首页> 美国卫生研究院文献>Plant Physiology >Characterization of Expression of Drought- and Abscisic Acid-Regulated Tomato Genes in the Drought-Resistant Species Lycopersicon pennellii.
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Characterization of Expression of Drought- and Abscisic Acid-Regulated Tomato Genes in the Drought-Resistant Species Lycopersicon pennellii.

机译:抗旱种番茄忍冬中抗旱和脱落酸调节的番茄基因表达的表征。

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摘要

A number of genes are induced by drought stress, and some of these genes are regulated by the plant hormone abscisic acid (ABA). In tomato (Lycopersicon esculentum), four genes have been identified and isolated that require elevated levels of endogenous ABA for expression: le4, le16, le20, and le25. To gain a better understanding of the role of these genes during stress, their expression has been studied in the drought-resistant relative of tomato, Lycopersicon pennellii. It was determined that homologous genes to all four of the L. esculentum genes were present in the L. pennellii genome. Studies were undertaken to compare the expression characteristics of these genes in L. esculentum, L. pennellii, and their F1. Using two methods of water-deficit imposition, whole plants to which water was withheld and detached leaves that were wilted to 88% of their original fresh weight, it was demonstrated that transcripts of these genes accumulated in L. pennellii in response to water deficit. In general, the increase occurred after a longer period of water deficit in L. pennellii than in tomato. As in drought-sensitive species, ABA levels were elevated by drought stress in L. pennellii, although the levels were reduced compared with those in tomato. All four tomato genes were responsive to ABA in L. esculentum and the F1, but only three of the four genes (le16, le20, and le25) were induced in response to exogenous application of ABA in L. pennellii. The patterns of expression of these genes in L. pennellii are generally similar to that of L esculentum; therefore, it is suggested that these genes play a similar, yet undefined, role in both genotypes rather than being genes that are responsible for the greater drought resistance of L. pennellii.
机译:干旱胁迫诱导了许多基因,其中一些基因受到植物激素脱落酸(ABA)的调控。在番茄中(Lycopersicon esculentum),已经鉴定并分离出四个基因,它们需要高水平的内源ABA才能表达:le4,le16,le20和le25。为了更好地了解这些基因在胁迫过程中的作用,已经在番茄抗旱亲缘种Lycopersicon pennellii中研究了它们的表达。已经确定与彭氏乳杆菌所有四个基因的同源基因都存在于彭氏乳杆菌基因组中。进行了研究以比较这些基因在番茄,彭氏杆菌及其F1中的表达特征。使用两种水分亏缺方法,保留水分的整株植物和脱落的叶片枯萎至其原始鲜重的88%,这表明这些基因的转录物响应水分亏缺而在L. pennellii中积累。一般而言,与番茄相比,通心粉李氏菌在缺水时间更长之后出现了这种增加。与干旱敏感物种一样,尽管干旱胁迫与番茄相比降低了水平,但L. pennellii升高了ABA的含量。番茄中的所有四个基因都对番茄和F1中的ABA响应,但是四个基因中的三个(le16,le20和le25)中的三个仅响应于外源应用L. pennellii而被诱导。这些基因在彭氏乳杆菌中的表达模式通常类似于番茄。因此,建议这些基因在两种基因型中都起着相似但未定义的作用,而不是负责喷嚏乳杆菌更大抗旱性的基因。

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