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首页> 外文期刊>Trees. Structure and Function >Somatic hybridization between diploid Poncirus and Citrus improves natural chilling and light stress tolerances compared with equivalent doubled-diploid genotypes
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Somatic hybridization between diploid Poncirus and Citrus improves natural chilling and light stress tolerances compared with equivalent doubled-diploid genotypes

机译:与当量的双倍二倍体基因型相比,二倍体囊和柑橘之间的体细胞杂交提高了天然冷却和轻应力耐受性

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摘要

Allopolyploids are generally known to display broader adaptation to abiotic stresses than their parental diploid species. In the Mediterranean area, Citrus species are subjected to abiotic constraints such as low temperature and high radiation. Tetraploids are known to resist these environmental constraints better, and so the use of new tetraploid rootstocks offers an alternative to overcome these threats to crop productivity. The objective of this study was to determine whether the use of an allotetraploid hybrid could provide greater tolerance to cold and light stresses than its diploid parents or respective doubled-diploid parents. We compared cold and light stress responses of the allotetraploid hybrid FlhorAG1 (FL-4x) with those of its diploid parents, the willow leaf mandarin (Citrus deliciosa Ten) (WLM-2x) and the Poncirus Pomeroy (Poncirus trifoliata (L.) Raf.) (POP-2x), and their respective doubled-diploids (WLM-4x and POP-4x, respectively) by measuring physiological and biochemical parameters. When subjected to cold and light stress, FL-4x showed lower photoinhibition (F-v/F-m) and less accumulation of oxidative markers (MDA and H2O2) than diploid and doubled-diploid WLM and POP genotypes. This was correlated with a greater increase for FL-4x in some antioxidant activities during cold stress (SOD, APX and GR) and light stress (SOD, APX and MDHAR mainly). Overall, our results suggest that greater antioxidant capability in FL-4x should make this allotetraploid hybrid more tolerant to low temperatures than the two WLM genotypes, and more tolerant to light stress than the two WLM and POP genotypes.
机译:众所周知,所有多元倍数都是展示比其父类二倍体物种的非生物应力更广泛的适应性。在地中海地区,柑橘类物种受到非生物约束,如低温和高辐射。已知四倍体抗拒这些环境约束更好,因此使用新的四倍体砧木提供了一种克服这些威胁来生产力的替代方案。本研究的目的是确定异丙醇异丙醇杂交机是否可以比其二倍体父母或各自的双倍二倍体父母提供更大的耐寒和轻度应力。与其二倍体父母,柳树叶普通话(柑橘Deliciosa Ten)(WLM-2X)和Poncirus Trifoliata(L.)RAF(Poncirus Trifoliata(L.)RAF)进行了与其二倍体杂交杂交Flhorag1(FL-4X)的感冒和轻度应力反应。)(Pop-2x),以及它们各自的双倍二倍体(分别分别测量生理生化参数)。当受到冷和光应力时,FL-4X显示出低的光抑制(F-V / F-M)和少量氧化标记(MDA和H2O2)的积累,而不是二倍体和双倍二倍体WLM和POP基因型。这与冷胁迫(SOD,APX和GR)和轻应力(SOD,APX和MDHAR的一些抗氧化活性在一些抗氧化活性中的FL-4X增加了较大的相关性。总体而言,我们的结果表明FL-4X中的更大的抗氧化能力应使得这种同种异体一种倍增性杂种比两种WLM基因型更容易耐受低温,并且比两个WLM和POP基因型更容忍轻应力。

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