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Functional analysis of a novel C-glycosyltransferase in the orchid Dendrobium catenatum 被引量:9
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作者 Zhiyao Ren Xiaoyu Ji +8 位作者 zhenbin jiao Yingyi Luo Guo-Qiang Zhang Shengchang Tao Zhouxi Lei Jing Zhang Yuchen Wang Zhong-Jian Liu Gang Wei 《Horticulture Research》 SCIE 2020年第1期1426-1443,共18页
Flavonoids,which are a diverse class of phytonutrients,are used by organisms to respond to nearly all abiotic stresses and are beneficial for human health.Glycosyltransferase,used during the last step of flavonoid bio... Flavonoids,which are a diverse class of phytonutrients,are used by organisms to respond to nearly all abiotic stresses and are beneficial for human health.Glycosyltransferase,used during the last step of flavonoid biosynthesis,is important in flavonoid enrichment.However,little is known about glycosyltransferase in the orchid Dendrobium catenatum(D.officinale).In this study,we isolated a novel C-glycosyltransferase(designated DcaCGT)from the orchid D.catenatum by identifying and analyzing 82 putative genes in the GT1 family.DcaCGT could specifically catalyze not only di-C-glycosylation but also O-glycosylation.Apart from the normal function of catalyzing 2-hydroxynaringenin and phloretin to the respective di-C-glycosides,DcaCGT also catalyzes apigenin to cosmosiin.Targeted metabolic profiling of the substrates(2-hydroxynaringenin,phloretin,and apigenin)and products(vitexin,isovitexin,vicenin-2,nothofagin,3’,5’-di-C-glucosylphloretin,and cosmosiin)in different tissues showed that vicenin-2 was the most abundant product of this novel enzyme.Cosmosiin was detected in flowers and flower buds.We also established that DcaCGT functions expanded throughout the evolution of D.catenatum.Residual OGT activity may help D.catenatum resist drought stress.Our study illustrates the function,origin,and differentiation of DcaCGT and provides insights into glycosylation and molecular propagation processes,which can be used to improve the production of flavonoids by the cultivated medicinal plant D.catenatum. 展开更多
关键词 FLOWERS expanded DROUGHT
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群体表型性状研究揭示环境与遗传因素对霍山石斛表型及物种分类的影响 被引量:5
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作者 焦振彬 罗毅波 《生物多样性》 CAS CSCD 北大核心 2021年第8期1073-1086,共14页
石斛属(Dendrobium)种类繁多,属内物种具有丰富的表型多样性。霍山石斛(D.huoshanense)为我国特有物种,其与河南石斛(D.henanense)和细茎石斛(D.moniliforme)以及铁皮石斛(D.catenatum)等近缘种表型相似,在分类处理中存在争议。这种争... 石斛属(Dendrobium)种类繁多,属内物种具有丰富的表型多样性。霍山石斛(D.huoshanense)为我国特有物种,其与河南石斛(D.henanense)和细茎石斛(D.moniliforme)以及铁皮石斛(D.catenatum)等近缘种表型相似,在分类处理中存在争议。这种争议很大程度上与植物普遍存在的表型可塑性和代际共存有关。为探究环境和代际间遗传因素对霍山石斛表型性状的影响以及霍山石斛与近缘种的物种边界问题,本研究观测了安徽省霍山县霍山石斛(野生、林间和温室F1代、林间和温室F2代)、野生河南石斛、细茎石斛和铁皮石斛,共计16个群体2,279株植株的假鳞茎茎长等12个表型性状;在种内层面,首次借鉴生态学同质园实验和遗传学代际间性状比较的方法,对霍山石斛群体表型性状进行差异显著性检验和95%置信区间比较以及主成分和变异系数等统计学分析。在种间层面,对霍山石斛与河南石斛和铁皮石斛等近缘种群体表型性状进行比较和分析。结果表明,环境因素对霍山石斛假鳞茎茎长和假鳞茎直径等具有显著的影响,代际间遗传因素对霍山石斛假鳞茎直径具有显著的影响。霍山石斛与铁皮石斛和细茎石斛等近缘种群体在假鳞茎茎长、假鳞茎直径、花瓣长和花瓣宽等表型性状方面均存在显著性差异和间隔,但与河南石斛仅在假鳞茎表型性状方面有显著性差异。我们的研究明确了环境和代际间遗传因素对霍山石斛表型性状的影响程度,为霍山石斛与近缘种等争议物种的分类和鉴定提供了表型证据。 展开更多
关键词 石斛 兰科植物 表型性状 环境因素 遗传因素
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