College of Horticulture and Landscape Architecture, Zhongkai University of Agriculture and Engineering, Guangzhou, 510225, Guangdong, China.
Plant Science Center, South China Botanical Garden, Chinese Academy of Science, , Guangzhou, 510650, Guangzhou, China.
DNA Res. 2024 Aug 1;31(4). doi: 10.1093/dnares/dsae024.
With glossy, wax-coated leaves, Rubus leucanthus is one of the few heat-tolerant wild raspberry trees. To ascertain the underlying mechanism of heat tolerance, we generated a high-quality genome assembly with a genome size of 230.9 Mb and 24,918 protein-coding genes. Significantly expanded gene families were enriched in the flavonoid biosynthesis pathway and the circadian rhythm-plant pathway, enabling survival in subtropical areas by accumulating protective flavonoids and modifying photoperiodic responses. In contrast, plant-pathogen interaction and MAPK signaling involved in response to pathogens were significantly contracted. The well-known heat response elements (HSP70, HSP90, and HSFs) were reduced in R. leucanthus compared to two other heat-intolerant species, R. chingii and R. occidentalis, with transcriptome profiles further demonstrating their dispensable roles in heat stress response. At the same time, three significantly positively selected genes in the pathway of cuticular wax biosynthesis were identified, and may contribute to the glossy, wax-coated leaves of R. leucanthus. The thick, leathery, waxy leaves protect R. leucanthus against pathogens and herbivores, supported by the reduced R gene repertoire in R. leucanthus (355) compared to R. chingii (376) and R. occidentalis (449). Our study provides some insights into adaptive divergence between R. leucanthus and other raspberry species on heat tolerance.
具有光滑、蜡质叶子的白刺悬钩子是少数几种耐热野生覆盆子树之一。为了确定耐热的潜在机制,我们生成了一个高质量的基因组组装,其基因组大小为 230.9Mb,包含 24918 个蛋白质编码基因。显著扩展的基因家族在类黄酮生物合成途径和昼夜节律植物途径中富集,通过积累保护性类黄酮和修饰光周期反应来在亚热带地区生存。相比之下,与两种不耐热的物种(刺梨和空心泡)相比,植物-病原体相互作用和参与对病原体反应的 MAPK 信号通路显著收缩。与另外两个耐热性差的物种(刺梨和空心泡)相比,白刺悬钩子中的热响应元件(HSP70、HSP90 和 HSFs)减少,转录组图谱进一步证明了它们在热胁迫反应中的可有可无的作用。同时,鉴定出角质层蜡生物合成途径中有三个显著正选择的基因,可能有助于白刺悬钩子具有光滑、蜡质的叶子。厚厚的、坚韧的、蜡质的叶子保护白刺悬钩子免受病原体和食草动物的侵害,这与白刺悬钩子(355)比刺梨(376)和空心泡(449)中 R 基因库减少有关。我们的研究为白刺悬钩子和其他覆盆子物种在耐热性方面的适应性分化提供了一些见解。