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西番莲 HD-ZIP 基因:特征、表达变异和过表达 PeHB31 通过木质素途径增强耐旱性。

Passion fruit HD-ZIP genes: Characterization, expression variance, and overexpression PeHB31 enhanced drought tolerance via lignin pathway.

机构信息

Tropical Crops Genetic Resources Institute, CATAS, National Key Laboratory for Tropical Crop Breeding/Hainan Key Laboratory for Biosafety Monitoring and Molecular Breeding in Off-Season Reproduction Regions, Sanya Research Institute, Germplasm Repository of Passiflora, CATAS, Hainan 571101, China; Laboratory of Crop Gene Resources and Germplasm Enhancement in Southern China, Ministry of Agriculture and Rural Affairs, Key Laboratory of Tropical Crops Germplasm Resources Genetic Improvement and Innovation of Hainan Province, Haikou 571101, China.

Tropical Crops Genetic Resources Institute, CATAS, National Key Laboratory for Tropical Crop Breeding/Hainan Key Laboratory for Biosafety Monitoring and Molecular Breeding in Off-Season Reproduction Regions, Sanya Research Institute, Germplasm Repository of Passiflora, CATAS, Hainan 571101, China; Laboratory of Crop Gene Resources and Germplasm Enhancement in Southern China, Ministry of Agriculture and Rural Affairs, Key Laboratory of Tropical Crops Germplasm Resources Genetic Improvement and Innovation of Hainan Province, Haikou 571101, China; Hainan Seed Industry Laboratory, Sanya 572024, China.

出版信息

Int J Biol Macromol. 2024 Sep;276(Pt 1):133603. doi: 10.1016/j.ijbiomac.2024.133603. Epub 2024 Jul 4.

Abstract

The HD-ZIP (homeodomain-leucine zipper) genes hold significant importance in transcriptional regulation, especially in plant development and responses to abiotic stresses. However, a comprehensive study targeting HD-ZIP family members in passion fruit has been absent. In our current research, 34 HD-ZIP family members (PeHBs) were identified by bioinformatics analysis. Transcriptome analysis revealed that PeHBs exhibited distinct expression patterns when subjected to the four different abiotic stresses, and significant differential expression of PeHBs was also found among the three developmental stages of the fruit and between the purple and yellow genotype passion fruit leaves. An integrated metabolome and transcriptome analysis further revealed that the HD-ZIP III class gene PeHB31 (homologous to ATHB8), was co-upexpressed with lignans in yellow fruit P. edulis (commonly used as a resistance rootstock) when compared to purple fruit P. edulis. The transformation of Arabidopsis and yeast with the PeHB31 gene showed an enhancement in their capacity to withstand drought conditions. Notably, the transgenic Arabidopsis plants exhibited an increase in lignin content within the vascular tissues of their stems. This research lays the groundwork for future studies on the control mechanisms of lignin biosynthesis by HD-ZIP genes (especially HD-ZIP classes III and I) involved in drought tolerance.

摘要

HD-ZIP(同源域-亮氨酸拉链)基因在转录调控中具有重要意义,特别是在植物发育和对非生物胁迫的响应中。然而,目前还缺乏针对百香果 HD-ZIP 家族成员的综合研究。在我们目前的研究中,通过生物信息学分析鉴定了 34 个 HD-ZIP 家族成员(PeHBs)。转录组分析表明,PeHBs 在四种不同的非生物胁迫下表现出不同的表达模式,在果实的三个发育阶段以及紫色和黄色基因型百香果叶片之间也发现了 PeHBs 的显著差异表达。综合代谢组和转录组分析进一步表明,HD-ZIP III 类基因 PeHB31(与 ATHB8 同源)在与紫色百香果相比,黄色百香果(通常用作抗性砧木)的果实中与木质素同调表达。将 PeHB31 基因转化拟南芥和酵母表明,它们在干旱条件下的耐受能力增强。值得注意的是,转基因拟南芥植物在其茎的维管束组织中木质素含量增加。这项研究为未来研究涉及耐旱性的 HD-ZIP 基因(特别是 HD-ZIP 类 III 和 I)对木质素生物合成的控制机制奠定了基础。

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