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首页> 外文期刊>BMC Plant Biology >Identification and characterization of nuclear genes involved in photosynthesis in Populus
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Identification and characterization of nuclear genes involved in photosynthesis in Populus

机译:杨树光合作用核基因的鉴定与表征

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Background The gap between the real and potential photosynthetic rate under field conditions suggests that photosynthesis could potentially be improved. Nuclear genes provide possible targets for improving photosynthetic efficiency. Hence, genome-wide identification and characterization of the nuclear genes affecting photosynthetic traits in woody plants would provide key insights on genetic regulation of photosynthesis and identify candidate processes for improvement of photosynthesis. Results Using microarray and bulked segregant analysis strategies, we identified differentially expressed nuclear genes for photosynthesis traits in a segregating population of poplar. We identified 515 differentially expressed genes in this population (FC?≥?2 or FC?≤?0.5, P? Conclusions This study provides new genome-scale strategies for the discovery of potential candidate genes affecting photosynthesis in Populus, and for identification of the functions of genes involved in regulation of photosynthesis. This work also suggests that improving photosynthetic efficiency under field conditions will require the consideration of multiple factors, such as stress responses.
机译:背景技术在现场条件下,实际和潜在光合速率之间的间隙表明光合作用可能得到改善。核基因提供了提高光合效率的可能目标。因此,影响木质工厂光合特性的核基因的基因组鉴定和表征将为光合作用的遗传调节提供关键见解,并确定候选过程改善光合作用。结果采用微阵列和膨胀的分析分析策略,我们在杨树的隔离群体中鉴定了差异表达的光合作用特征的核基因。我们鉴定了该群体中的515个差异表达基因(Fc?≥?2或Fc?≤≤0.5,p?结论本研究为发现影响杨树中光合作用的潜在候选基因提供了新的基因组规模策略,以及鉴定参与光合作用调节的基因的功能。这项工作还表明,在现场条件下提高光合效率将需要考虑多种因素,例如压力反应。

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