Williams J, Bulman M, Huttly A, Phillips A, Neill S
Department of Biological Sciences, UWE, Frenchay, Bristol, UK.
Plant Mol Biol. 1994 May;25(2):259-70. doi: 10.1007/BF00023242.
The sequence and expression characteristics are described of a wilt-inducible gene in Arabidopsis thaliana. A1494 encodes a potential thiol protease whose mRNA accumulates rapidly in shoot tissue upon the loss of turgor. A1494 mRNA levels peaked after ca. 4 h and declined thereafter. Dehydration also induced rapid biosynthesis of the phytohormone abscisic acid (ABA), which continued for at least 9 h. Exogenous ABA induced the accumulation of A1494 mRNA, with kinetics similar to those after wilting. Rehydration of wilted shoots led to a rapid decline in the content of both ABA and A1494 mRNA. Wilting and ABA independently induced A1494 expression as evidenced by the effects of ABA and wilting on the ABA-deficient aba-1 and ABA-insensitive abi-1 and abi-3 genotypes. A1494 mRNA was not detectable in aba-1 shoots but accumulated rapidly after either wilting or ABA treatment, whereas the shoot ABA content was increased only by ABA treatment. ABA had no effect on A1494 mRNA levels in the abi-1 and abi-3 mutants but wilting did result in enhanced A1494 expression. Heat shock had only a minor effect on A1494 mRNA levels, whereas exposure to low temperature resulted in substantial accumulation of A1494 mRNA in wild-type shoots. However, this latter response, unlike that to drought, was mediated exclusively via ABA synthesis as demonstrated by the lack of A1494 mRNA accumulation in cold-treated aba-1 shoots.
本文描述了拟南芥中一个萎蔫诱导基因的序列和表达特征。A1494编码一种潜在的巯基蛋白酶,其mRNA在植物组织因失水而失去膨压时会在茎组织中迅速积累。A1494 mRNA水平在约4小时后达到峰值,随后下降。脱水还诱导了植物激素脱落酸(ABA)的快速生物合成,这种合成持续至少9小时。外源ABA诱导A1494 mRNA的积累,其动力学与萎蔫后的相似。萎蔫的茎复水导致ABA和A1494 mRNA含量迅速下降。萎蔫和ABA独立诱导A1494表达,这在ABA和萎蔫对ABA缺陷型aba - 1以及ABA不敏感型abi - 1和abi - 3基因型的影响中得到了证明。在aba - 1茎中没有A1494 mRNA积累,但在萎蔫或ABA处理后迅速积累,而茎中的ABA含量仅通过ABA处理增加。ABA对abi - 1和abi - 3突变体中的A1494 mRNA水平没有影响,但萎蔫确实导致A1494表达增强。热激对A1494 mRNA水平只有轻微影响,而暴露于低温导致野生型茎中A1494 mRNA大量积累。然而,与干旱不同,后者的反应完全是通过ABA合成介导的,这在低温处理的aba - 1茎中缺乏A1494 mRNA积累得到了证明。