...
首页> 外文期刊>Scientific reports. >Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents
【24h】

Linking gene expression to productivity to unravel long- and short-term responses of seagrasses exposed to CO2 in volcanic vents

机译:将基因表达与生产力联系起来,在火山通风口中暴露于二氧化碳的海草的长期和短期反应

获取原文

摘要

Ocean acidification is a major threat for marine life but seagrasses are expected to benefit from high CO2. In situ (long-term) and transplanted (short-term) plant incubations of the seagrass Cymodocea nodosa were performed near and away the influence of volcanic CO2 vents at Vulcano Island to test the hypothesis of beneficial effects of CO2 on plant productivity. We relate, for the first time, the expression of photosynthetic, antioxidant and metal detoxification-related genes to net plant productivity (NPP). Results revealed a consistent pattern between gene expression and productivity indicating water origin as the main source of variability. However, the hypothesised beneficial effect of high CO2 around vents was not supported. We observed a consistent long- and short-term pattern of gene down-regulation and 2.5-fold NPP decrease in plants incubated in water from the vents and a generalized up-regulation and NPP increase in plants from the vent site incubated with water from the Reference site. Contrastingly, NPP of specimens experimentally exposed to a CO2 range significantly correlated with CO2 availability. The down-regulation of metal-related genes in C. nodosa leaves exposed to water from the venting site suggests that other factors than heavy metals, may be at play at Vulcano confounding the CO2 effects.
机译:海洋酸化是海洋生物的主要威胁,但预计海草将受益于高二氧化碳。原位(长期)和移植(短期)植物的植物孵育海草Cymodocea Nodosa在脱昔岛岛的Volcanic Co2通风口的影响下进行,测试CO2对植物生产率的有益作用的假设。我们首次涉及光合,抗氧化剂和金属解毒相关基因对净植物生产率(NPP)的表达。结果显示基因表达与生产率之间的一致模式,表明水来源作为变异性的主要来源。然而,不支持围绕通风口围绕通风口的假设有益效果。我们观察到一致的基因下和短期和短期模式,从通风口中孵育的植物中的2.5倍的NPP减少,以及来自来自的排气部位的通用上调和NPP植物中的植物增加。参考网站。比较地,实验地暴露于CO2范围的标本NPP与CO2可用性显着相关。将金属相关基因的下调在排气位点暴露于水中的C. Nodosa叶子中的其他因素比重金属比重金属,可能是在Vulcano混淆的二氧化碳效应上。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号