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1.
彭凤  路承凯  梁岗 《广西植物》2023,43(6):1097-1104
铁(Fe)是植物生长发育所必需的营养元素而镉(Cd)是对植物有害的元素且对植物Fe和Cd的吸收存在拮抗作用。OsIMA是一类正调控水稻Fe吸收的一类小肽,其过表达可以促进Fe的积累。为探究OsIMA是否参与水稻对Cd胁迫的适应性,该研究以水稻为研究材料,利用荧光定量PCR分析了OsIMA基因的表达水平,通过遗传转化和CRISPR/Cas9基因编辑技术构建了OsIMA1过表达植物和ima1突变体植物,评估了OsIMA1过表达和突变体植物在Cd逆境条件下的株高,并利用电联耦合等离子体质谱法测量了根和地上部的Fe和Cd含量。结果表明:(1)Cd处理后,OsIMA1和OsIMA2的转录水平上调。(2)OsIMA1过表达植物比野生型植物对Cd胁迫更耐受。(3)ima1功能缺失突变体比野生型植物对Cd胁迫更敏感。(4)OsIMA1过表达植株根系的Cd含量较高,而ima1突变体植株地上部的Cd含量较高。综上所述,OsIMA1通过限制Cd从根向地上部的转运以增强水稻对Cd逆境的适应能力,该研究结果为定向培育耐Cd作物提供了理论参考。  相似文献   

2.
秋华柳和枫杨幼苗对镉的积累和耐受性   总被引:5,自引:0,他引:5  
以秋华柳和枫杨当年实生幼苗为研究对象,采用向土壤添加外源镉(CdCl2 · 2.5H2O)的形式设置了0(对照组)、10 、20 、50、100 mg/kg 5个处理,研究了镉胁迫下秋华柳和枫杨幼苗的生长、生物量变化和根茎叶镉含量,并评价了两树种的耐性指数(Ti)、转移系数(Tf)和生物富集系数(BCF)。结果表明:(1)在镉含量为10 mg/kg时,秋华柳和枫杨幼苗基于生长和生物量参数的耐性指数(Ti)分别为91.72和91.62,与对照组相比无显著变化,其余各组(20、50、100 mg/kg)则显著低于对照植株(P<0.05);(2) 土壤镉浓度小于20mg/kg时,秋华柳植株茎、叶镉积累量分别高达61.73 mg/kg、163.04 mg/kg,根镉积累量为91.05 mg/kg;枫杨植株茎、叶镉积累量最高分别为7.9 mg/kg、5.25 mg/kg,仅为秋华柳茎、叶的12.8%和3.2%,根镉积累量高达190.68 mg/kg;(3) 除对照外,秋华柳幼苗各部分镉含量为叶>根>茎,转移系数(Tf)介于0.789-1.513之间,枫杨幼苗各部分镉含量为根>茎>叶,转移系数(Tf)介于0.037-0.044之间,远远小于秋华柳Tf;(4)秋华柳和枫杨幼苗在土壤镉浓度为10 mg/kg时具有很高的生长适应性和耐性,秋华柳根吸收的镉向地上部分转移能力、地上部分积累镉的能力都远远大于枫杨,生物富集系数(BCF)进一步证实了这一特性。研究证明,秋华柳植株具有很高的镉耐性、镉转移能力及地上部分积累镉的能力,适合于镉污染严重区域的植物修复。  相似文献   

