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首页> 外文期刊>Plant Biotechnology Journal >Gibberellin-associated cisgenes modify growth, stature and wood properties in Populus
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Gibberellin-associated cisgenes modify growth, stature and wood properties in Populus

机译:嗜酸甘油蛋白相关的Cisgenes在杨树中改变生长,身材和木材性质

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P>We studied the effects on plant growth from insertion of five cisgenes that encode proteins involved in gibberellin metabolism or signalling. Intact genomic copies of PtGA20ox7, PtGA2ox2,Pt RGL1_1, PtRGL1_2 and PtGAI1 genes from the genome-sequenced Populus trichocarpa clone Nisqually-1 were transformed into Populus tremula x alba (clone INRA 717-1B4), and growth, morphology and xylem cell size characterized in the greenhouse. Each cisgene encompassed 1-2 kb of 5' and 1 kb of 3' flanking DNA, as well as all native exons and introns. Large numbers of independent insertion events per cisgene (19-38), including empty vector controls, were studied. Three of the cisgenic modifications had significant effects on plant growth rate, morphology or wood properties. The PtGA20ox7 cisgene increased rate of shoot regeneration in vitro, accelerated early growth, and variation in growth rate was correlated with PtGA20ox7 gene expression. PtRGL1_1 and PtGA2ox2 caused reduced growth, while PtRGL1_2 gave rise to plants that grew normally but had significantly longer xylem fibres. RT-PCR studies suggested that the lack of growth inhibition observed in PtRGL1_2 cisgenic plants was a result of co-suppression. PtGAI1 slowed regeneration rate and both PtGAI1 and PtGA20ox7 gave rise to increased variance among events for early diameter and volume index, respectively. Our work suggests that cisgenic insertion of additional copies of native genes involved in growth regulation may provide tools to help modify plant architecture, expand the genetic variance in plant architecture available to breeders and accelerate transfer of alleles between difficult-to-cross species.
机译:P>我们研究了对植物生长的影响从插入植物生长,所述植物生长为5种CISGENE编码涉及胃蛋白代谢或信号传导的蛋白质。从基因组测定的杨树蛋白克隆Nisqually-1的PTGA20Ox7,Ptga2Ox2,PtRG11,PTRG1_2和Ptgai1基因的完整基因组拷贝将Nisqually-1转化为杨树X alba(克隆INRA 717-1B4),并表现出生长,形态和木质细胞尺寸在温室里。每个顺式包括1-2 kB的5'和1kb的3'侧翼DNA,以及所有原生外显子和内含子。研究了每种Cisgene(19-38)的大量独立插入事件,包括空载体对照。三种Ciscenic修饰对植物生长速率,形态或木质性质具有显着影响。 PTGA20Ox7 Cisgene在体外,加速早期生长和生长速率的变化与PTGA20Ox7基因表达相关。 PTRGL1_1和PTGA2OX2引起的增长率降低,而PTRGL1_2则产生正常但具有明显较长的木质纤维的植物。 RT-PCR研究表明,在PTRGL1_2 Ciscisic植物中观察到的生长抑制是共抑制的结果。 PTGAI1减缓再生率和PTGAI1和PTGA20Ox7分别产生了早期直径和体积指数的事件之间的变化。我们的作品表明,Cisencic插入涉及生长调节的额外基因副本可以提供帮助修改工厂建筑的工具,扩大植物建筑的遗传方差,并加速难以交叉物种之间的等位基因转移。

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