详细信息
QTL mapping of drought-related traits in the hybrids of Populus deltoides 'Danhong' x Populus simonii 'Tongliao1' ( SCI-EXPANDED收录) 被引量:4
文献类型:期刊文献
英文题名:QTL mapping of drought-related traits in the hybrids of Populus deltoides 'Danhong' x Populus simonii 'Tongliao1'
作者:Du, Changjian[1,2] Sun, Pei[1,3] Cheng, Xingqi[1,2] Zhang, Lei[1,2] Wang, Lijuan[1,2] Hu, Jianjun[1,2]
第一作者:Du, Changjian
通信作者:Hu, JJ[1];Hu, JJ[2]
机构:[1]Chinese Acad Forestry, Res Inst Forestry, State Key Lab Tree Genet & Breeding, Key Lab Tree Breeding & Cultivat Natl Forestry &, Beijing 100091, Peoples R China;[2]Nanjing Forestry Univ, Coinnovat Ctr Sustainable Forestry Southern China, Nanjing 210037, Jiangsu, Peoples R China;[3]Beijing Acad Agr & Forestry Sci, Inst Forestry & Pomol, Beijing 100093, Peoples R China
年份:2022
卷号:22
期号:1
外文期刊名:BMC PLANT BIOLOGY
收录:;WOS:【SCI-EXPANDED(收录号:WOS:000793844700001)】;
基金:This study was supported by the National Key Research and Development Program of China (2021YFD2200201), the National Natural Science Foundation (32071797, 31570669), and the National Key Program on Transgenic Research (2018ZX08020002). The funders have no role in the study design, data analysis and interpretation, and manuscript writing, but just provide the financial.
语种:英文
外文关键词:Drought stress; QTL mapping; Crossbreeding; Populus; Coexpression network; Drought-related traits
摘要:Background: Poplar trees provide a large amount of wood material, but many parts of the world are arid or semi-arid areas because of insufficient annual precipitation, which seriously affects the growth of poplar trees. Populus simonii 'Tongliao1' shows strong tolerance to stress environments, and Populus deltoides 'Danhong' shows a stronger growth rate in a suitable environment. To identify drought tolerance-related QTLs and genes, an F-1 population derived from the cross between the 'Danhong' and 'Tongliao1' Populus was assessed under drought stress. Results: We measured drought-related traits such as the relative height growth, relative diameter growth, leaf senescence number, specific leaf area, and leaf relative water content in the population under control and drought environments. The results showed that drought stress reduced the plant height relative growth, ground diameter relative growth, specific leaf area and leaf relative water content and increased the number of leaf drops. A total of 208 QTLs were identified by QTL mapping analysis, and they consisted of 92, 63 and 53 QTLs under control, drought stress treatment and drought index conditions, respectively. A molecular identification marker for drought tolerance, np2841, which was associated with a QTL (qDLRWC-LG10-1) for relative leaf water content, was initially developed. We mined 187 candidate genes for QTL regions of five traits under a drought environment. The reference genome annotation for Populus trichocarpa and a homologous gene analysis of Arabidopsis thaliana identified two candidate genes, Potri.003G171300 and Potri.012G123900, with significant functions in response to drought stress. We identified five key regulatory genes (Potri.006G273500, Potri.007G111500, Potri.007G111600, Potri.007G111700, and Potri.007G111800) related to drought tolerance through the poplar coexpression network. Conclusion: In this study, our results indicate that the QTLs can effectively enhance the drought tolerance of poplar. It is a step closer towards unravelling the genetic basis of poplar drought tolerance-related traits, and to providing validated candidate genes and molecular markers for future genetic improvement.
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