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Elucidation of Galactomannan Biosynthesis Pathway Genes through Transcriptome Sequencing of Seeds Collected at Different Developmental Stages of Commercially Important Indian Varieties of Cluster Bean (Cyamopsis tetragonoloba L.)

机译:通过在商业上重要的印度群集豆品种(Cyamopsis tetragonoloba L.)不同发育阶段收集的种子的转录组测序对半乳甘露聚糖生物合成途径基因的阐明。

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摘要

Cyamopsis tetragonoloba (L) endosperm predominantly contains guar gum a polysaccharide, which has tremendous industrial applications in food, textile, paper, oil drilling and water treatment. In order to understand the genes controlling galactomannan biosynthesis, mRNA was isolated from seeds collected at different developmental stages; young pods, mature pods and young leaf from two guar varieties, HG365 and HG870 and subjected to Illumina sequencing. De novo assembly of fourteen individual read files from two varieties of guar representing seven developmental stages gave a total of 1,13,607 contigs with an N50 of 1,244 bases. Annotation of assemblies with GO mapping revealed three levels of distribution, namely, Biological Processes, Molecular Functions and Cellular Components. GO studies identified major genes involved in galactomannan biosynthesis: Cellulose synthase D1 (CS D1) and GAUT-like gene families. Among the polysaccharide biosynthetic process (GO:0000271) genes the transcript abundance for CS was found to be predominantly more in leaf samples, whereas, the transcript abundance for GAUT-like steadily increased from 65% to 90% and above from stage1 to stage5 indicating accumulation of galactomannan in developing seeds; and validated by qRT-PCR analysis. Galactomannan quantification by HPLC showed HG365 (12.98–20.66%) and HG870 (7.035–41.2%) gradually increasing from stage1 to stage 5 (10–50 DAA) and highest accumulation occurred in mature and dry seeds with 3.8 to 7.1 fold increase, respectively. This is the first report of transcriptome sequencing and complete profiling of guar seeds at different developmental stages, young pods, mature pods and young leaf material from two commercially important Indian varieties and elucidation of galactomannan biosynthesis pathway. It is envisaged that the data presented herein will be very useful for improvement of guar through biotechnological interventions in future.
机译:藜麦胚乳(L)胚乳主要包含瓜耳胶和多糖,在食品,纺织,造纸,石油钻探和水处理中具有巨大的工业应用。为了了解控制半乳甘露聚糖生物合成的基因,从不同发育阶段收集的种子中分离了mRNA。来自两个瓜尔豆品种HG365和HG870的幼荚,成熟荚和幼叶并进行了Illumina测序。从两个瓜尔胶的十四个单独读文件的新组装,代表了七个发展阶段,得到了总共1,13,607个重叠群,N50为1,244个碱基。用GO作图的组装注释显示了三个分布水平,即生物过程,分子功能和细胞成分。 GO研究确定了涉及半乳甘露聚糖生物合成的主要基因:纤维素合酶D1(CS D1)和GAUT样基因家族。在多糖生物合成过程(GO:0000271)基因中,发现在叶片样品中CS的转录丰度主要更多,而从阶段1到阶段5,类似GAUT的转录丰度从65%稳定增加到90%以上。半乳甘露聚糖在发育中的种子中积累;并通过qRT-PCR分析进行验证。 HPLC对半乳甘露聚糖的定量显示,HG365(12.98–20.66%)和HG870(7.035–41.2%)从第1阶段到第5阶段(10–50 DAA)逐渐增加,在成熟和干燥种子中积累最高,分别增长3.8至7.1倍。 。这是有关两个不同商业重要印度品种的瓜尔豆种子在不同发育阶段的转录组测序和完整轮廓分析的首次报道,并阐明了半乳甘露聚糖的生物合成途径。可以预见,本文提出的数据对于将来通过生物技术干预来改善瓜耳胶非常有用。

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