火龙果(Hylocereus spp.)种子萌发前处理缓解水分胁迫

Pub Date : 2023-03-01 DOI:10.1590/1983-21252023v36n109rc
S. M. C. Carvalho, E. P. Paiva, S. B. Torres, M. L. S. Souza Neta, M. Leite, F. Sá
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引用次数: 0

摘要

使用缓解剂来减少水分胁迫的有害影响对植物物种来说是一个很有前途的替代方法,特别是在萌发和幼苗初期发育期间。因此,目的是评价不同的发芽前处理对水龙果(Hylocereus undatus)和H. costaricensis火龙果幼苗萌发和初期发育过程中水分胁迫的缓解作用。试验采用完全随机设计,2 × 6因子方案,分别对2个火龙果品种和6个萌发前处理(T1 = 0.0 MPa(对照),T2 = -0.2 MPa(水分胁迫);T3 =水浸+水分胁迫;T4 =赤霉素+水分胁迫;T5 =水杨酸+水分胁迫,T6 =噻虫胺+水分胁迫),4个重复50粒种子。分析的变量包括发芽率、发芽速度指数、茎长和主根长、总干质量、总可溶性糖和总游离氨基酸。-0.2 MPa的水势限制了两种植物的萌发和初始生长,而萌发期的水势对水分胁迫的耐受性更强。种子萌发前加水、赤霉素、水杨酸和噻虫嘧啶处理均能提高种子的生理性能,其中赤霉素对水分胁迫的抑制效果最好。赤霉素酸提高了水亏条件下红桃种子的生理性能。
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Pre-germination treatments in pitaya (Hylocereus spp.) seeds for water stress mitigation
ABSTRACT The use of mitigating agents to minimize the deleterious effects of water stress is a promising alternative for plant species, especially during germination and initial seedling development. Thus, the objective was to evaluate the effect of different pre-germination treatments as mitigating agents of water stress during germination and initial development of pitaya seedlings of the species Hylocereus undatus and H. costaricensis. The experiment was carried out in a completely randomized design, in a 2 x 6 factorial scheme, corresponding to two pitaya species and six pre-germination treatments (T1 = 0.0 MPa (control), T2 = -0.2 MPa (water stress); T3 = hydropriming + water stress; T4 = gibberellic acid + water stress; T5 = salicylic acid + water stress and T6 = thiamethoxan + water stress) with four replicates of 50 seeds. The variables analyzed were germination, germination speed index, shoot and primary root lengths, total dry mass, total soluble sugars and total free amino acids. The water potential of -0.2 MPa is limiting for germination and initial growth of H. costaricensis and H. undatus, with H. undatus being more tolerant to water stress in the germination phase. Pre-germination treatments with hydropriming, gibberellic acid, salicylic acid and thiamethoxan improve the physiological performance of H. costaricensis seeds, with gibberellic acid being the best attenuator of water stress. Gibberellic acid improves the physiological performance of H. undatus seeds under water deficit conditions.
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