoning Institute of Pomolgy, Yingkou, Liaoning, China.
PLoS One. 2022 Aug 26;17(8):e0273109. doi: 10.1371/journal.pone.0273109. eCollection 2022.
Pistil abortions of flower buds occur frequently in many apricot cultivars, especially in long branches. However, the molecular mechanism underlying pistil abortion in apricots remains unclear. To better understand the molecular mechanism of pistil abortions between long branches and spur twigs, paraffin sections and high-throughput sequencing technology were employed to analyze the expression patterns of genes associated with pistil abortions during later flower bud development stage in 'Shajinhong' apricot. The result of stage III (separation of bud scales) was the critical stage of pistil abortion in apricots. A total of 163 differentially expressed genes were identified as candidate genes related to pistil abortion in long branches. These genes are implicated in programmed cell death, hormone signaling, cell wall degeneration, and the carbohydrate metabolism pathway. The results showed that the up-regulation of gene expression of Xyloglucan endotransglucosylase/hydrolase and β-glucosidase in flower buds might be the direct cause of cell wall breakdown and pistil necrosis in long branches. We hypothesize that there is a molecular relationship between pistil abortion before blooming and cellulose degradation, and then carbohydrate transport in the case of carbon deficiency in long branches. Our work provides new insights into cellulose degradation in abortion pistils and valuable information on flower development in apricots, and also provides a useful reference for cultivation regulation in apricot or other fruit crops.
花朵花蕾的雌蕊败育在许多杏品种中经常发生,特别是在长枝上。然而,杏中雌蕊败育的分子机制尚不清楚。为了更好地理解长枝和短果枝之间雌蕊败育的分子机制,采用石蜡切片和高通量测序技术分析了‘沙金红’杏在后期花蕾发育阶段与雌蕊败育相关的基因表达模式。在第三期(芽鳞片分离)是杏雌蕊败育的关键阶段。共鉴定出 163 个差异表达基因作为与长枝雌蕊败育相关的候选基因。这些基因与程序性细胞死亡、激素信号、细胞壁降解和碳水化合物代谢途径有关。结果表明,花中木葡聚糖内转糖基酶/水解酶和β-葡萄糖苷酶基因表达的上调可能是长枝细胞壁破裂和雌蕊坏死的直接原因。我们假设在长枝碳饥饿的情况下,开花前的雌蕊败育与纤维素降解之间存在分子关系,然后是碳水化合物的运输。我们的工作为败育雌蕊中的纤维素降解提供了新的见解,并为杏的花发育提供了有价值的信息,也为杏或其他果树枝条培养调控提供了有益的参考。