中国农业科学 ›› 2026, Vol. 59 ›› Issue (16): 3496-3508.doi: 10.3864/j.issn.0578-1752.2026.16.003

• 作物遗传育种·种质资源·分子遗传学 • 上一篇    下一篇

陆地棉GDSL脂肪酶基因GhGELP23D对植物细胞伸长发育的影响

陈豪华(), 陈港, 冯健庭, 解静, 李倩倩, 王斐(), 李鸿彬()   

  1. 石河子大学生命科学学院, 新疆石河子 832003
  • 收稿日期:2026-01-06 接受日期:2026-03-05 出版日期:2026-08-16 发布日期:2026-08-17
  • 通信作者:
    王斐,E-mail:
    李鸿彬,E-mail:
  • 联系方式: 陈豪华,E-mail:chenhaohua2020@163.com。
  • 基金资助:
    新疆维吾尔自治区天山英才项目(2022TSYCCX0121); 国家自然科学基金面上项目(32570642); 新疆维吾尔自治区科技项目(2024A02002-3); 新疆生产建设兵团科技项目(2023ZD052); 石河子大学科技项目(RCZK202471); 石河子大学科技项目(GJHZ202302); 石河子大学科技项目(CXBJ202309)

Effects of the GDSL Lipase Gene GhGELP23D from Gossypium hirsutum on Plant Cell Elongation Development

CHEN HaoHua(), CHEN Gang, FENG JianTing, XIE Jing, LI QianQian, WANG Fei(), LI HongBin()   

  1. College of Life Sciences, Shihezi University, Shihezi 832003, Xinjiang
  • Received:2026-01-06 Accepted:2026-03-05 Published:2026-08-16 Online:2026-08-17

摘要:

【目的】 GDSL脂肪酶(GDSL esterase/lipase,GELP)家族是一类多功能水解酶,具有广泛的底物识别与催化能力,在植物生长发育中具有重要作用。在棉纤维伸长发育中,陆地棉GDSL脂肪酶基因GhGELP23D显著高表达,分析其影响植物细胞伸长发育的功能,为GELP调控植物细胞发育的机制解析提供一定参考。【方法】 以陆地棉纤维为材料克隆GhGELP23D。采用生物信息学方法分析GhGELP23D蛋白的理化性质、结构特征及系统进化关系,利用PlantCARE预测其启动子顺式作用元件,结合公共转录组数据和RT-qPCR数据分析基因的表达特征。构建GhGELP23D启动子GUS报告载体,在拟南芥稳定转化体系中检测GhGELP23D的组织表达特异性。通过烟草叶片瞬时表达系统,对GhGELP23D蛋白进行亚细胞定位。利用花序浸染法获得异源表达GhGELP23D的转基因拟南芥株系GhGELP23D-OE,并分析其表型变化。同时,利用病毒诱导基因沉默(VIGS)技术在陆地棉中沉默GhGELP23D,通过RT-qPCR检测其沉默效率,并观察GhGELP23D-VIGS株系纤维长度的变化。【结果】 GhGELP23D编码一个由356个氨基酸组成的稳定、弱碱性、亲水性蛋白,其结构包含典型信号肽。转录组表达和RT-qPCR数据显示,GhGELP23D在纤维伸长期高表达。亚细胞定位结果表明,GhGELP23D蛋白定位在胞外间隙。启动子组成分析显示,GhGELP23D包含光、激素和胁迫等多种顺式作用元件;组织染色结果显示,GhGELP23D启动子在拟南芥多种组织中均可驱动报告基因表达,表明其具有广泛的组织表达特性。在异源表达GhGELP23D拟南芥中显著促进植株生长发育,GhGELP23D-OE拟南芥株系的株高显著增加,主根和根毛的长度显著提升,在突变体背景中回补表达GhGELP23D后,其主根和根毛长度得到明显恢复并基本达到野生型水平。GhGELP23D-VIGS棉花株系的纤维长度较空载对照植株显著降低,平均下降约13.14%。【结论】 GhGELP23D编码一类定位于胞外间隙的GDSL脂肪酶,在棉纤维伸长期高表达,并影响植物细胞伸长发育过程。

关键词: 陆地棉, GDSL脂肪酶, 细胞伸长, GhGELP23D, 亚细胞定位, 病毒诱导基因沉默

Abstract:

【Objective】 The GDSL esterase/lipase (GELP) family comprises a group of multifunctional hydrolases with broad substrate specificity and catalytic versatility, playing an essential role in plant growth and developmental processes. The GDSL lipase gene GhGELP23D from Gossypium hirsutum is highly expressed during cotton fiber elongation development. This study aims to investigate its function in plant cell elongation and provides references for the mechanism elucidation of GELP-mediated regulation of cell growth. 【Method】 The GhGELP23D was cloned from upland cotton fibers. Bioinformatic analyses were performed to characterize its physicochemical properties, structural features, and phylogenetic relationships. The promoter region was analyzed with PlantCARE to identify putative cis-elements. Expression patterns were detected based on public transcriptomic data and RT-qPCR validation. A GUS reporter construct driven by the GhGELP23D promoter was generated to examine the tissue-specific expression of GhGELP23D in stably transformed Arabidopsis. Subcellular localization of GhGELP23D was determined through transient expression in Nicotiana benthamiana leaves. Transgenic Arabidopsis lines heterologously expressing GhGELP23D (GhGELP23D-OE) were obtained using the floral-dip method, and phenotypic analyses were conducted. Additionally, virus-induced gene silencing (VIGS) was employed to suppress GhGELP23D expression in cotton. Silencing efficiency was verified by RT-qPCR, and the resulting changes in fiber length were assessed in GhGELP23D-VIGS plants. 【Result】 GhGELP23D encodes a 356-amino-acid protein that is stable, weakly basic, and hydrophilic, containing a typical signal peptide but no transmembrane domain. Transcriptomic analysis and RT-qPCR detection showed that GhGELP23D was highly expressed during cotton fiber elongation. Subcellular localization analysis revealed that GhGELP23D is predominantly localized to the extracellular space. Analysis of the GhGELP23D promoter indicated the presence of multiple cis-elements related to light responsiveness, hormone signaling, and stress response. Histochemical GUS staining showed that the GhGELP23D promoter can drive reporter gene expression in various Arabidopsis tissues, indicating broad tissue expression activity. Heterologous expression of GhGELP23D in Arabidopsis (GhGELP23D-OE) significantly enhanced plant growth and development, resulting in increased plant height and longer primary roots and root hairs. Furthermore, complementation of GhGELP23D in the mutant resulted in a pronounced recovery of primary root and root hair length similar to that of the wild type (WT). In cotton, the fiber length of GhGELP23D-VIGS lines was significantly reduced compared with that of empty-vector control plants, with an average decrease of approximately 13.14%.【Conclusion】 GhGELP23D encodes an extracellular GDSL lipase that is highly expressed during the fiber elongation stage of upland cotton and plays an important role in plant cell elongation development.

Key words: Gossypium hirsutum, GDSL lipase, cell elongation, GhGELP23D, subcellular localization, VIGS