人工气候室条件下番茄对弱光的形态学和生理学响应

    Morphological and Physiological Responses of Tomatoes to Weak Light under Artificial Climate Chamber Conditions

    • 摘要:
      目的 探究弱光对番茄植株生长和生理指标的影响、筛选耐弱光材料,为培育耐弱光番茄品种提供基础。
      方法 在人工气候室条件下,以正常光照(500 μmol/m2·s光强)为对照、100 μmol/m2·s光强为弱光处理,比较耐弱光番茄自交系‘GC303’和弱光敏感自交系‘LA2838’的生长指标、叶绿素含量、叶绿素荧光参数和抗氧化酶活性等。
      结果 正常光照(CK)条件下,‘LA2838’的干质量、鲜质量等显著高于‘GC303’;在弱光处理下,‘LA2838’的干质量、鲜质量等的增长相比‘GC303’显著减缓,且叶面积增加、植株徒长。在光合色素含量和光合作用水平方面,正常光照(CK)下‘LA2838’幼苗的叶绿素含量显著高于‘GC303’,两者光合指标无显著差异;弱光处理下,‘GC303’的光合抑制损害的猝灭值(qL)显著降低、光氧化损伤程度较轻、植株光保护增强,‘GC303’具有更高的光合效率。在抗氧化酶活性和MDA含量方面,在正常光照(CK)条件下,‘GC303’的SOD和POD活性高于‘LA2838’;弱光胁迫下,‘GC303’叶片中的SOD、CAT和POD活性比‘LA2838’显著减少,MDA含量无显著差异,表现出更强的过氧化物清除能力。在转录组方面,与‘LA2838’相比,‘GC303’有1 913个基因差异表达,其中上调基因有987个、下调基因有926个,差异表达基因在响应非生物胁迫、叶绿体运动、金属离子运输、基于微管的运动等植物胁迫响应和光合通路中显著富集。
      结论 弱光胁迫对‘GC303’和‘LA2838’的生长指标和光合参数影响较大,是鉴定植株弱光能力的重要指标,对叶绿素含量和MDA含量影响较小。

       

      Abstract:
      Objective The study was conducted to explore the effects of weak light on tomato plant growth and physiological indicators, screen weak light tolerant materials, with a view to providing a basis for cultivating weak light tolerant tomato varieties.
      Method To clarify the effects of weak light on the growth and development of tomatoes and their mechanisms of weak light tolerance, the study was conducted on plant growth indicators, chlorophyll content, chlorophyll fluorescence parameters, and antioxidant enzyme activity in the weak light tolerant tomato inbred line 'GC303' and the weak light sensitive inbred line 'LA2838' under artificial climate conditions, with 500 μmol/m2·s light intensity as the control and 100 μmol/m2·s light intensity as the weak light treatment.
      Result Under normal light conditions, the dry and fresh weights of the 'LA2838' were significantly higher than those of the 'GC303'. Under weak light stress treatment the growth of biomass such as dry and fresh weights of 'LA2838' significantly slowed down compared to 'GC303', with an increase in leaf area and excessive plant growth. In terms of photosynthesis level and photosynthetic pigment content, under normal light conditions, the chlorophyll content of 'LA2838' in the seedling stage was significantly higher than that of 'GC303', and there is no significant difference in photosynthetic indicators. Under weak light treatment, the quenching value of photosynthetic inhibition damage of 'GC303' was significantly reduced. The degree of photooxidative damage was lighter, and the plant's photoprotection was enhanced, and 'GC303' has higher photosynthetic efficiency. In terms of antioxidant enzyme activity and MDA content, under normal light conditions, the SOD and POD activities of 'GC303' were higher than those of 'LA2838', indicating a higher light energy utilization efficiency. Under weak light stress, the activities of SOD, CAT, and POD in 'GC303' leaves were significantly reduced compared with 'LA2838', while MDA showed no significant difference, indicating a stronger peroxide scavenging ability. In terms of transcriptome, compared with 'LA2838', 'GC303' had 1913 differentially expressed genes, including 987 up-regulated genes and 926 down-regulated genes. The differentially expressed genes were significantly enriched in response to plant stress such as abiotic stress, chloroplast movement, metal ion transport, microtubule-based movement, and photosynthetic pathways.
      Conclusion Weak light stress has a significant impact on the growth indicators and photosynthetic parameters on weak light sensitive inbred lines and weak light tolerant tomato inbred lines, making it an important indicator for identifying plants' weak light tolerance. However, it has a relatively minor impact on chlorophyll and MDA content indicators.

       

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