胁迫下油橄榄植物脱水剂的多样性

M. Tripepi, Mechthild Pohlschroder, M. B. Bitonti
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引用次数: 15

摘要

脱氢蛋白(Dehydrins, DHNs)是一个大家族蛋白,其表达与种子成熟过程中的脱水、花粉粒发育和冬季芽休眠以及植物对各种胁迫的适应性反应有关。然而,该蛋白家族的不同成员所起的确切作用尚未完全确定。为了更好地了解DHN在橄榄植物中的功能,我们使用Western blot分析方法研究了DHN在橄榄树叶片中受到伤害、缺水和盐处理后的表达。两个分子量约为40 kD和42 kD的显著条带在叶片中组成性表达,但当叶片暴露于胁迫时,其水平增加。脱水和盐胁迫也导致另外两种蛋白的积累,这两种蛋白的分子质量分别为16 kDa和18 kD。这些额外的蛋白质在受伤后未被检测到。我们的研究结果表明,DHNs在橄榄植物的正常生长条件下具有生理功能,在对某些类型的胁迫作出反应时具有特殊功能。
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Diversity of Dehydrins in Oleae europaea Plants Exposed to Stress
Dehydrins (DHNs) belong to a large family of proteins whose expression is associated with dehydration during seed maturation, pollen grain development and bud dormancy during winter, as well as plant adaptive response to various stressors. However, the exact roles played by different members of this protein family have not been fully defined. To gain a better understanding of DHN functions in olive plants, we used Western blot analyses to investigate their expression in the leaves of olive plants subjected to wounding, water-deprivation and salt-treatment. Two prominent bands having molecular masses of approximately 40 kD and 42 kD were constitutively expressed, however, their levels increased when the leaves were exposed to stress. Dehydration and salt stress also resulted in the accumulation of two additional proteins, which had molecular masses of approximately 16 kDa and 18 kD. These additional proteins were not detected following wounding. Our results suggest a physiological function for DHNs in olive plants during normal growth conditions and specialized functions during responses to certain types of stress.
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