...高农业水资源的转化效率需要植(作)物抗旱性、 抗逆性理论的支撑,这也是当前植物生理学、作物生理学和逆境生物学(stress biology)的中心问题,更是现在从 分子水平上探索植物水分胁迫响应机理的国际分子生物学(molecular biology)前沿热点问题之一 [10~66] 。
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"It surprised us that this biology hadn't been studied before," he notes. "Stress influences so many normal physiological processes."
“这个以往生物学从来没有研究过的结果使我们震惊,”他继续指出,“压力影响了很多原本正常的生理过程。”
The mechanism for these risks appears to lie in the biology of the stress-response system and in the way environment affects a person's genetic activity.
患病风险高于常人的机理似乎来源于压力——反馈系统的生物学原理以及环境对人基因活动的影响。
However, "researchers already know that CRF regulation is disrupted in stress-related psychiatric disorders, so this research may be relevant to the underlying human biology," she said.
不过,“研究人员已经知道,CRF的调控是可以用来缓解与紧张有关的精神疾病,所以这项研究可能涉及到人类底层的生物学,她说。”
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