3.
两种生态型香根草对镉的耐受和积累特性比较   总被引:1,自引:0,他引:1  
以Monto和Veriveria nermorlis两种生态型香根草[Chrysopogon zizanioides (L.) Roberty]为材料,采用室内水培试验,在不同浓度(0、200、800、2 000 μmol·L-1)硝酸镉溶液处理7 d后,比较、分析两类型香根草的叶片生长状况、叶绿素荧光参数、镉的积累、亚细胞分布和化学形态分布等指标的差异,明确两类香根草对镉的耐受能力和积累特性。结果表明,(1)在中度(800 μmol·L-1)和重度(2 000 μmol·L-1)镉胁迫条件下,Monto的叶片生长状况优于Veriveria nermorlis,其FmFv/FmFv/Fo等叶绿素荧光参数显著高于Veriveria nermorlis,而其叶片、根部镉含量、富集系数和镉转移系数则显著低于Veriveria nermorlis。(2)镉主要分布在香根草根和叶细胞壁组分和可溶性组分中,两者镉含量占比之和达95%以上;对于两种生态型香根草的叶片和Monto的根部而言,细胞壁组分和可溶组分镉占比随着镉胁迫浓度增加分别呈增加和下降趋势,但两参数在Veriveria nermorlis根中的变化趋势则相反;Monto叶中细胞壁组分的镉占比要高于Veriveria nermorlis。(3)镉的化学形态分布分析显示,两种生态型香根草叶片中以氯化钠提取态镉为主,而根中以乙醇提取态和氯化钠提取态镉为主;Monto根中乙醇提取态的镉含量占比远大于Veriveria nermorlis。研究发现,Monto香根草的镉耐受能力较强,主要因为其根、叶中的镉积累量、镉富集系数和转移系数均低于Veriveria nermorlis,且Monto叶片中细胞壁组分的镉占比和根中乙醇提取态镉的占比更高。  相似文献   

4.
为探索栗属杂交F1代幼林期生长、枝条性状遗传变异规律及杂种优势,并为栗属育种亲本选配及早期选择指标筛选奠定理论基础,该研究以锥栗、板栗种内和种间9个杂交组合子代及其亲本为材料,在分析F1代幼林期生长、枝条性状遗传变异规律及杂种优势的基础上,利用SSR分子标记检测7个亲本的遗传距离,进而分析栗属杂交子代生长、枝条性状杂种优势与亲本遗传距离间的关系。结果显示:(1)栗属杂交F1代生长、枝条性状均存在较高的遗传变异,各性状组合间F值的变动范围为5.08~22.03,组合内的变异系数范围为6.60%~27.69%;各性状广义遗传力均在0.5以上,性状受遗传影响较大;除地径外,其他性状遗传传递力均大于100%,性状遗传稳定性较高;各性状中亲优势率为-6.01%~44.40%,且F1代生长、枝条性状存在普遍的超亲分离现象。(2)28对引物在7个亲本中共检测出115个多态性等位位点,每对引物的等位基因数3~5个不等,平均每对引物等位基因数为4.1个,多态性程度较高;Shannons 指数(I)、多态性信息含量(PIC)的平均值分别为1.25、0.674,亲本遗传多样性较为丰富。(3)相关分析表明,杂交子代一年生枝长、一年生枝粗及节间距的杂种优势与亲本遗传距离均存在显著的线性关系,并随遗传距离增大杂种优势增强。  相似文献   

5.
陆地棉产量性状QTLs的分子标记及定位   总被引:34,自引:0,他引:34  
用我国的高产栽培品种泗棉3号和美国栽培品种TM-1为材料,构建F2和F2∶3作图群体,应用301对SSR引物和1040个RAPD引物,对产量性状QTLs进行了分子标记筛选,结果共筛选出了37对SSR多态性引物和10个RAPD多态性引物的49个位点,鉴定出了控制产量性状变异的主效QTLs。定位于第9染色体的连锁群,分别具有控制铃重、衣分和籽指的主效QTLs,铃重的2个QTLs分别解释F2∶3群体表型变异的18.2%和21.0%;在F2群体检测到的1个衣分QTL解释表型变异的25%,另一个衣分QTL在F2群体和F2∶3群体都检测到,解释F2群体衣分的24.9%的表型变异,解释F2∶3群体衣分的5.9%的表型变异;在F2∶3群体铃重的一个QTL的同一位置同时检测到一个籽指QTL,它解释15.6%的表型变异,是一因多效或是紧密连锁的两个QTLs,有待进一步研究。本研究标记的产量性状主效QTLs可用于棉花产量性状的标记辅助选择。  相似文献   

