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首页> 外文期刊>Plant Physiology and Biochemistry >Molecular characterization and expression analysis of the small GTPase ROP members expressed in laticifers of the rubber tree(Hevea brasiliensis)
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Molecular characterization and expression analysis of the small GTPase ROP members expressed in laticifers of the rubber tree(Hevea brasiliensis)

机译:橡胶树胶乳中表达的小GTPase ROP成员的分子表征和表达分析

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摘要

ROP (Rho of plants) proteins are plant-specific Rho-type small GTPases which play important roles in cellular processes and stress responses. This study explores the characteristics and possible functions of ROPs that are expressed primarily in laticifers of the rubber tree (Hevea brasiliensis). The work serves as a preliminary step to determining their involvement in latex flow and regeneration, laticifers formation and tapping panel dryness (TPD, a physiological disorder in rubber trees that result in the stoppage of latex flow). In this connection, we (i) identified five HbROPs (HbROP1-HbROP5) by searching latex transcripts database and the genome databases, (ii) characterized molecular and phylogenic aspects of the HbROPs and examined the cis-regulatory elements in their promoter regions; (iii) analyzed by Realtime Quantitative PCR (QPCR) the tissue specificity of the HbROPs and their expression patterns in response to tapping, bark wounding and growth regulator treatments. All five HbROP genes were strongly expressed in the latex, with HbROP1, 3, 4 and 5 showing the highest expression among the six Hevea tissues examined, viz. latex, bud, mature leaf, bark, male flower and seed. When tapping was initiated on previously untapped trees, HbROP3 transcription was substantially down-regulated whereas HbROP5 expression was markedly up-regulated. Transcripts of HbROP3 rose gradually with the development of TPD. Except for the cytokinin 6-benzyl aminopurine that induced a rise in HbROP5 transcripts by more than 2-fold, the other growth regulators tested had little effect on HbROPs expression. The roles of HbROPs in rubber tree are discussed in relation to the diverse functions of ROP homologs reported in other plant species.
机译:ROP(植物Rho)蛋白是植物特有的Rho型小GTP酶,在细胞过程和应激反应中起重要作用。这项研究探讨了主要在橡胶树(巴西橡胶树)的胶乳中表达的ROP的特征和可能的功能。这项工作是确定它们是否参与乳胶流动和再生,胶乳形成和出胶板干燥(TPD,一种橡胶树中的生理障碍,导致乳胶流动停止)的初步步骤。在这一点上,我们(i)通过搜索乳胶转录物数据库和基因组数据库鉴定了五种HbROP(HbROP1-HbROP5),(ii)表征了HbROP的分子和系统发育方面,并检查了其启动子区域的顺式调控元件; (iii)通过实时定量PCR(QPCR)分析HbROP的组织特异性及其响应敲击,树皮伤和生长调节剂处理的表达模式。所有五个HbROP基因均在乳胶中强烈表达,其中HbROP1、3、4和5在六个被检测的橡胶树组织中表达最高。乳胶,芽,成熟叶,树皮,雄花和种子。当在以前未开发的树上开始敲击时,HbROP3的转录被显着下调,而HbROP5的表达则被显着上调。随着TPD的发展,HbROP3的转录产物逐渐增加。除了细胞分裂素6-苄基氨基嘌呤诱导HbROP5转录物增加超过2倍外,其他测试的生长调节剂对HbROPs的表达影响很小。讨论了HbROP在橡胶树中的作用,并与其他植物物种中报道的ROP同源物的多种功能有关。

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