Lin Zhiyi, He Zunzhen, Ye Daoling, Deng Honghong, Lin Lijin, Wang Jin, Lv Xiulan, Deng Qunxian, Luo Xian, Liang Dong, Xia Hui
College of Horticulture, Sichuan Agricultural University, Chengdu, China.
Front Plant Sci. 2023 Jun 19;14:1159942. doi: 10.3389/fpls.2023.1159942. eCollection 2023.
MADS-box is a large transcription factor family in plants and plays a crucial role in various plant developmental processes; however, it has not been systematically analyzed in kiwifruit. In the present study, 74 AcMADS genes were identified in the Red5 kiwifruit genome, including 17 type-I and 57 type-II members according to the conserved domains. The AcMADS genes were randomly distributed across 25 chromosomes and were predicted to be mostly located in the nucleus. A total of 33 fragmental duplications were detected in the AcMADS genes, which might be the main force driving the family expansion. Many hormone-associated -acting elements were detected in the promoter region. Expression profile analysis showed that members had tissue specificity and different responses to dark, low temperature, drought, and salt stress. Two genes in the AG group, and , had high expression levels during fruit development, and the role of was further verified by stable overexpression in kiwifruit seedlings. The content of α-carotene and the ratio of zeaxanthin/β-carotene was increased in transgenic kiwifruit seedlings, and the expression level of was significantly increased, suggesting that plays an important role in regulating carotenoid accumulation. These results have enriched our understanding of the MADS-box gene family and laid a foundation for further research of the functions of its members during kiwifruit development.
MADS盒是植物中一个庞大的转录因子家族,在各种植物发育过程中起着关键作用;然而,它尚未在猕猴桃中得到系统分析。在本研究中,在红阳猕猴桃基因组中鉴定出74个AcMADS基因,根据保守结构域,其中包括17个I型成员和57个II型成员。AcMADS基因随机分布在25条染色体上,预计主要位于细胞核中。在AcMADS基因中总共检测到33个片段重复,这可能是驱动该家族扩张的主要力量。在启动子区域检测到许多与激素相关的作用元件。表达谱分析表明,成员具有组织特异性,并且对黑暗、低温、干旱和盐胁迫有不同反应。AG组中的两个基因, 和 ,在果实发育过程中具有高表达水平,并且 通过在猕猴桃幼苗中的稳定过表达进一步验证了其作用。转基因猕猴桃幼苗中α-胡萝卜素含量以及玉米黄质/β-胡萝卜素的比例增加,并且 的表达水平显著增加,表明 在调节类胡萝卜素积累中起重要作用。这些结果丰富了我们对MADS盒基因家族的理解,并为进一步研究其成员在猕猴桃发育过程中的功能奠定了基础。