6.
红芽芋驯化苗对盐胁迫的光合及生理响应   总被引:1,自引:0,他引:1  
洪森荣  尹明华 《西北植物学报》2013,33(12):2499-2506
为探讨江西铅山红芽芋的耐盐机制,以其组培移栽驯化苗为材料,研究了盐胁迫对其生物量积累、光合特性、荧光特性等抗逆生理特性的影响。结果表明:(1)红芽芋幼苗生物量和根冠比在低盐胁迫下(50 mmol·L-1)得到显著促进,而在高盐胁迫下(100~250 mmol·L-1)受到显著抑制。(2)低盐胁迫幼苗的净光合速率(Pn)、气孔导度(Gs)、气孔限制值(Ls)、水分利用效率(WUE)和瞬时羧化效率(CUE)比对照(0 mmol·L-1)显著增加,细胞间CO2浓度(Ci)比对照显著下降,蒸腾速率(Tr)与对照无显著差异;高盐胁迫幼苗的PnLsWUECUEGs较对照显著下降,Ci比对照显著增加。(3)低盐胁迫幼苗的最大荧光(Fm)、PSⅡ潜在光化学效率(Fv/F0)和光化学猝灭系数(qP)比对照显著增加,初始荧光(F0)较对照显著下降,PSⅡ最大光化学效率(Fv/Fm)、PSⅡ实际光化学效率(ΦPSⅡ)、开放的PSⅡ反应中心捕获激发能效率(Fv′/Fm′)和非光化学猝灭系数(NPQ)与对照无显著差异;而高盐胁迫幼苗的F0FmFv/FmFv/F0、ΦPSⅡFv′/Fm′和qP均较对照显著下降,NPQ比对照显著增加。(4)各盐胁迫幼苗叶片的可溶性蛋白含量以及过氧化物酶、超氧化物歧化酶和过氧化氢酶活性与对照相比先升后降,并以低盐下最高;可溶性总糖和脯氨酸含量均比对照显著增加;丙二醛含量和质膜透性相对值在低盐胁迫下无显著变化,而在高盐下显著增加;叶绿素含量和根系活力在低盐胁迫下无显著变化,而在高盐胁迫后开始显著下降。研究发现,江西铅山红芽芋移栽驯化苗的耐盐阈值为 50 mmol·L-1,其能够诱导提高叶片可溶性蛋白含量和主要保护酶活性,稳定质膜透性、叶绿素含量和根系活力,增加PSⅡ潜在光化学效率,提高PSⅡ的电子传递活性,维持PSⅡ实际光化学效率,有效启动非辐射热能量耗散机制来保护了光合机构,最终提高净光合速率,增加生物量。  相似文献   

7.
CH257是‘三粒小麦’与普通小麦‘石优20’回交3次后选育的一个三雌蕊材料,可大幅度增加小麦的穗粒数。为了解析小麦三雌蕊性状的遗传方式,挖掘其控制基因并开发相关分子标记,该研究利用CH257和‘中国春’配制组合,获得其F1、F2和BC1F1群体进行遗传分析;使用纯合正常和纯合三雌蕊F2株系,采用分离群体分组分析法(bulked segrgant analysis,BSA)构建单雌蕊、三雌蕊混池进行90K基因芯片扫描,根据芯片结果在相应区段开发分子标记。结果表明:CH257中三雌蕊的发育受1对显性单基因Pis CH257控制;使用90K基因芯片扫描将Pis CH257定位于2DL染色体上,在2DL相应区段开发标记,共获得5个与Pis CH257连锁的共显性SSR标记,其顺序为2DL07、2DL17、2DL22、Pis CH257、2DL25、2DL38,Pis CH257两侧的连锁标记2DL22、2DL25与其遗传距离分别为1.1cM和2.5cM。本研究结果为克隆控制小麦三雌蕊性状的基因奠定了基础。  相似文献   

