Department of Agriculture and Natural Resources, Delaware State University, Dover, DE 19901, USA.
Optical Science Center for Applied Research (OSCAR), Delaware State University, Dover, DE 19901, USA.
Int J Mol Sci. 2021 Mar 1;22(5):2481. doi: 10.3390/ijms22052481.
Blueberries ( spp.) are highly vulnerable to changing climatic conditions, especially increasing temperatures. To gain insight into mechanisms underpinning the response to heat stress, two blueberry species were subjected to heat stress for 6 and 9 h at 45 °C, and leaf samples were used to study the morpho-physiological and transcriptomic changes. As compared with , exhibited thermal stress adaptation features such as small leaf size, parallel leaf orientation, waxy leaf coating, increased stomatal surface area, and stomatal closure. RNAseq analysis yielded ~135 million reads and identified 8305 differentially expressed genes (DEGs) during heat stress against the control samples. In , 2861 and 4565 genes were differentially expressed at 6 and 9 h of heat stress, whereas in , 2516 and 3072 DEGs were differentially expressed at 6 and 9 h, respectively. Among the pathways, the protein processing in the endoplasmic reticulum (ER) was the highly enriched pathway in both the species: however, certain metabolic, fatty acid, photosynthesis-related, peroxisomal, and circadian rhythm pathways were enriched differently among the species. KEGG enrichment analysis of the DEGs revealed important biosynthesis and metabolic pathways crucial in response to heat stress. The GO terms enriched in both the species under heat stress were similar, but more DEGs were enriched for GO terms in than the . Together, these results elucidate the differential response of morpho-physiological and molecular mechanisms used by both the blueberry species under heat stress, and help in understanding the complex mechanisms involved in heat stress tolerance.
蓝莓( spp.)对气候变化,尤其是温度升高非常敏感。为了深入了解其对热应激的响应机制,本研究将两个蓝莓品种分别在 45°C 下热应激 6 小时和 9 小时,并使用叶片样本研究其形态生理和转录组变化。与 相比, 表现出热应激适应特征,如叶片较小、叶片平行、叶片蜡质涂层、增加的气孔表面积和气孔关闭。RNAseq 分析产生了约 1.35 亿个reads,并鉴定出 8305 个在对照样品中表达差异的基因(DEGs)。在 中,6 小时和 9 小时的热应激分别有 2861 和 4565 个基因表达差异,而在 中,6 小时和 9 小时的热应激分别有 2516 和 3072 个基因表达差异。在途径中,内质网(ER)中的蛋白质加工是两个物种中高度富集的途径:然而,某些代谢、脂肪酸、光合作用相关、过氧化物酶体和昼夜节律途径在物种间的富集方式不同。KEGG 富集分析显示,DEGs 揭示了对热应激反应至关重要的重要生物合成和代谢途径。在热应激下,两个物种中富集的 GO 术语相似,但 中富集的 GO 术语比 更多。综上所述,这些结果阐明了两个蓝莓品种在热应激下形态生理和分子机制的差异响应,有助于理解热应激耐受中涉及的复杂机制。