首页> 外文期刊>Pertanika Journal of Tropical Agricultural Science >Photosynthetic Performance in Improved ‘KDML105’ Rice ( Oryza sativa L.) Lines Containing Drought and Salt Tolerance Genes under Drought and Salt Stress
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Photosynthetic Performance in Improved ‘KDML105’ Rice ( Oryza sativa L.) Lines Containing Drought and Salt Tolerance Genes under Drought and Salt Stress

机译:在干旱和盐胁迫下含有干旱和耐盐基因的改进的“KDML105”稻米(Oryza Sativa L.)系的光合性能

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Rice (Oryza sativa L.) ‘KDML105’ is the most popular aromatic rice originating in Thailand. This cultivar is highly susceptible to abiotic stresses, especially drought and salt stress during the seedling stage. The objective of this study was to investigate the photosynthetic performance in response to drought and salt stress of four improved breeding lines, specifically CSSL94 and CSSL103 (containing drought-tolerant quantitative trait loci: DT-QTLs) and RGD1 and RGD4 (containing a salt-tolerance gene, SKC1), with ‘KDML105’ (susceptible) and DH103 (tolerant to drought and salt stress) as the controls. Rice seedlings were grown for 21 days in hydroponic solutions and then exposed to salt stress (150 mM NaCl) or drought stress (20% PEG6000) for 10 days. The results indicated that when subjected to drought and salt stress, all rice lines/cultivar exhibited significant reductions in net photosynthesis rate (PN), stomatal conductance (gs), transpiration rate (E), the maximal quantum yield of PSII photochemistry (Fv/Fm), the effective quantum yield of PSII photochemistry (Fv’/Fm’), photosynthetic pigments, and SPAD readings, whereas water use efficiency (WUE) and non-photochemical quenching (NPQ) increased. Compared with ‘KDML105’, CSSL94, and CSSL103 were more tolerant to both drought and salinity, showing less reduction in all photosynthetic parameters. For RGD1 and RGD4, it was confirmed that these lines had a higher level of salt tolerance than ‘KDML105’ based on better photosynthetic performance under salt stress, demonstrating that these lines were also more tolerant to drought stress.
机译:米饭(Oryza sativa L.)'KDML105'是泰国的最受欢迎的芳香水稻。该品种高度易受非生物应激的影响,特别是在幼苗期间的干旱和盐胁迫。本研究的目的是探讨响应四种改进的育种线的干旱和盐胁迫的光合作用,特别是CSSL94和CSSL103(含有耐旱定量性状:DT-QTLS)和RGD1和RGD4(含盐 - )具有“KDML105”(易感)和DH103(耐旱和盐胁迫)的耐受性基因,SKC1)作为对照。在水培溶液中生长水稻幼苗21天,然后暴露于盐胁迫(150mM NaCl)或干旱胁迫(20%PEG6000)10天。结果表明,当进行干旱和盐胁迫时,所有稻米/品种都表现出净光合速率(PN),气孔导率(GS),蒸腾率(E),PSII光化学的最大量子产率(FV /)显着降低(FV / FM),PSII光化学(FV'/ FM'),光合色素和Spad读数的有效量子产率,而用水效率(WUE)和非光化学淬火(NPQ)增加。与“KDML105”,CSSL94和CSSL103相比,对干旱和盐度更容易耐受,显示所有光合参数的降低。对于RGD1和RGD4,证实这些系列的耐盐性高于“KDML105”,基于盐胁迫的更好的光合性能,表明这些线也更容易耐受干旱胁迫。

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