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过表达TaHsfA2-11小麦耐热种质筛选及调控机制初探
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作者单位:

1.河北省农林科学院生物技术与食品科学研究所;2.中国农业大学 农学院,北京

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基金项目:

国家自然科学基金(32401777);河北省自然科学基金(C2025301054);河北省农林科学院基本科研业务费项目(2024110202);河北省农林科学院创新专项课题(2026KJCXZX-SSS-2)


Selection of Heat-Tolerant Wheat Germplasm Overexpressing TaHsfA2-11 and Analysis of Regulatory Mechanisms
Author:
Affiliation:

1.Institute of Biotechnology and Food science,Hebei Academy of Agriculture and Forestry Sciences/ Hebei Key Laboratory of Plant Genetic Engineering;2.Hebei,China;3.College of Agronomy and Biotechnology,China Agricultural University;4.China

Fund Project:

The National Natural Science Foundation of China(No.32401777); Hebei Natural Science Foundation (No.C2025301054); Basic Research Funds of Hebei Academy of Agriculture and Forestry Sciences (No.2024110202), and HAAFS Agriculture Science and Technology Innovation Project (2026KJCXZX-SSS-2).

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    摘要:

    小麦耐热相关基因TaHsfA2-11过表达能增强小麦苗期耐热性,但在成株期尤其是产量形成关键阶段的功能尚无报道。本研究以受体品种Fielder为对照,以10个TaHsfA2-11过表达株系为材料,在灌浆期进行热胁迫处理,测定产量性状及生理指标,并结合转录组测序解析TaHsfA2-11耐热性调控机制。结果表明,转基因株系在热胁迫下的千粒重、籽粒面积等产量性状显著优于Fielder,其中株系393、409和1144的千粒重较对照分别增加5.09%、6.20%和5.93%。生理指标测定显示,转基因株系的过氧化物酶(POD)和超氧化物歧化酶(SOD)活性显著升高,丙二醛(MDA)积累受抑,脯氨酸和可溶性糖含量显著增加,膜稳定性和光合色素稳定性增强。转录组分析揭示TaHsfA2-11呈显著的时期特异性调控模式:开花期主要激活渗透调节和ABA信号通路,灌浆期重点强化光合作用天线蛋白通路和碳代谢通路。RT-qPCR验证进一步证实TaHsfA2-11可上调热激蛋白基因、渗透调节相关基因及光合保护相关基因的表达。综上,TaHsfA2-11过表达通过时期特异性地协同激活抗氧化防御、渗透调节和光合保护等多条通路,增强小麦成株期耐热性。株系393、409和1144被鉴定为优良耐热株系,可作为小麦耐热育种的种质资源。

    Abstract:

    Previous studies have shown that TaHsfA2-11 is a heat-tolerance-related gene in wheat, and its overexpression enhances thermotolerance at the seedling stage. However, its function at the adult stage, particularly during the critical yield-formation period, remains poorly understood. In this study, ten TaHsfA2-11 overexpressing transgenic lines and the recipient variety Fielder (control) were subjected to heat stress during the grain-filling stage. Yield traits and physiological indices were measured, and transcriptome sequencing was performed to elucidate the underlying molecular mechanisms. The results showed that the transgenic lines exhibited significantly better yield traits than Fielder under heat stress. Particularly, the thousand-kernel weight (TKW) of lines 393, 409, and 1144 increased by 5.09%, 6.20%, and 5.93%, respectively, compared with the control. Physiological analyses revealed that the transgenic lines had significantly higher peroxidase (POD) and superoxide dismutase (SOD) activities, inhibited malondialdehyde (MDA) accumulation, increased proline and soluble sugar contents, and enhanced membrane stability and photosynthetic pigment retention. Transcriptome analysis demonstrated that TaHsfA2-11 overexpression primarily activated osmotic regulation and ABA signaling pathways at the anthesis stage, and predominantly enhanced photosynthesis-antenna protein and carbon metabolism pathways at the grain-filling stage, revealing a distinct stage-specific regulatory pattern. RT-qPCR validation further confirmed that TaHsfA2-11 upregulates the expression of heat shock protein genes, osmotic regulation-related genes, and photoprotection-related genes. In conclusion, TaHsfA2-11 overexpression significantly enhances thermotolerance of wheat during the adult-stage by synergistically activating antioxidant defense, osmotic regulation, and photosynthetic protection pathways. The TaHsfA2-11-overexpressing lines 393, 409, and 1144 were identified as elite heat-tolerant germplasms and can serve as core parents for wheat heat tolerance breeding.

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  • 收稿日期:2026-04-27
  • 最后修改日期:2026-07-06
  • 录用日期:2026-07-20
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