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Analyses and identifications of quantitative trait loci and candidate genes controlling mesocotyl elongation in rice
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作者 ZHANG Xi-juan LAI Yong-cai +11 位作者 MENG Ying TANG Ao DONG Wen-jun LIU You-hong LIU Kai WANG Li-zhi YANG Xian-li WANG Wen-long DING Guo-hua JIANG Hui REN Yang JIANG Shu-kun 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第2期325-340,共16页
Rice direct seeding has the significant potential to save labor and water,conserve environmental resources,and reduce greenhouse gas emissions tremendously.Therefore,rice direct seeding is becoming the major cultivati... Rice direct seeding has the significant potential to save labor and water,conserve environmental resources,and reduce greenhouse gas emissions tremendously.Therefore,rice direct seeding is becoming the major cultivation technology applied to rice production in many countries.Identifying and utilizing genes controlling mesocotyl elongation is an effective approach to accelerate breeding procedures and meet the requirements for direct-seeded rice(DSR) production.This study used a permanent mapping population with 144 recombinant inbred lines(RILs) and 2 828 bin-markers to detect quantitative trait loci(QTLs) associated with mesocotyl length in 2019 and 2020.The mesocotyl lengths of the rice RILs and their parents,Lijiangxintuanheigu(LTH) and Shennong 265(SN265),were measured in a growth chamber at 30°C in a dark environment.A total of 16 QTLs for mesocotyl length were identified on chromosomes 1(2),2(4),3(2),4,5,6,7,9,11(2),and 12.Seven of these QTLs,including qML1a,qML1b,qML2d,qML3a,qML3b,qML5,and qML11b,were reproducibly detected in both years via the interval mapping method.The major QTL,qML3a,was reidentified in two years via the composite interval mapping method.A total of 10 to 413 annotated genes for each QTL were identified in their smallest genetic intervals of 37.69 kb to 2.78 Mb,respectively.Thirteen predicted genes within a relatively small genetic interval(88.18 kb) of the major mesocotyl elongation QTL,qML3a,were more thoroughly analyzed.Finally,the coding DNA sequence variations among SN265,LTH,and Nipponbare indicated that the LOC_Os03g50550 gene was the strongest candidate gene for the qML3a QTL controlling the mesocotyl elongation.This LOC_Os03g50550 gene encodes a mitogen-activated protein kinase.Relative gene expression analysis using qRT-RCR further revealed that the expression levels of the LOC_Os03g50550 gene in the mesocotyl of LTH were significantly lower than in the mesocotyl of SN265.In conclusion,these results further strengthen our knowledge about rice’s genetic mechanisms of mesocotyl elongation.This investigation’s discoveries will help to accelerate breeding programs for new DSR variety development. 展开更多
关键词 japonica rice direct-seeded rice(dsr) mesocotyl elongation quantitative trait loci candidate gene
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种植方式对水稻CH_4排放的影响 被引量:10
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作者 傅志强 黄璜 《农业环境科学学报》 CAS CSCD 北大核心 2008年第6期2513-2517,共5页
应用静止箱取样技术观测了直播与移栽稻甲烷排放量,同时测定了根系生长活力,比较了两者的差异。结果表明,直播稻与移栽稻呈现相同的甲烷排放日变化与季节变化模式;基于本田生长期甲烷排放量比较,直播稻甲烷排放通量低于移栽稻,但甲烷排... 应用静止箱取样技术观测了直播与移栽稻甲烷排放量,同时测定了根系生长活力,比较了两者的差异。结果表明,直播稻与移栽稻呈现相同的甲烷排放日变化与季节变化模式;基于本田生长期甲烷排放量比较,直播稻甲烷排放通量低于移栽稻,但甲烷排放总量高于移栽稻,两者差异显著(P<0.05)。甲烷排放量与根系活力相关性分析表明,甲烷排放与根系活力、根系吸收能力呈显著正相关关系(P<0.05);根系活力对移栽稻全生育期甲烷排放影响较大,相关性达0.05水平,但直播稻并不显著;直播稻全生育期的甲烷排放通量与根系吸收能力呈显著正相关(P<0.05),而移栽稻在生长中后期受根系吸收能力的影响较大。因此水稻根系活力是影响甲烷排放的重要因素;加强田间水分管理,减少直播稻甲烷排放十分必要。 展开更多
关键词 水稻 直播 甲烷排放 机理
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