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全基因组表达分析为小立碗藓应激反应的起源和进化提供了新的见解。

Genome-wide expression analysis offers new insights into the origin and evolution of Physcomitrella patens stress response.

作者信息

Khraiwesh Basel, Qudeimat Enas, Thimma Manjula, Chaiboonchoe Amphun, Jijakli Kenan, Alzahmi Amnah, Arnoux Marc, Salehi-Ashtiani Kourosh

机构信息

Laboratory of Algal, Systems, and Synthetic Biology, Division of Science and Math, New York University Abu Dhabi, Abu Dhabi, UAE.

Center for Genomics and Systems Biology, New York University Abu Dhabi, Abu Dhabi, UAE.

出版信息

Sci Rep. 2015 Nov 30;5:17434. doi: 10.1038/srep17434.

Abstract

Changes in the environment, such as those caused by climate change, can exert stress on plant growth, diversity and ultimately global food security. Thus, focused efforts to fully understand plant response to stress are urgently needed in order to develop strategies to cope with the effects of climate change. Because Physcomitrella patens holds a key evolutionary position bridging the gap between green algae and higher plants, and because it exhibits a well-developed stress tolerance, it is an excellent model for such exploration. Here, we have used Physcomitrella patens to study genome-wide responses to abiotic stress through transcriptomic analysis by a high-throughput sequencing platform. We report a comprehensive analysis of transcriptome dynamics, defining profiles of elicited gene regulation responses to abiotic stress-associated hormone Abscisic Acid (ABA), cold, drought, and salt treatments. We identified more than 20,000 genes expressed under each aforementioned stress treatments, of which 9,668 display differential expression in response to stress. The comparison of Physcomitrella patens stress regulated genes with unicellular algae, vascular and flowering plants revealed genomic delineation concomitant with the evolutionary movement to land, including a general gene family complexity and loss of genes associated with different functional groups.

摘要

环境变化,如气候变化所引发的那些变化,会对植物生长、多样性乃至全球粮食安全造成压力。因此,迫切需要集中精力全面了解植物对压力的反应,以便制定应对气候变化影响的策略。由于小立碗藓在连接绿藻和高等植物之间的进化过程中占据关键地位,且具有良好的抗逆性,所以它是进行此类探索的理想模型。在此,我们利用小立碗藓,通过高通量测序平台进行转录组分析,研究其对非生物胁迫的全基因组反应。我们报告了转录组动态的综合分析,确定了对与非生物胁迫相关的激素脱落酸(ABA)、寒冷、干旱和盐处理所引发的基因调控反应的概况。我们在上述每种胁迫处理下鉴定出超过20,000个表达基因,其中9,668个基因在胁迫反应中表现出差异表达。将小立碗藓胁迫调控基因与单细胞藻类、维管植物和开花植物进行比较,揭示了与向陆地进化运动相伴的基因组特征,包括一般基因家族复杂性以及与不同功能组相关的基因丢失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7cf/4663497/46db463709ac/srep17434-f1.jpg

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