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耐旱向日葵基因型中水分胁迫和脱落酸调节基因的鉴定与表达

Identification and expression of water stress- and abscisic acid-regulated genes in a drought-tolerant sunflower genotype.

作者信息

Ouvrard O, Cellier F, Ferrare K, Tousch D, Lamaze T, Dupuis J M, Casse-Delbart F

机构信息

Biochimie et Physiologie Végétales, UMII-CNRS URA 573-INRA-ENSAM, Montpellier, France.

出版信息

Plant Mol Biol. 1996 Jul;31(4):819-29. doi: 10.1007/BF00019469.

Abstract

We have studied two lines of sunflower (Helianthus annuus L.) selected in the field as drought-tolerant (R1 genotype) or drought-sensitive (S1 genotype). When subjected to drought conditions, the R1 line was able to maintain high leaf water potential longer and wilted later than the S1 line. Therefore, this indicates that R1 tolerance includes a leaf-adaptive response. By subtractive hybridization, we have isolated six different cDNAs (designated sdi for sunflower drought-induced) corresponding to transcripts accumulated in R1 and S1 leaves during adaptive response. Analysis of transcript accumulation in response to drought in both genotypes suggests a preferential expression of three sdi genes in the tolerant line. Abscisic acid-mediated induction, analysed in R1 leaves, was observed for only four sdi genes. Sequence analysis of six sdi clones revealed that five clones were related to known proteins including non specific lipid transfer proteins (nsLTP), early light-induced proteins (ELIP), l-aminocyclopropane-l-carboxylate oxidase (ACC oxidase) or dehydrins, predicted to be involved in a wide range of physiological processes.

摘要

我们研究了在田间选出的两行向日葵(Helianthus annuus L.),分别为耐旱型(R1基因型)和干旱敏感型(S1基因型)。在干旱条件下,R1品系比S1品系能够更长时间地维持较高的叶片水势,枯萎也更晚。因此,这表明R1的耐受性包括叶片适应性反应。通过消减杂交,我们分离出了六个不同的cDNA(命名为sdi,即向日葵干旱诱导基因),它们对应于适应性反应期间在R1和S1叶片中积累的转录本。对两种基因型中干旱响应的转录本积累分析表明,三个sdi基因在耐受品系中优先表达。在R1叶片中分析脱落酸介导的诱导作用时,仅观察到四个sdi基因有此现象。对六个sdi克隆的序列分析表明,五个克隆与已知蛋白质相关,包括非特异性脂质转移蛋白(nsLTP)、早期光诱导蛋白(ELIP)、1-氨基环丙烷-1-羧酸氧化酶(ACC氧化酶)或脱水蛋白,预计它们参与广泛的生理过程。

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