发芽
气候变化
非生物成分
盐度
生态系统
环境科学
农学
全球变暖
非生物胁迫
生物
园艺
农林复合经营
生态学
生物化学
基因
作者
Nour ElHouda Debouza,Shaijal Babu Thruppoyil,K Rajath Preethimol Gopi,Sabika Zain,Taoufik Ksiksi
出处
期刊:One Ecosystem
[Pensoft Publishers]
日期:2021-12-13
卷期号:6
被引量:9
标识
DOI:10.3897/oneeco.6.e74260
摘要
Earth atmospheric CO 2 concentration has risen by over 35% since 1750 and is presently increasing by about 2 parts per million (ppm) every year. Due to contributions from human activity, CO 2 is projected to keep rising in the predictable future and to double sometime during this century if fossil fuels burning remains. As a result, air temperature is projected to rise from 2 to 5 °C by 2100. Following this rise in CO 2 , some ecosystems will face challenges in the next few decades as plants will live in warmer temperatures, higher evaporating demand and widespread changes in drought lengths and severity. To yield healthy crops and forests in changing climate surroundings, it is vital to define whether elevated CO 2 disturbs seed germination and plant formation, but even more, the physiological traits conferring drought tolerance. Here, we review the current understanding on the role that CO 2 plays on plant growth and seed germination, as well as its impact during the exposure of abiotic stresses like drought and salinity.
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