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Biomass Accumulation and Cell Wall Structure of Rice Plants Overexpressing a Dirigent-Jacalin of Sugarcane (ShDJ) Under Varying Conditions of Water Availability

机译:在水分利用条件不同的条件下过表达甘蔗Digit-Jacalin的水稻植株的生物量积累和细胞壁结构

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摘要

A sugarcane gene encoding a dirigent-jacalin, ShDJ, was induced under drought stress. To elucidate its biological function, we integrated a ShDJ-overexpression construction into the rice Nipponbare genome via Agrobacterium-mediated transformation. Two transgenic lines with a single copy gene in T0 were selected and evaluated in both the T1 and T4 generations. Transgenic lines had drastically improved survival rate under water deficit conditions, at rates close to 100%, while WT did not survive. Besides, transgenic lines had improved biomass production and higher tillering under water deficit conditions compared with WT plants. Reduced pectin and hemicellulose contents were observed in transgenic lines compared with wild-type plants under both well-watered and water deficit conditions, whereas cellulose content was unchanged in line #17 and reduced in line #29 under conditions of low water availability. Changes in lignin content under water deficit were only observed in line #17. However, improvements in saccharification were found in both transgenic lines along with changes in the expression of OsNTS1/2 and OsMYB58/63 secondary cell wall biosynthesis genes. ShDJ-overexpression up-regulated the expression of the OsbZIP23, OsGRAS23, OsP5CS, and OsLea3 genes in rice stems under well-watered conditions. Taken together, our data suggest that ShDJ has the potential for improving drought tolerance, plant biomass accumulation, and saccharification efficiency.
机译:在干旱胁迫下诱导了一种编码甘草甜素的甘蔗基因ShDJ。为了阐明其生物学功能,我们通过农杆菌介导的转化将ShDJ-过表达构建体整合到水稻Nipponbare基因组中。选择在T0中具有单拷贝基因的两个转基因品系,并在T1和T4世代中进行评估。在缺水条件下,转基因品系的存活率大大提高,接近100%,而野生型无法存活。此外,与野生型植物相比,转基因品系在缺水条件下具有更高的生物量生产和更高的分ing。与野生型植物相比,在充足水和缺水条件下,转基因品系中果胶和半纤维素含量降低,而在水利用率低的情况下,品系#17中的纤维素含量不变,而品系#29中的纤维素含量降低。缺水条件下木质素含量的变化仅在第17行观察到。但是,在两个转基因品系中都发现了糖化作用的改善以及OsNTS1 / 2和OsMYB58 / 63次级细胞壁生物合成基因表达的变化。 ShDJ过表达可在水源充足的条件下上调水稻茎中OsbZIP23,OsGRAS23,OsP5CS和OsLea3基因的表达。两者合计,我们的数据表明ShDJ具有提高抗旱性,植物生物量积累和糖化效率的潜力。

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