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首页> 外文期刊>Functional & integrative genomics >cDNA-AFLP analysis reveals heat shock proteins play important roles in mediating cold, heat, and drought tolerance in Ammopiptanthus mongolicus
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cDNA-AFLP analysis reveals heat shock proteins play important roles in mediating cold, heat, and drought tolerance in Ammopiptanthus mongolicus

机译:cDNA-AFLP分析表明,热休克蛋白在调节沙冬青中的耐寒,耐高温和抗旱性中起重要作用

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Ammopiptanthus mongolicus (Maxim.ex kom.) Cheng F. is the only evergreen broadleaf shrub endemic to the desert of central Asian and it can survive at drought, salt, and alkali stress. It is believed that A. mongolicus is an important germplasm containing abiotic-tolerance genes. In order to identify drought-, cold-, and heat-responsive genes and to gain a better understanding of stress responses in A. mongolicus, genome-wide investigation of drought-, cold-, and heat-responsive genes was performed in A. mongolicus using cDNA-amplified fragment length polymorphism. Selective amplification with 240 primer combinations generated 5,000 differentially expressed transcript derived fragments (TDFs). Of these, 201 TDFs with differential expression patterns were excised from gels, reamplified by PCR, and sequenced. The gene expression patterns of 11 regulated genes were further investigated by semiquantitative reverse transcriptase polymerase chain reaction analysis. Sequencing and similarity analysis revealed that TDFs present homologies chiefly with proteins involved in various abiotic and biotic stress and developmental responses. The information presented in this study reveals that heat shock proteins play an active role in mediating drought, cold, and heat tolerance in A. mongolicus.
机译:Ammopiptanthus mongolicus(Maxim.ex kom。)Cheng F.是唯一的中亚沙漠特有的常绿阔叶灌木,它可以在干旱,盐和碱胁迫下生存。相信蒙古曲霉是含有非生物耐受性基因的重要种质。为了鉴定干旱,寒冷和热响应基因,并更好地了解蒙古曲霉的胁迫响应,在A.中进行了干旱,寒冷和热响应基因的全基因组研究。蒙古利用cDNA扩增的片段长度多态性。用240个引物组合进行的选择性扩增产生了5,000个差异表达的转录本衍生片段(TDF)。其中,从凝胶中切出201个具有差异表达模式的TDF,通过PCR扩增并测序。通过半定量逆转录酶聚合酶链反应分析进一步研究了11种调控基因的基因表达模式。测序和相似性分析表明,TDFs主要与涉及各种非生物和生物胁迫及发育反应的蛋白质呈现同源性。这项研究中提供的信息表明,热激蛋白在介导蒙古沙枣的干旱,寒冷和耐热性中起积极作用。

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