Monroy A F, Castonguay Y, Laberge S, Sarhan F, Vezina L P, Dhindsa R S
Department of Biology, McGill University, Montreal, Quebec, Canada.
Plant Physiol. 1993 Jul;102(3):873-9. doi: 10.1104/pp.102.3.873.
When alfalfa (Medicago sativa L. cv Apica) plants grown at room temperature are transferred to 2 degrees C, the temperature at which 50% of the plants fail to survive (LT50) decreases from -6 to -14 degrees C during the first 2 weeks but then increases to -9 degrees C during the subsequent 2 weeks. However, when plants are kept for 2 weeks at 2 degrees C and then transferred to -2 degrees C for another two weeks, the LT50 declines to -16 degrees C. These changes in freezing tolerance are paralleled by changes in transcript levels of cas15 (cold acclimation-specific gene encoding a 14.5-kD protein), a cold-induced gene. Cold-activation of cas15 occurs even when protein synthesis is inhibited by more than 90%, suggesting that cold-initiated events up to and including the accumulation of cas15 transcripts depend on preexisting gene products. cas15 shows little homology to any known gene at the nucleotide or amino acid level. The deduced polypeptide (CAS15) of 14.5 kD contains four repeats of a decapeptide motif and possesses a bipartite sequence domain at the carboxy terminus with homology to the reported nuclear-targeting signal sequences. Although the relative amount of cas15 DNA as a fraction of the total genomic DNA is similar in cultivars with different degrees of freezing tolerance, its organization in the genome is different. The possible role of cas15 in the development of cold-induced freezing tolerance is discussed.
当在室温下生长的苜蓿(紫花苜蓿L. cv Apica品种)植株转移至2℃时,50%植株不能存活的温度(LT50)在前2周从-6℃降至-14℃,但在随后的2周又升至-9℃。然而,当植株在2℃保持2周后再转移至-2℃持续另外2周时,LT50降至-16℃。这些抗冻性的变化与冷驯化特异性基因cas15(编码一种14.5-kD蛋白)的转录水平变化平行,cas15是一个冷诱导基因。即使蛋白质合成被抑制超过90%,cas15仍会发生冷激活,这表明直至包括cas15转录本积累在内的冷启动事件依赖于预先存在的基因产物。cas15在核苷酸或氨基酸水平与任何已知基因几乎没有同源性。推导的14.5 kD多肽(CAS15)包含一个十肽基序的四个重复序列,并且在羧基末端具有一个二分序列结构域,与报道的核定位信号序列具有同源性。尽管在具有不同抗冻程度的品种中,cas15 DNA作为总基因组DNA一部分的相对量相似,但其在基因组中的组织方式不同。本文讨论了cas15在冷诱导抗冻性发育中的可能作用。