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Genetic analysis of cold tolerance during vegetative growth in tomato, Lycopersicon esculentum Mill.

机译:番茄营养生长过程中耐冷性的遗传分析。

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The genetic basis of cold tolerance (CT) during vegetative growth in tomato was investigated by evaluating plants of a cold-tolerant primitive cultivar (PI120256) and a cold-sensitive breeding line (UCT5) and their reciprocal F1, F2, F3, BC1P1 and BC1P2 progeny under two temperature regimes of 15/10 °C (cold stress) and 25/15 °C (control). Plants were evaluated for shoot dry weight (DW) under cold stress and by a tolerance index (TI) measured as the ratio of DW under cold stress (DWs) to DW under control (DWc) conditions. Shoot DW was reduced in all genotypes in response to cold stress. However, PI120256 exhibited the highest CT (TI = 90.5%) and UCT5 the lowest (TI = 38.9%). The TIs of the filial and backcross progeny were intermediate to the parents. Across generations, there was a positive correlation (r = 0.76, p < 0.01) between DWs and DWc indicating that growth under cold stress was influenced by plant vigor. However, the absence of a significant correlation (r=0.47, p >0.05) between DWc and the TI and, in contrast, the presence of a significant correlation (r =0.92, p <0.01) between DWs and the TI suggest that plant vigor was not a determining factor in the expression of CT in PI120256 and its progeny. Generation means analyses of DWs and TI indicated that the variation among generations was genetically controlled, with additive effects accounting for most of the variation. There were no significant dominance effects, and epistatic effects were minor and involved only additive × additive interactions. The results suggest that the inherent CT of PI120256 should be useful for improving CT of commercial cultivars of tomato.
机译:通过评估耐寒原始品种(PI120256)和耐寒育种系(UCT5)及其互作的F1 ,F2 <,对番茄营养生长过程中耐冷性(CT)的遗传基础进行了研究。 / sub>,F3 ,BC1 P1 和BC1 P2 后代在两个15/10°C C温度条件下(冷胁迫)和25/15°C C(对照)。评价植物在冷胁迫下的茎干重量(DW),并通过耐受指数(TI)评估为耐受指数(TI)在冷胁迫下(DWs )与对照(DWc )下的DW之比。响应冷胁迫,所有基因型的枝条DW均降低。但是,PI120256的CT最高(TI = 90.5%),而UCT5的CT最低(TI = 38.9%)。孝子和回交子代的TI在亲本中。在不同世代之间,DWs 和DWc 之间存在正相关(r = 0.76,p <0.01),表明冷胁迫下的生长受到植物活力的影响。然而,DWc 与TI之间不存在显着相关性(r = 0.42,p <0.01),而DWc 与TI之间不存在显着相关性(r = 0.92,p <0.01)

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