8.
为探索草果(Amomum tsaoko)的遗传多样性和栽培起源,对草果和拟草果(A. paratsaoko)在8个SSR位点上的遗传变异进行了分析。结果表明,8个SSR位点在20个草果居群和5个拟草果居群分别检测到149和101个等位基因,特有等位基因分别为44和59个。方差分析(AMOVA)表明,仅10.43%的遗传变异存在于2物种间,8.66%于种内居群间,80.91%于居群内(P<0.01)。拟草果居群总的遗传分化程度较大(0.15≤Fst≤0.25),草果的为中度(0.05≤Fst≤0.15)。SMM模式下2物种的遗传分化均加大(Fst<Pst)。因此,草果和拟草果共享祖先的遗传多样性,可能通过随机遗传漂变完成谱系分选后基因突变的积累形成了现有遗传分化模式;围绕大围山的马关、屏边地区可能是草果栽培起源地理中心。  相似文献   

9.
镧对镉胁迫下大蒜幼苗生长及镉积累的影响   总被引:2,自引:0,他引:2  
赵胡  李裕红  陈杰 《植物研究》2008,28(4):447-451
采用土培实验研究了镧(La2+)对镉(Cd)胁迫下大蒜幼苗生长及Cd积累的影响。结果表明:低浓度Cd(<5 mg·kg-1)对大蒜生长有微弱的促进作用而高浓度Cd对其有明显抑制作用。外施系列浓度La2+对高浓度Cd胁迫下大蒜幼苗生长具有明显的缓解效应,单株鲜重、干重、根长及地上部分高度均具有明显或不同程度的增加。测定结果表明,Cd主要积累在大蒜根部而向地上部分转运的较少,外施系列浓度La2+对高浓度Cd胁迫下大蒜幼苗根系对Cd积累具有显著的抑制效应,同时也抑制Cd向地上部分转运。从外施La2+对高浓度Cd胁迫下大蒜幼苗生长及大蒜对Cd积累情况来看,La2+的适宜缓解效应浓度是在Cd浓度为20 mg·kg-1时,La2+浓度为10~15 mg·kg-1;在Cd浓度为40 mg·kg-1,La2+浓度为5 mg·kg-1。  相似文献   

10.
为研究不同CO2浓度升高和氮肥水平对水稻叶绿素荧光特性的影响,利用由开顶式气室(OTC)组成的CO2浓度自动调控平台开展田间试验。以粳稻9108为试验材料,CO2浓度设置CK(对照,环境大气CO2浓度)、C1(CO2浓度比CK增加160 μmol/mol)和C2(CO2浓度比CK增加200 μmol/mol)3个水平;氮肥设置低氮(N1:10 g/m2)、中氮(N2:20 g/m2)和高氮(N3:30 g/m2)3个水平。结果表明,在低氮条件下,与CK相比,C1处理使拔节期的Fo上升4.8%(P=0.031);C2处理使拔节期的Fo上升6.3%(P=0.015),Fv/Fm下降4.8%(P=0.003),使孕穗期的Fo上升12.7%(P=0.039),Fv/Fo下降18.2%(P=0.039)。在高氮条件下,与CK相比,C2处理使灌浆期的FmFvFv/Fm分别下降3.6%(P=0.039)、4.9%(P=0.013)和1.3%(P=0.039)。在中氮条件下,与CK相比,C1和C2处理的影响不明显。在整个生育期内,CO2浓度升高与施氮处理交互作用对水稻叶绿素荧光特性的影响未到达显著水平。研究表明,大气CO2浓度升高使水稻叶片光系统Ⅱ受损,抑制其电子传递能力、电子受体QA氧化还原情况、最大光化学效率和潜在活性,通过适量施氮可以有效地缓解其负面效应。  相似文献   

