花色苷积累相关, 通过 ROS 清除促进幼苗耐盐性。
The Anthocyanin Accumulation Related , Facilitates Seedling Salinity Stress Tolerance via ROS Scavenging.
机构信息
Seed Science and Technology Research Center, Beijing Innovation Center for Seed Technology (MOA), Beijing Key Laboratory for Crop Genetic Improvement, College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, China.
Department of Agronomy, Iowa State University, 2035 Roy J. Carver Co-Laboratory, Ames, IA 50011-3650, USA.
出版信息
Int J Mol Sci. 2022 Dec 17;23(24):16123. doi: 10.3390/ijms232416123.
Anthocyanins are a class of antioxidants that scavenge free radicals in cells and play an important role in promoting human health and preventing many diseases. Here, we characterized a maize gene () from the purple colored W22 introgression line, which encodes an anthocyanin 3-O-glucosyltransferase, a key enzyme in the anthocyanin synthesis pathway. Mutation of showed bronze-colored seeds and reduced anthocyanins in seeds aleurone layer, seedlings coleoptile, and stem of mature plants by comparison with purple colored W22 (WT). Furthermore, we proved that maize BZ1 is an aleurone layer-specific expressed protein and sub-located in cell nucleus. Real-time tracing of the anthocyanins in developing seeds demonstrated that the pigment was visible from 16 DAP (day after pollination) in field condition, and first deposited in the crown part then spread all over the seed. Additionally, it was transferred along with the embryo cell activity during seed germination, from aleurone layer to cotyledon and coleoptile, as confirmed by microscopy and real-time qRT-PCR. Finally, we demonstrated that the ZmBZ1 contributes to stress tolerance, especially salinity. Further study proved that ZmBZ1 participates in reactive oxygen scavenging (ROS) by accumulating anthocyanins, thereby enhancing the tolerance to abiotic stress.
花色苷是一类抗氧化剂,可清除细胞内的自由基,在促进人体健康和预防许多疾病方面发挥着重要作用。在这里,我们从紫色 W22 导入系中鉴定了一个玉米基因(),该基因编码花色苷 3-O-葡萄糖基转移酶,这是花色苷合成途径中的关键酶。与紫色 W22(WT)相比,突变后的种子呈青铜色,且种皮糊粉层、幼苗胚轴和成熟植株茎中的花色苷含量降低。此外,我们证明玉米 BZ1 是糊粉层特异性表达的蛋白,亚定位在细胞核中。对发育中的种子中花色苷的实时追踪表明,在田间条件下,色素从授粉后 16 天(DAP)开始可见,并首先沉积在冠部,然后扩散到整个种子。此外,通过显微镜和实时 qRT-PCR 证实,它在种子萌发过程中伴随着胚细胞的活动从糊粉层转移到子叶和胚轴。最后,我们证明 ZmBZ1 有助于耐受应激,特别是盐胁迫。进一步的研究证明,ZmBZ1 通过积累花色苷参与活性氧(ROS)的清除,从而增强对非生物胁迫的耐受性。