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首页> 外文期刊>Toxicology and Environmental Health Sciences >Transcriptome profiles of Daphnia magna across to the different water chemistry of surface water of the Korean Demilitarized Zone
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Transcriptome profiles of Daphnia magna across to the different water chemistry of surface water of the Korean Demilitarized Zone

机译:<重点类型=“斜体”> Daphnia Magna 对面的转录组谱曲线到朝鲜绝管化区域的地表水中的不同水化学

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AbstractThe Korean Demilitarized Zone (DMZ) has almost completely protected surface water conditions. Despite the water conditions of DMZ are excellent clear, downstream of river or natural irrigation ponds near the region are recently developed by human activities such as agriculture, ginseng fields or ecotourism. To understand the potential effect of physico-chemical characteristics of the DMZ water, the freshwater modelDaphnia magnawas exposed to water samples that were collected from four sites near the DMZ. RNA-seq identified some differentially expressed transcripts which are sensitive to small differences of water chemistry. Particularly transcripts coding for the stress responsive heat shock protein (Hsp) superfamily and innate immune system were significantly increased in response to the water samples of irrigation ponds and downstream of Seweol river where are analyzed to have low pH and high levels of chemical fertilizer nutrients such as nitrogen (N) and phosphorus (P). These water samples decreased mRNA expressions of crucial members which are involved in crustacean morphogenesis and reproduction metabolism (e.g. cuticle protein family, ecdysteroid metabolism, vitellogenesis). Evidence on the high transcriptional sensitivity of the aquatic modelD. magnaagainst small differences of water chemistry will be a useful strength for further applications in environmental and ecotoxicological genomics.]]>
机译:<![CDATA [<标题>抽象 ara>韩国非军事区(DMZ)几乎完全受到保护的地表水条件。尽管DMZ的水条件很清楚,但该地区附近的河流或自然灌溉池塘的下游最近由农业,人参田或生态旅游等人类活动开发。要了解DMZ水的物理化学特性的潜在影响,淡水模型<重点型=“斜体”> Daphnia Magna 从DMZ附近的四个位点收集到水样中。 RNA-SEQ鉴定了一些差异表达的转录物对水化学的小差异敏感。特别是对应激响应热休克蛋白的转录物(<重点类型=“斜体”> Hsp )超家族和先天免疫系统响应于灌溉池的水样和分析的Seweol河下游的水样而显着增加具有低pH和高水平的化肥营养素,如氮(N)和磷(P)。这些水样品降低了参与甲壳类动物形态发生和生殖代谢的关键成员的mRNA表达(例如角质层蛋白质家庭,EcdeSteroid代谢,vitellogesis)。关于水生模型的高转录敏感性的证据<重点型=“斜体”> d。 Magna 对水化学的小差异将是环境和生态毒理学基因组学进一步应用的有用强度。]]>

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