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首页> 外文期刊>Pertanika Journal of Tropical Agricultural Science >Temporal Expression of a Putative Homogentisate Solanesyltransferase cDNA in Wounded Aquilaria malaccensis , an Endangered Tropical Tree
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Temporal Expression of a Putative Homogentisate Solanesyltransferase cDNA in Wounded Aquilaria malaccensis , an Endangered Tropical Tree

机译:受伤的Aquilaria中推定的同型异盐盐溶那溶那甲苯三烷基转移酶cDNA的时间表达,一种濒临灭绝的热带树

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Homogentisate prenytransferase (HPT) generally catalyses prenylation reactions in tocochromanol and plastoquinone-9 biosynthesis, while homogentisate solanesyltransferase (HST) is specific to reaction leading to plastoquinone, an essential component in the synthesis of carotenoid, a powerful antioxidant and precursor to vitamin A. In Aquilaria spp. abiotic stress in the form of wounding is the main trigger for the production of a highly-valued terpene-rich wood known as agarwood. Putative HST cDNA, AmHST1 was cloned from total RNA of callus tissue of Aquilaria malaccensis using reverse transcription approach. Based on a partial HST sequence, specific primers were initially designed to amplify the internal open reading frame region followed by RACE, which successfully amplified the cDNA. The partial length AmHST1 cDNA measured about 1182 bp nucleotides and encodes a polypeptide of 392 amino acid. Sequence alignment revealed that AmHST1 shares 74% - 77% similarity with HPT from Arabidopsis and Theobroma cacao. Gene expression analysis indicated that the AmHST1 expression was suppressed in wounded tissues. Results suggest that there should be a potential trade-off between genes involved in plastoquinone and terpenoid synthesis as they both share similar upstream genes and precursors. When facing a major abiotic stress such as wounding, the latter is favoured.
机译:同源异液戊酸酶(HPT)一般催化在蟾蜍溴酚和塑性醌-9生物合成中的戊烯化反应,而同性化异盐溶那硅烷基转移酶(HST)是特异于导致塑性醌的反应,其合成类胡萝卜素,一种强源性抗氧化剂和维生素A的前体的反应。在Aquilaria spp。伤口形式的非生物压力是生产富有富萜的木材的主要触发,被称为伞形。推定的HST cDNA,使用逆转录方法,从Aquilaria的愈伤组织组织的总RNA中克隆了AMHST1。基于部分HST序列,最初设计专用引物以扩增内部开放读数框架区域,然后进行竞争,该区域成功扩增cDNA。部分长度AMHST1 cDNA测量约1182bp核苷酸,并编码392个氨基酸的多肽。序列对准显示AMHST1股份与拟南芥和神经群roma可可的HPT相似性74%-77%。基因表达分析表明,在受伤组织中抑制了AMHST1表达。结果表明,在塑性醌和萜类合成中参与的基因之间应该存在潜在的折衷,因为它们都含有类似的上游基因和前体。面对伤害等重大的非生物压力,后者受到青睐。

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