首页> 外文期刊>Journal of Plant Biochemistry and Biotechnology >Functional annotation and characterization of hypothetical protein involved in blister blight tolerance in tea (Camellia sinensis (L) O. Kuntze)
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Functional annotation and characterization of hypothetical protein involved in blister blight tolerance in tea (Camellia sinensis (L) O. Kuntze)

机译:茶叶枯萎耐受性的假设蛋白质的功能注释与表征(Camellia Sinensis(L)O. Kuntze)

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Tea [Camellia sinensis (L) O. Kuntze], worldwide known source of popular non-alcoholic beverage, is severely affected by various biotic and abiotic stresses. Among these, blister blight (BB) disease caused by the obligate biotrophic fungus Exobasidium vexan is responsible for significant depletion of its yield and quality. Our comparative NGS transcriptomic analysis although elucidated global gene expression pattern of BB defense transitions, yet left with 12,022 transcripts categorized as 'hypothetical proteins (HPs)'. In this study, efforts were made for assigning functions to HPs derived from RNA-Seq data and successfully identified novel putative candidates involved in BB defense in tea. Domain and family-based characterization identified 9390 HPs representing 2867 protein families and 953 super families. Of these, 213 HPs were assigned with novel putative defense related functional categories (LRR, WRKY, NAC, chitinases and peroxidases). Further, sub-cellular localization (cytosolic,133 HPs; transmembranic, 80 HPs) with abundance of HPs exhibiting of acidic (133) and basic (80) nature suggests their wider functional range. 36 HPs upregulated in tolerant genotype having significant interactions with defense responsive candidates in Protein-Protein Interaction Network analysis, possibly suggests their key regulatory role in BB defense. Interestingly, 12 stereo-dynamically stable structures [LRR (5), NAC (4), WRKY, Chitinase & Peroxidase (1 each)] of HP's were successfully modelled based on their conserved signature sequences and empirically validated using qRT-PCR analysis, therefore, can be potential novel candidates possibly involved in signal transduction and pathogen recognition during BB defense in tea. Futuristically, novel genes identified in this study can be potentially utilized to expedite genetic improvement efforts in tea. The approach successfully employed in tea can also be adopted for assigning molecular function to the HPs in other plant species.
机译:茶叶[Camellia Sinensis(L)O. Kuntze],全球知名流行的非酒精饮料来源,受到各种生物和非生物胁迫的严重影响。其中,由InveGoriage Biotrophic真菌exobasidium v​​exan引起的泡罩枯萎病(BB)疾病负责其产量和质量的显着消耗。我们的比较NGS转录组分析虽然阐明了BB防御转变的全球基因表达模式,但留下了12,022名转录物,分为'假设蛋白质(HPS)'。在这项研究中,努力为从RNA-SEQ数据衍生的HPS分配功能,并成功确定了茶中BB防御的新推定候选人。域和基于家庭的表征确定了9390 HPS,代表2867个蛋白质家族和953个超级家庭。其中,分配了213个HPS,分配了新推定的防御相关功能类别(LRR,WRKY,NAC,几章酶和过氧化物酶)。此外,亚细胞定位(细胞溶质,133 hps;透气爆发,80 hps)具有丰富的HPS呈现酸性(133)和基本(80)性质,表明其较宽的功能范围。 36HPS上调耐受性基因型,具有与蛋白质 - 蛋白质相互作用网络分析中的防御反应性候选者具有显着的相互作用,可能在BB防御中提出了它们的关键监管作用。有趣的是,12个立体动态稳定的结构[LRR(5),NAC(4),Wrky,Chitinase&基于其保守的签名序列成功建模HP的过氧化物酶(1)HP成功建模并使用QRT-PCR分析进行了经验验证,因此可以是潜在的新型候选者在茶中BB防御期间的信号转导和病原体识别。未来,本研究中发现的新基因可能是可能用于加快茶叶中的遗传改进努力。在茶中成功使用的方法也可以采用在其他植物物种中将分子功能分配给HPS。

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