State Key Laboratory of Aridland Crop Science, Gansu Agricultural University, Lanzhou, Gansu, 730070, China.
College of Life Science and Technology, Gansu Agricultural University, Lanzhou, Gansu, 730070, China.
BMC Genomics. 2024 Oct 2;25(1):919. doi: 10.1186/s12864-024-10840-y.
Endonucleases play a crucial role in plant growth and stress response by breaking down nuclear DNA. However, the specific members and biological functions of the endonuclease encoding genes in wheat remain to be determined.
In this study, we identified a total of 26 TaENDO family genes at the wheat genome-wide level. These genes were located on chromosomes 2 A, 2B, 2D, 3 A, 3B, and 3D and classified into four groups, each sharing similar gene structures and conserved motifs. Furthermore, we identified diverse stress-response and growth-related cis-elements in the promoter of TaENDO genes, which were broadly expressed in different organs, and several TaENDO genes were significantly induced under drought and salt stresses. We further examined the biological function of TaENDO23 gene since it was rapidly induced under drought stress and exhibited high expression in spikes and grains. Subcellular localization analysis revealed that TaENDO23 was localized in the cytoplasm of wheat protoplasts. qRT-PCR results indicated that the expression of TaENDO23 increased under PEG6000 and abscisic acid treatments, but decreased under NaCl treatment. TaENDO23 mainly expressed in leaves and spikes. A kompetitive allele-specific PCR (KASP) marker was developed to identify single nucleotide polymorphisms in TaENDO23 gene in 256 wheat accessions. The alleles with TaENDO23-HapI haplotypes had higher grain weight and size compared to TaENDO23-HapII. The geographical and annual frequency distributions of the two TaENDO23 haplotypes revealed that the elite haplotype TaENDO23-HapI was positively selected in the wheat breeding process.
We systematically analyzed the evolutionary relationships, gene structure characteristics, and expression patterns of TaENDO genes in wheat. The expression of TaENDO23, in particular, was induced under drought stress, mainly expressed in the leaves and grains. The KASP marker of TaENDO23 gene successfully distinguished between the wheat accessions, revealing TaENDO23-HapI as the elite haplotype associated with improved grain weight and size. These findings provide insights into the evolution and characteristics of TaENDO genes at the genome-wide level in wheat, laying the foundation for further biological analysis of TaENDO23 gene, especially in response to drought stress and grain development.
内切核酸酶通过分解核 DNA 在植物生长和应激反应中发挥着关键作用。然而,小麦中内切核酸酶编码基因的具体成员和生物学功能仍有待确定。
在这项研究中,我们在小麦全基因组水平上总共鉴定了 26 个 TaENDO 家族基因。这些基因位于染色体 2A、2B、2D、3A、3B 和 3D 上,并分为四个组,每组都具有相似的基因结构和保守基序。此外,我们在 TaENDO 基因启动子中鉴定了多种与应激反应和生长相关的顺式元件,这些元件在不同器官中广泛表达,并且一些 TaENDO 基因在干旱和盐胁迫下显著诱导。由于 TaENDO23 基因在干旱胁迫下迅速诱导且在穗和籽粒中高表达,我们进一步研究了 TaENDO23 基因的生物学功能。亚细胞定位分析表明 TaENDO23 定位于小麦原生质体的细胞质中。qRT-PCR 结果表明,PEG6000 和脱落酸处理下 TaENDO23 的表达增加,而 NaCl 处理下表达减少。TaENDO23 主要在叶片和穗中表达。在 256 个小麦品种中,开发了一种竞争性等位基因特异性 PCR(KASP)标记来鉴定 TaENDO23 基因的单核苷酸多态性。具有 TaENDO23-HapI 单倍型的等位基因与 TaENDO23-HapII 相比,具有更高的粒重和粒大小。两个 TaENDO23 单倍型的地理和年度频率分布表明,在小麦育种过程中,优质单倍型 TaENDO23-HapI 被正向选择。
我们系统地分析了小麦中 TaENDO 基因的进化关系、基因结构特征和表达模式。特别是 TaENDO23 基因的表达在干旱胁迫下被诱导,主要在叶片和籽粒中表达。TaENDO23 基因的 KASP 标记成功区分了小麦品种,表明 TaENDO23-HapI 是与粒重和粒大小改善相关的优质单倍型。这些发现为进一步研究 TaENDO23 基因在干旱胁迫和籽粒发育中的生物学功能奠定了基础。