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绣球花中ATP结合盒转运蛋白(ABCs)的过表达增强了对铝的耐受性。

Overexpression of ATP binding cassette transporters (ABCs) from Hydrangea macrophylla enhance aluminum tolerance.

作者信息

Chen Shuangshuang, Chen Wenjuan, Liu Yiming, Ahmad Muhammad Zulfiqar, Feng Jing, Chen Huijie, Qi Xiangyu, Deng Yanming

机构信息

Jiangsu Key Laboratory for Horticultural Crop Genetic Improvement, Institute of Leisure Agriculture, Jiangsu Academy of Agricultural Sciences, Nanjing, Jiangsu 210014, China.

Jiangsu Key Laboratory for Horticultural Crop Genetic Improvement, Institute of Leisure Agriculture, Jiangsu Academy of Agricultural Sciences, Nanjing, Jiangsu 210014, China; A Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing, Jiangsu 210037, China.

出版信息

J Hazard Mater. 2025 Sep 5;495:138988. doi: 10.1016/j.jhazmat.2025.138988. Epub 2025 Jun 18.

Abstract

The ATP-binding cassette (ABC) transporter family represents a large and diverse protein superfamily that plays a crucial role in responding to metal elements stresses. Hydrangea macrophylla is notable for its sepal's bright blue color caused by sequestration of an aluminum (Al) binding pigment in the sepal vacuoles. This allows the species to thrive in acidic soil with high toxic levels of Al. However, the information of ABC family in hydrangea and their roles underlying Al stress are still limited. This study performed a genome-wide characterization, expression analysis and functional assessment of the HmABC family members. The results showed that total 133 HmABC genes were identified from the genome of H. macrophylla 'Bailer', which were classified into eight subfamilies. Furthermore, numerous hormone-response and stress-related promoter cis-acting elements were identified within the HmABC genes. The expansion and duplication of HmABC genes were driven by whole-genome duplication (WGD), segmental duplication, and tandem duplication events. Co-expression analysis identified that 12 ABC members were of hub genes. Expression analysis indicated that these genes were induced in different tissues during Al treatment. Overexpression of certain HmABC genes showed that they can enhance the tolerance of yeast and Arabidopsis to Al by increasing gene expression levels, elevating Al accumulation, and boosting antioxidative enzymatic activities. This discovery lays a foundation for further exploration of the biological functions of HmABCs in hydrangea responding to Al stress, and is helpful for the phytoremediation of acid soils.

摘要

ATP结合盒(ABC)转运蛋白家族是一个庞大且多样的蛋白质超家族,在应对金属元素胁迫中起着关键作用。绣球花以其萼片的亮蓝色而闻名,这种颜色是由萼片液泡中螯合的一种铝(Al)结合色素所致。这使得该物种能够在铝含量高且有毒的酸性土壤中茁壮成长。然而,绣球花中ABC家族的信息及其在铝胁迫下的作用仍然有限。本研究对HmABC家族成员进行了全基因组特征分析、表达分析和功能评估。结果表明,从‘贝利’绣球花的基因组中总共鉴定出133个HmABC基因,它们被分为八个亚家族。此外,在HmABC基因中鉴定出了许多与激素反应和胁迫相关的启动子顺式作用元件。HmABC基因的扩增和复制是由全基因组复制(WGD)、片段重复和串联重复事件驱动。共表达分析确定了12个ABC成员为枢纽基因。表达分析表明,这些基因在铝处理过程中在不同组织中被诱导。某些HmABC基因的过表达表明,它们可以通过提高基因表达水平、增加铝积累和增强抗氧化酶活性来提高酵母和拟南芥对铝的耐受性。这一发现为进一步探索HmABCs在绣球花响应铝胁迫中的生物学功能奠定了基础,有助于酸性土壤的植物修复。

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