___PROTECTED_DIV_4___
论文
论文标题:
作者:
出版刊物:
出版日期:
出版年份:
卷/期:
DOI:
论文摘要: Salinity, a rising global threat to agriculture exacerbated by climate change, may be mitigated through salt-soil bioremediation using microalgae. Most studies on stress responses have focused on aquatic algae, leaving soil microalgae largely unexplored. This study investigates the short- and long-term salt stress responses in the salttolerant soil microalga Desmochloris sp. FACHB-3271, combining phylogenetic, physiological, and biochemical analyses. Under salt stress, Desmochloris sp. showed sustained growth, with elevated photosynthetic activity and increased polysaccharide, soluble proteins, and total lipid contents. Linoleic acid was the predominant fatty acid, comprising 48.23 % of the total lipids. Long-term salt stress enhanced energy metabolism (chlorophyll synthesis, glycolysis) and osmotic regulation (fatty acid synthesis and degradation, starch and sucrose synthesis), while short-term stress induced dynamic changes. Three signaling pathways (cAMP, MAPK, and ABC transporters) were identified as regulators of salt stress changes. Notably, genes related to vitamin B12 for synthesis exhibited significant changes. These findings provide insights into the salt stress mechanisms of soil microalgae, offering genetic resources for saline-alkali soil remediation, for genetic modification of microalgae for biofuel production and novel approaches to gene discovery in non-genome-referenced algae.

继续阅读

以下内容与「星空体育彩票app下载」同属公开资讯,可按栏目接着查阅相关条目。

本站按公开材料组织页面。需要原文时请核对应栏目发布页。

若从搜索引擎进入,可先确认当前栏目名称,再按需打开相关阅读。

栏目入口

202607 / 概况介绍 / 近期论文 / sourcedb / lw

如从搜索进入本页,可先确认栏目名称,再按相关阅读扩展浏览。