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小麦旗叶相关性状全基因组关联分析
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作者 徐鑫 王玉洁 +2 位作者 李小军 朱效辉 刘晓蓓 《麦类作物学报》 CAS CSCD 北大核心 2023年第12期1514-1523,共10页
为发掘小麦旗叶性状相关基因位点,以384个小麦品种(系)为材料,对2个年份获得的旗叶长、宽、面积、长宽比和55K SNP芯片分型数据进行全基因组关联分析。结果发现,共检测到60个与旗叶性状显著关联的SNP,分布于除了1D、2A、4D和6D外的17对... 为发掘小麦旗叶性状相关基因位点,以384个小麦品种(系)为材料,对2个年份获得的旗叶长、宽、面积、长宽比和55K SNP芯片分型数据进行全基因组关联分析。结果发现,共检测到60个与旗叶性状显著关联的SNP,分布于除了1D、2A、4D和6D外的17对染色体上,解释表型变异的4.11%~9.70%,平均为5.64%。与旗叶长、宽、面积、长宽比相关的位点分别有12、24、18和16个,其中10个SNP为多性状相关位点。旗叶长相关SNP中,7D染色体上的3个SNP(AX-110826147、AX-111061288和AX-111843581)与2个年份旗叶长及其平均值均显著相关,1个SNP(AX-108882010)与2018年旗叶长及2个年份平均值均显著相关,这4个SNP位于7D染色体63.48~67.45 Mb区段,SNP标记间R 2的平均值为0.78(P<0.0001),呈现较大的连锁不平衡。遗传效应分析发现,该区段存在8种单倍型,其中单倍型III和IV在2个年份的旗叶长基本一致,分别为18.30和18.20 cm,高于其他6种单倍型的旗叶长;这2种单倍型分别占供试材料的40.36%和2.08%,可能是一个新的控制旗叶长的基因位点。 展开更多
关键词 小麦 叶相关性状 关联分析
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氮胁迫与非胁迫条件下玉米叶形相关性状的QTL分析 被引量:4
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作者 郭向阳 陈建军 +7 位作者 卫晓轶 吴迅 祝云芳 王安贵 刘鹏飞 汤继华 陈泽辉 罗红兵 《植物营养与肥料学报》 CAS CSCD 北大核心 2019年第11期1929-1938,共10页
【目的】叶片是植物光合作用的重要器官,也是蒸腾作用和抗逆的主要器官。在施氮(N+)与不施氮(N–)条件下鉴定玉米叶片相关性状的QTL,为高光效玉米新品种选育提供重要的理论依据。【方法】利用玉米骨干系综3为供体,许178为受体,通过杂交... 【目的】叶片是植物光合作用的重要器官,也是蒸腾作用和抗逆的主要器官。在施氮(N+)与不施氮(N–)条件下鉴定玉米叶片相关性状的QTL,为高光效玉米新品种选育提供重要的理论依据。【方法】利用玉米骨干系综3为供体,许178为受体,通过杂交、回交和分子标记辅助选择的方法,构建了一套以许178为背景的综3单片段代换系(SSSLs)群体,其中包含160个单片段代换系。以这套SSSLs以及许178为材料,在施氮和不施氮条件下,通过一年三点(贵州贵阳、德江和云南罗平)的表型评价,利用复合区间作图法对叶面积、叶绿素含量和穗下绿叶数3个叶片相关性状进行QTL定位。【结果】在基因组范围内,两种氮处理条件下共检测到42个主要叶片相关性状QTLs,分布于10条染色体上。N+条件下,在3个地点共检测出8个叶面积的QTLs,5个穗下绿叶数的QTLs,8个叶绿素QTLs。其中,qLAI1b在3个环境中同时被检测到;qLAI1b在德江、贵阳和罗平点对叶面积的贡献率分别为14.41%、14.47%和16.38%,来自于综3的等位基因起增效作用。同时,穗下绿叶数QTL(qLN7a和qLN7b)在3个环境中均被检测到。在氮胁迫(N–)条件下,3个环境中共检测出9个叶面积QTLs,7个穗下绿叶数QTLs,8个叶绿素QTLs;其中,位于bin3.08的叶面积QTL qLAI3b,片段大小为120.48 cM,在德江、贵阳和罗平的贡献率分别为20.4%、12.8%和13.2%,来自于许178的等位基因起增效作用;玉米穗下绿叶数QTL,位于bin9.01区的穗下绿叶数QTL qLN9(umc1957~umc1867~umc2078),片段大小为62.7 cM。位于bin4.08的叶绿素含量QTL qCHL4a,片段大小为18.69 cM,在德江、贵阳和罗平点对叶绿素含量的贡献率分别为17.6%、10.6%和11.4%,且来自于亲本综3的等位基因起减效作用。【结论】不同氮素处理下,检测出一些共有的玉米氮响应的主效QTLs,如qLAI3b(umc1844~umc1320~bnlg1182)、qLN7a(umc1642~umc2160~umc1929)、qLN7b(phi328175)。这些区段可能在玉米氮素吸收、转运和利用过程中起重要作用,可作为下一步精细定位和图位克隆玉米叶片相关基因的重要候选区域。 展开更多
关键词 玉米 SSSLs 氮胁迫 叶相关性状 QTL
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Age-related changes of leaf traits and stoichiometry in an alpine shrub(Rhododendron agglutinatum) along altitudinal gradient 被引量:9
