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高温胁迫下 Hylocereus(仙人掌科)种和种间杂种的表现。

Performance of Hylocereus (Cactaceae) species and interspecific hybrids under high-temperature stress.

机构信息

The French Associates Institute for Agriculture and Biotechnology of Drylands, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sede Boqer, 8499000, Israel.

The French Associates Institute for Agriculture and Biotechnology of Drylands, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sede Boqer, 8499000, Israel; Institute of Karst Geology, CAGS, Guilin, Guangxi, 541004, China.

出版信息

Plant Physiol Biochem. 2020 Aug;153:30-39. doi: 10.1016/j.plaphy.2020.04.044. Epub 2020 May 21.

Abstract

High temperatures limit the successful cultivation of the Hylocereus species on a global basis. We aimed to investigate the degree of heat tolerance in three species, namely, the diploids Hylocereus undatus and H. monacanthus, and the tetraploid H. megalanthus, and nine of their interspecific-interploid hybrids. Rooted cuttings were exposed to heat stress (45/35 °C) or control conditions (25/20 °C) for eight days. Initially, the plants were screened for their tolerance to heat stress and ranked into four heat tolerance categories: good tolerance, moderate tolerance, low tolerance, or sensitive, according to the decrease in the maximum quantum efficiency of photosystem II (F/F) and visual stem damage. The physiological and biochemical performances of the parental species and of three hybrids representing three different heat-tolerance categories were further analyzed in depth. H. megalanthus (classified as heat sensitive) showed a 65% decrease in F/F and severe visual stem damage, along with a marked reduction in total chlorophyll content, a large increase in malondialdehyde, and inhibition of catalase activity. H. undatus and H. monacanthus, (classified as low-tolerance species) exhibited slight stem "liquification." The good-tolerance hybrid Z-16 exhibited the best performance under heat stress (21% decrease in F/F) and the absence of stem damage, coupled with a small decrease in total chlorophyll content, a slight increase in malondialdehyde, high antioxidant activity, and proline accumulation progressing with time. Our findings revealed that most of the hybrids performed better than their parental species, indicating that our breeding programs can provide Hylocereus cultivars suitable for cultivation in heat-challenging regions.

摘要

高温限制了全球范围内 Hylocereus 物种的成功种植。我们旨在研究三个物种,即二倍体 Hylocereus undatus 和 H. monacanthus,以及四倍体 H. megalanthus,及其九种种间-倍间杂种的耐热程度。生根插条在热应激(45/35°C)或对照条件(25/20°C)下暴露 8 天。最初,根据最大光化学量子效率(F/F)和可见茎损伤的降低,对植物进行耐热性筛选,并根据耐热性分为四个耐热等级:良好、中等、低或敏感。进一步深入分析了亲本品系和代表三个不同耐热等级的三个杂种的生理生化性能。被归类为敏感的 H. megalanthus 表现出 F/F 降低 65%,以及严重的可见茎损伤,同时总叶绿素含量显著降低,丙二醛大量增加,过氧化氢酶活性受到抑制。被归类为低耐物种的 H. undatus 和 H. monacanthus 表现出轻微的茎“液化”。耐热杂种 Z-16 在热应激下表现出最佳性能(F/F 降低 21%),且没有茎损伤,同时总叶绿素含量略有降低,丙二醛略有增加,抗氧化活性高,脯氨酸积累随时间增加。我们的研究结果表明,大多数杂种的表现优于其亲本品系,这表明我们的育种计划可以为在高温挑战地区种植提供适宜的 Hylocereus 品种。

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