11.
An F2 and an equivalent F3 population derived from a cross between a high salt-tolerance indica variety, Nona Bokra, and a susceptible elite japonica variety, Koshihikari, were produced. We performed QTL mapping for physiological traits related to rice salt-tolerance. Three QTLs for survival days of seedlings (SDSs) under salt stress were detected on chromosomes 1, 6 and 7, respectively, and explained 13.9% to 18.0% of the total phenotypic variance. Based on the correlations between SDSs and other physiological traits, it was considered that damage of leaves was attributed to accumulation of Na+ in the shoot by transport of Na+ from the root to the shoot in external high concentration. We found eight QTLs including three for three traits of the shoots, and five for four traits of the roots at five chromosomal regions, controlled complex physiological traits related to rice salt-tolerance under salt stress. Of these QTLs, the two major QTLs with the very large effect, qSNC-7 for shoot Na+ concentration and qSKC-1 for shoot K+ concentration, explained 48.5% and 40.1% of the total phenotypic variance, respectively. The QTLs detected between the shoots and the roots almost did not share the same map locations, suggesting that the genes controlling the transport of Na+ and K+ between the shoots and the roots may be different.  相似文献   

12.
Excessive cadmium (Cd) accumulation in rice poses a risk to food safety. OsHMA3 plays an important role in restricting Cd translocation from roots to shoots. A non‐functional allele of OsHMA3 has been reported in some Indica rice cultivars with high Cd accumulation, but it is not known if OsHMA3 allelic variation is associated with Cd accumulation in Japonica cultivars. In this study, we identified a Japonica cultivar with consistently high Cd accumulation in shoots and grain in both field and greenhouse experiments. The cultivar possesses an OsHMA3 allele with a predicted amino acid mutation at the 380th position from Ser to Arg. The haplotype had no Cd transport activity when the gene was expressed in yeast, and the allele did not complement a known nonfunctional allele of OsHMA3 in F1 test. The allele is present only in temperate Japonica cultivars among diversity panels of 1483 rice cultivars. Different cultivars possessing this allele showed greatly increased root‐to‐shoot Cd translocation and a shift in root Cd speciation from Cd―S to Cd―O bonding determined by synchrotron X‐ray absorption spectroscopy. Our study has identified a new loss‐of‐function allele of OsHMA3 in Japonica rice cultivars leading to high Cd accumulation in shoots and grain.  相似文献   

13.
Cadmium accumulation in grain of durum wheat (Triticum turgidum L. var. durum) represents a concern to consumers. In an effort to understand the regulation of Cd accumulation in maturing grain, the remobilization of 109Cd applied to stem and flag leaves was examined in two near-isogenic lines that differ in grain Cd accumulation. Absorbed 109Cd was primarily retained in the labelling flap (50-54% and 65-80% for stem and flag leaves, respectively). Cadmium exported from the stem flap initially (3 d) accumulated in the stem in a declining gradient towards the head. Subsequent remobilization of Cd deposited in the stem was associated with Cd accumulation in the grain. Cadmium exported from the flag leaf flap was primarily directed to the grain. Little (<1%) Cd accumulated in the glumes or rachis, and transport of Cd to shoot tissues below the flag leaf node was low (<1%). On average, 9% and 17% of absorbed 109Cd accumulated in the grain 14 d after labelling the stem and flag leaf, respectively. Irrespective of labelling position, the low Cd-accumulating isoline averaged 1.5-2-fold lower Cd accumulation per grain and Cd concentration in the grain than the high Cd-accumulating isoline. Cadmium accumulation in the grain was inversely correlated with Cd retention in the stem (stem labelled) and labelling flap (flag leaf labelled) for both isolines. Cadmium translocation to the grain was not inhibited by Zn when both were applied simultaneously (50 pM 109Cd; 0.5 microM 65Zn) to the flag leaf. These results show that elevated remobilization of Cd from the leaves and stem to the maturing grain may be partially responsible for the high accumulation of Cd in durum wheat grain.  相似文献   