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作者 WANG Meng LIU Guo-hu +4 位作者 JIN Tian-tian LI Zong-shan GONG Li WANG Hao YE Xin 《Journal of Mountain Science》 SCIE CSCD 2017年第1期106-118,共13页
Leaf morphological and stoichiometric characteristics are considered to represent both the interior inheritable characters in the plant and its adaptations to specific exterior environments. Rhododendron agglutinatum,... Leaf morphological and stoichiometric characteristics are considered to represent both the interior inheritable characters in the plant and its adaptations to specific exterior environments. Rhododendron agglutinatum,an evergreen alpine shrub species,occupies a wide range of habitats above timberline in the Miyaluo Natural Reserve,southwestern China. Along an altitudinal gradient ranging from 3700 to 4150 m,we measured leaf morphological characters including leaf dry matter content(LDMC),leaf dry mass per unit area(LMA),and one leaf area(OLA),as well as carbon(C) and nutrient(N,P) contents in leaves of three different age groups(juvenile leaves,mature leaves and senescent leaves). We also calculated the stoichiometric relationships among carbon and nutrients(C/N,C/P and N/P). Results showed thatboth age and altitude affected the leaf morphological and stoichiometric properties of R. agglutinatum. Mature leaves possessed the highest LDMC,LMA and C contents both on a dry mass basis and on a unit area basis. Younger leaves possessed higher contents of nutrients. OLA as well as ratios between carbon and nutrients(C/N,C/P) increased with ages. Juvenile leaves possessed lowest ratio between nitrogen and phosphorus. In juvenile leaves,nutrients increased with altitudinal elevation,whereas other traits decreased. In mature leaves,nutrients and their ratios with carbon showed consistent trends with juvenile leaves along increasing altitude,whereas LMA and carbon on a unit area basis showed opposite trends with juvenile leaves along increasing altitude. In senescent leaves,only content of phosphorus on a unit area basis and N/P were found linearly correlated with altitude. Our results demonstrated a clear pattern of nutrient distribution with aging process inleaves and indicated that a high possibility of N limitation in this region. We also concluded that younger leaves could be more sensitive to climate changes due to a greater altitudinal influence on the leaf traits in younger leaves than those in elder leaves. 展开更多
关键词 Leaf traits Stoichiometry Rhododendron agglutinatum Altitude Age Alpine Shrub
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