Key Laboratory of Biology and Germplasm Enhancement of Horticultural Crops in South China, Ministry of Agriculture and Rural Affairs, College of Horticulture, South China Agricultural University, Guangzhou 510642, China.
Maoming Branch, Guangdong Laboratory for Lingnan Modern Agriculture, Maoming 525000, China.
Int J Mol Sci. 2023 Sep 22;24(19):14457. doi: 10.3390/ijms241914457.
Albino seedlings that arise during seed reproduction can have a significant impact on plant growth and breeding. In this research, we present the first report of albino occurrences in the seed reproduction process of and describe the cytological, physiological, and transcriptomic changes observed in albino seedlings. The albino seedlings which were observed in several plum cultivars exhibited abnormal chloroplast ultrastructure and perturbed stomatal structure. Compared to normal seedlings, the photosynthetic pigment contents in albino seedlings decreased by more than 90%, accompanied by significant reductions in several chlorophyll fluorescence parameters. Furthermore, substantially changed photosynthetic parameters indicated that the photosynthetic capacity and stomatal function were impaired in albino seedlings. Additionally, the activities of the antioxidant enzyme were drastically altered against the background of higher proline and lower ascorbic acid in leaves of albino seedlings. A total of 4048 differentially expressed genes (DEGs) were identified through transcriptomic sequencing, and the downregulated DEGs in albino seedlings were greatly enriched in the pathways for photosynthetic antenna proteins and flavonoid biosynthesis. and were identified as candidate genes responsible for the impaired chloroplast development and division in albino seedlings. Additionally, the substantial decline in the expression levels of examined photosystem-related chloroplast genes was validated in albino seedlings. Our findings shed light on the intricate physiological and molecular mechanisms driving albino plum seedling manifestation, which will contribute to improving the reproductive and breeding efforts of plums.
白化苗在种子繁殖过程中出现,会对植物的生长和繁殖产生重大影响。在这项研究中,我们首次报道了 在种子繁殖过程中出现白化苗的情况,并描述了在白化苗中观察到的细胞学、生理学和转录组变化。在几个李品种中观察到的白化苗表现出异常的叶绿体超微结构和干扰的气孔结构。与正常幼苗相比,白化苗中的光合色素含量下降了 90%以上,同时几个叶绿素荧光参数也显著降低。此外,明显改变的光合参数表明白化苗的光合能力和气孔功能受损。此外,在白化苗叶片中,抗氧化酶的活性在脯氨酸升高和抗坏血酸降低的背景下发生了剧烈变化。通过转录组测序共鉴定出 4048 个差异表达基因(DEGs),白化苗中下调的 DEGs 在光合天线蛋白和类黄酮生物合成途径中得到了极大的富集。 和 被鉴定为导致白化苗中叶绿体发育和分裂受损的候选基因。此外,在白化苗中验证了所检查的与光合作用相关的叶绿体基因的表达水平显著下降。我们的研究结果揭示了驱动白化李苗出现的复杂生理和分子机制,这将有助于提高李的繁殖和育种工作。