14.
Cadmium (Cd) is a widespread soil pollutant and poses a significant threat to human health via the food chain. Large phenotypic variations in Cd concentration of radish roots and shoots have been observed. However, the genetic and molecular mechanisms of Cd accumulation in radish remain to be elucidated. In this study, a genetic linkage map was constructed using an F(2) mapping population derived from a cross between a high Cd-accumulating cultivar NAU-Dysx and a low Cd-accumulating cultivar NAU-Yh. The linkage map consisted of 523 SRAP, RAPD, SSR, ISSR, RAMP, and RGA markers and had a total length of 1,678.2 cM with a mean distance of 3.4 cM between two markers. All mapped markers distributed on nine linkage groups (LGs) having sizes between 134.7 and 236.8 cM. Four quantitative trait loci (QTLs) for root Cd accumulation were mapped on LGs 1, 4, 6, and 9, which accounted for 9.86 to 48.64 % of all phenotypic variance. Two QTLs associated with shoot Cd accumulation were detected on LG1 and 3, which accounted for 17.08 and 29.53 % of phenotypic variance, respectively. A major-effect QTL, qRCd9 (QTL for root Cd accumulation on LG9), was identified on LG 9 flanked by NAUrp011_754 and EM5me6_286 markers with a high LOD value of 23.6, which accounted for 48.64 % of the total phenotypic variance in Cd accumulation of F(2) lines. The results indicated that qRCd9 is a novel QTL responsible for controlling root Cd accumulation in radish, and the identification of specific molecular markers tightly linked to the major QTL could be further applied for marker-assisted selection (MAS) in low-Cd content radish breeding program.  相似文献   

15.
Iron toxicity is one of the major constraints for lowland rice production in highly weathered soils, which are widely distributed in tropics and subtropics and often lack macronutrients such as potassium (K) and phosphorus (P). To analyze the genetic factors for excess iron accumulation under K or P deficiency, a set of seedlings in F3 and F8 generations from an Oryza sativa cross between a japonica cultivar ‚Gimbozu’ and an indica cultivar ‚Kasalath’ were raised and exposed to nutritional stresses in a short period under nutritional solutions. In the F8 lines, contents of K, P, Fe, and Mg in dried shoots were measured. Quantitative trait loci (QTL) for the iron accumulation and related mineral contents in each plant were analyzed with composite interval mapping. QTLs for the Fe, P and Mg content in shoots were compared in the maps of F3 and F8. The QTLs for the Fe content in shoots varied in three types of nutritional conditions, but consistently indicated two overlapping regions on chromosome 3 and 4. The obtained QTLs were crosschecked with those reported before. Some of these QTLs were indicative of iron excluding the power of the root, which was expressed under reduced P content in solution.  相似文献   

16.
Irrigation of paddy fields to arsenic (As) containing groundwater leads to As accumulation in rice grains and causes serious health risk to the people worldwide. To reduce As intake via consumption of contaminated rice grain, identification of the mechanisms for As accumulation and detoxification in rice is a prerequisite. Herein, we report involvement of a member of rice NRAMP (Natural Resistance‐Associated Macrophage Protein) transporter, OsNRAMP1, in As, in addition to cadmium (Cd), accumulation through expression in yeast and Arabidopsis. Expression of OsNRAMP1 in yeast mutant (fet3fet4) rescued iron (Fe) uptake and exhibited enhanced accumulation of As and Cd. Expression of OsNRAMP1 in Arabidopsis provided tolerance with enhanced As and Cd accumulation in root and shoot. Cellular localization revealed that OsNRAMP1 resides on plasma membrane of endodermis and pericycle cells and may assist in xylem loading for root to shoot mobilization. This is the first report demonstrating role of NRAMP in xylem mediated loading and enhanced accumulation of As and Cd in plants. We propose that genetic modification of OsNRAMP1 in rice might be helpful in developing rice with low As and Cd content in grain and minimize the risk of food chain contamination to these toxic metals.  相似文献   

