Nounjan Noppawan, Siangliw Jonaliza L, Toojinda Theerayut, Chadchawan Supachitra, Theerakulpisut Piyada
Salt-tolerant Rice Research Group, Department of Biology, Faculty of Science, Khon Kaen University, Khon Kaen 40002, Thailand.
Rice Gene Discovery Laboratory, BIOTEC, NSTDA, Kasetsart University, Kamphaeng Saen Campus, Nakorn Pathom 73140, Thailand.
Plant Physiol Biochem. 2016 Jun;103:96-105. doi: 10.1016/j.plaphy.2016.02.038. Epub 2016 Mar 2.
Two chromosome segment substitution lines of Khao Dawk Mali 105 (KDML105) rice that carry quantitative trait loci for drought tolerance located on chromosome 8 (DT-QTL8) designated CSSL8-94 and CSSL8-116 were investigated for co-expression network and physiological responses to salinity compared to their parents (KDML105; drought and salt sensitive recurrent parent, and DH103; drought tolerant QTL donor). These CSSL lines show different salt-response traits under salt stress (CSSL8-94 shows higher tolerance than CSSL8-116) and possess different segments of DT-QTL8. To identify specific biological process(es) associated with salt-stress response, co-expression network analysis was constructed from each DT-QTL segment. To evaluate differential physiological mechanisms responding to salt stress, all rice lines/cultivar were grown for 21 d in soils submerged in nutrient solutions, then subjected to 150 mM NaCl for 7 d. Physiological parameters related to co-expression network analysis (photosynthetic parameters) and salt responsive parameters (Na(+)/K(+) ratio, proline content, malondialdehyde and ascorbate peroxidase activity; EC1.11.1.1) were investigated along with the expression analysis of related genes. Physiological responses under salt stress particularly photosynthesis-related parameters of CSSL8-94 were similar to DH103, whereas those of CSSL8-116 were similar to KDML105. Moreover, expression levels of photosynthesis-related genes selected from the co-expression networks (Os08g41460, Os08g44680, Os06g01850, Os03g07300 and Os02g42570) were slightly decreased or stable in CSSL8-94 and DH103 but were dramatically down-regulated in CSSL8-116 and KDML105. These differential responses may contribute to the photosynthesis systems of CSSL8-94 being less damaged under salt stress in comparison to those of CSSL8-116. It can be concluded that the presence of the specific DT-QTL8 segment in CSSL8-94 not only confers drought tolerant traits but also enhances its salt tolerant ability.
研究了两个携带位于第8号染色体上的耐旱数量性状位点(DT-QTL8)的泰国香米105(KDML105)水稻染色体片段代换系,分别命名为CSSL8-94和CSSL8-116,与它们的亲本(KDML105;干旱和盐敏感轮回亲本,以及DH103;耐旱QTL供体)相比,分析了其共表达网络和对盐胁迫的生理反应。这些CSSL系在盐胁迫下表现出不同的盐响应性状(CSSL8-94比CSSL8-116具有更高的耐受性),并且拥有不同的DT-QTL8片段。为了确定与盐胁迫响应相关的特定生物学过程,从每个DT-QTL片段构建了共表达网络分析。为了评估对盐胁迫的不同生理机制,所有水稻品系/品种在淹没于营养液中的土壤中生长21天,然后用150 mM NaCl处理7天。研究了与共表达网络分析相关的生理参数(光合参数)和盐响应参数(Na(+)/K(+)比值、脯氨酸含量、丙二醛和抗坏血酸过氧化物酶活性;EC1.11.1.1)以及相关基因的表达分析。盐胁迫下的生理反应,特别是CSSL8-94的光合作用相关参数与DH103相似,而CSSL8-116的则与KDML105相似。此外,从共表达网络中选择的光合作用相关基因(Os08g41460、Os08g44680、Os06g01850、Os03g07300和Os02g42570)的表达水平在CSSL8-94和DH103中略有下降或稳定,但在CSSL8-116和KDML105中则显著下调。这些差异反应可能导致CSSL8-94在盐胁迫下的光合作用系统比CSSL8-116受到的损害更小。可以得出结论,CSSL8-9中的特定DT-QTL8片段的存在不仅赋予了耐旱性状,还增强了其耐盐能力。 8-94中的特定DT-QTL8片段的存在不仅赋予了耐旱性状,还增强了其耐盐能力。