Danyluk J, Houde M, Rassart E, Sarhan F
Département des Sciences biologiques, Université du Québec à Montréal, Canada.
FEBS Lett. 1994 May 9;344(1):20-4. doi: 10.1016/0014-5793(94)00353-x.
We have characterized a new wheat cold-regulated cDNA clone, Wcor410, that accumulates to equivalent levels in root, crown and leaf tissues during cold acclimation. The Wcor410 cDNA contains an ORF encoding a dehydrin-like glutamate-rich protein of 28 kDa with a pI of 5.1. However, the acidic nature, the absence of the glycine-rich repeat and of the conserved N-terminal region, DEYGNP, suggest that Wcor410 belongs to a different subgroup of the D11 protein family. Northern analysis showed that this gene is expressed only in freezing tolerant gramineae, whereas Southern analysis showed that the Wcor410 gene is present in all monocot species tested. The presence of freezing tolerance-associated genes in sensitive species such as rice and corn is interesting. Characterization of the regulatory factors controlling these genes may help to establish an appropriate strategy to improve freezing tolerance.
我们鉴定了一个新的小麦冷调节cDNA克隆Wcor410,它在低温驯化过程中在根、冠和叶组织中积累到相同水平。Wcor410 cDNA包含一个开放阅读框,编码一个28 kDa的富含谷氨酸的脱水素样蛋白,其pI为5.1。然而,其酸性性质、缺乏富含甘氨酸的重复序列和保守的N端区域DEYGNP,表明Wcor410属于D11蛋白家族的一个不同亚组。Northern分析表明,该基因仅在耐冻禾本科植物中表达,而Southern分析表明,Wcor410基因存在于所有测试的单子叶植物物种中。在水稻和玉米等敏感物种中存在与耐冻性相关的基因,这很有趣。对控制这些基因的调控因子进行表征可能有助于建立提高耐冻性的适当策略。