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Sequence analysis of the Hsp70 family in moss and evaluation of their functions in abiotic stress responses

机译:HSP70家族在苔藓中的序列分析及其在非生物应激反应中的作用评价

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The 70-kD heat shock proteins (Hsp70s) are highly conserved molecular chaperones that play essential roles in cellular processes including abiotic stress responses. Physcomitrella patens serves as a representative of the first terrestrial plants and can recover from serious dehydration. To assess the possible relationship between P. patens Hsp70s and dehydration tolerance, we analyzed the P. patens genome and found at least 21 genes encoding Hsp70s. Gene structure and motif composition were relatively conserved in each subfamily. The intron-exon structure of PpcpHsp70-2 was different from that of other PpcpHsp70s; this gene exhibits several forms of intron retention, indicating that introns may play important roles in regulating gene expression. We observed expansion of Hsp70s in P. patens, which may reflect adaptations related to development and dehydration tolerance, and results mainly from tandem and segmental duplications. Expression profiles of rice, Arabidopsis and P. patens Hsp70 genes revealed that more than half of the Hsp70 genes were responsive to ABA, salt and drought. The presence of overrepresented cis-elements (DOFCOREZM and GCCCORE) among stress-responsive Hsp70s suggests that they share a common regulatory pathway. Moss plants overexpressing PpcpHsp70-2 showed salt and dehydration tolerance, further supporting a role in adaptation to land. This work highlights directions for future functional analyses of Hsp70s.
机译:70-KD热休克蛋白(HSP70s)是高度保守的分子伴侣,其在包括非生物应激反应的细胞过程中起主要作用。 Physcomitrella Patens作为第一陆地植物的代表,可以从严重的脱水中恢复。为了评估P. Patens HSP70s和脱水耐受性之间的可能关系,我们分析了P. P. Putens基因组,发现至少21个基因编码HSP70S。基因结构和基序组合物在每个亚家族中相对保守。 PPCPHSP70-2的内部外显子结构与其他PPCPHSP70S的内外结构不同;该基因表现出几种形式的内含子保留,表明内含子可能在调节基因表达中起重要作用。我们观察到P. Patens的HSP70S扩展,这可能反映与发育和脱水耐受的适应,以及主要来自串联和节段性重复。水稻,拟南芥和p的表达谱看出HSP70基因显示,超过一半的HSP70基因对ABA,盐和干旱敏感。在应激响应性HSP70中存在过度持有的顺式联合元素(DOFCOREZM和GCCCORE)表明它们共享共同的监管途径。过表达PPCPHSP70-2的苔藓植物显示出盐和脱水耐受性,进一步支持适应土地的作用。这项工作突出了HSP70S未来功能分析的指示。

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