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首页> 外文期刊>Planta: An International Journal of Plant Biology >Mapping quantitative trait loci associated with chlorophyll a fluorescence parameters in soybean (Glycine max (L.) Merr.)
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Mapping quantitative trait loci associated with chlorophyll a fluorescence parameters in soybean (Glycine max (L.) Merr.)

机译:绘制与大豆中叶绿素a荧光参数相关的定量性状基因座(Glycine max(L.)Merr。)

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Chlorophyll a fluorescence parameters can provide qualitative and quantitative information about photosynthetic processes in chloroplasts. JIP-test and modulated fluorescence (MF) parameters are commonly used chlorophyll a fluorescence parameters. This study was conducted to identify quantitative trait loci (QTLs) associated with JIP-test parameters, MF parameters, and photosynthetic rate (P-N), and to examine the relationships among them in soybean (Glycine max (L.) Merr.). Pot and field experiments were performed to evaluate 184 recombinant inbred lines (RILs) for five JIP-test parameters (ABS/RC, TRo/ABS, ETo/TRo, REo/ETo, and PIABS), four MF parameters (Fv/Fm, Fv'/Fm', I broken vertical bar PSII, and qP), and P-N. Significant correlations were commonly observed among JIP-test parameters, MF parameters, and P-N. QTL mapping analysis identified 13, 9, and 4 QTLs for JIP-test parameters, MF parameters, and P-N, respectively, of which 13 were stable. Four major genomic regions were detected: LG A2 (19.81 cM) for JIP-test parameters, LG C1 (94.31 and 97.61 cM) for P-N and MF parameters, LG M (100.51 cM) for JIP-test and MF parameters, and LG O (30.61-49.91 cM) for P-N, JIP-test, and MF parameters. These results indicate that chlorophyll fluorescence parameters, especially I broken vertical bar PSII and qP, could play an important role in regulating P-N, and that JIP-test and MF parameters could be controlled by the same or different genes. The QTLs identified in this study will help in the understanding of the genetic basis of photosynthetic processes in plants. They will also contribute to the development of marker-assisted selection breeding programs for photosynthetic capacity in soybean.
机译:叶绿素a荧光参数可以提供有关叶绿体中光合作用过程的定性和定量信息。 JIP测试和调制荧光(MF)参数是常用的叶绿素a荧光参数。进行这项研究以鉴定与JIP测试参数,MF参数和光合速率(P-N)相关的定量性状基因座(QTL),并检查大豆之间的关系(Glycine max(L.)Merr。)。进行盆栽和田间试验以评估184个重组自交系(RIL)的五个JIP测试参数(ABS / RC,TRo / ABS,ETo / TRo,REo / ETo和PIABS),四个MF参数(Fv / Fm, Fv'/ Fm',我打破了竖线PSII和qP)以及PN。通常在JIP测试参数,MF参数和P-N之间观察到显着的相关性。 QTL映射分析分别为JIP测试参数,MF参数和P-N确定了13、9和4个QTL,其中13个是稳定的。检测到四个主要的基因组区域:用于JIP测试参数的LG A2(19.81 cM),用于PN和MF参数的LG C1(94.31和97.61 cM),用于JIP测试和MF参数的LG M(100.51 cM)和LG O (30.61-49.91 cM)用于PN,JIP测试和MF参数。这些结果表明,叶绿素荧光参数,尤其是I垂直条PSII和qP断裂,可能在调节P-N中起重要作用,而JIP测试和MF参数可以由相同或不同的基因控制。本研究中确定的QTL将有助于理解植物光合作用的遗传基础。他们还将为大豆光合作用能力的标记辅助选择育种计划的发展做出贡献。

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