17.
International rice export markets are increasing demands for rapid improvements in grain quality characteristics. The African rice Oryza glaberrima is a new potential source of genes that will enhance the eating, cooking, and milling properties of the rice grain. The objective of this research was to identify and characterize quantitative trait loci (QTLs) among 312 doubled haploid lines derived from the BC3F1 of an interspecific cross of O. sativa × O. glaberrima. Genetic material was planted in replicated plots and evaluated for ten grain quality traits in 2001 in Colombia. A linkage map was constructed with 100 polymorphic microsatellite markers using the mapdisto software program to adjust for segregation distortion. Transgressive segregation was observed for all traits. Interval and composite interval analyses identified 27 QTLs for nine characters located on 11/12 chromosomes. The chromosomal positions of QTLs for percentage amylose, alkali-spreading score, and percentage protein were in agreement with data reported by others, whereas QTL markers for percentage head rice, percentage milled rice, percentage protein, and percentage brown rice were different in our mapping population. Five major QTLs were found to be associated with improved percentage rice bran, percentage amylose, and alkali-spreading score. Seven QTLs for improved percentage rice bran, percentage milled rice, alkali-spreading score, percentage protein, and grain length/width ratio were derived from the O. glaberrima accession. Three new QTLs for percentage rice bran are reported here for the first time. Results from this study suggest that the African rice might be a valuable new source for introgression and improvement of several traits that affect quality traits demanded by the different rice export markets.Approved for publication by the Director of the Louisiana Agricultural Experiment Station as paper no. 04-14-0054.  相似文献   

18.
水稻粒长QTL定位与主效基因的遗传分析   总被引:1,自引:0,他引:1  
该研究利用短粒普通野生稻矮杆突变体和长粒栽培稻品种KJ01组配杂交组合F_1,构建分离群体F_2;并对该群体粒长进行性状遗传分析,利用平均分布于水稻的12条染色体上的132对多态分子标记对该群体进行QTL定位及主效QTLs遗传分析,为进一步克隆新的主效粒长基因奠定基础,并为水稻粒形育种提供理论依据。结果表明:(1)所构建的水稻杂交组合分离群体F_2的粒长性状为多基因控制的数量性状。(2)对543株F_2分离群体进行QTL连锁分析,构建了控制水稻粒长的连锁遗传图谱,总长为1 713.94 cM,共检测出24个QTLs,只有3个表现为加性遗传效应,其余位点均表现为遗传负效应。(3)检测到的3个主效QTLs分别位于3号染色体的分子标记PSM379~RID24455、RID24455~RM15689和RM571~RM16238之间,且三者对表型的贡献率分别为54.85%、31.02%和7.62%。(4)在标记PSM379~RID24455之间已克隆到的粒长基因为该研究新发现的主效QTL位点。  相似文献   

19.
Effects of two kinds of iron fertilizer, FeSO4 and EDTA·Na2Fe were studied on cadmium accumulation in rice plants with two rice genotypes, Zhongzao 22 and Zhongjiazao 02, with soil culture systems. The results showed that application of iron fertilizers could hardly make adverse effects on plant growth and rice grain yield. Soil application of EDTA·Na2Fe significantly reduced the Cd accumulation in rice roots, shoots and rice grain. Cd concentration in white rice of both rice genotypes in the treatment of soil application of EDTA·Na2Fe was much lower than 0.2 mg/kg, the maximal Cd permission concentra- tion in cereal crop foods in State standard. However, soil application of FeSO4 or foliar application of FeSO4 or EDTA·Na2Fe resulted in the significant increase of Cd accumulation in rice plants including rice grain compared with the control. The results also showed iron fertilizers increased the concentra- tion of iron, copper and manganese element in rice grain and also affected zinc concentration in plants. It may be a new promising way to regulate Cd accumulation in rice grain in rice production through soil application of EDTA·Na2Fe fertilizers to maintain higher content of available iron and ferrous iron in soils.  相似文献   

20.
A number of isolines of durum wheat (Triticum turgidum var. durum) differ in their translocation of Cd. In the field, the high isolines accumulate twice the Cd in leaves and grain when compared to the low isolines. The hypothesis that differential accumulation of Cd is associated with differential production of organic acids was tested by measuring Cd content in tissues, Cd partitioning within the root, and organic acids in tissues. In solution culture, the high and low isolines of W9261-BG did not differ in any of the variables measured. Within W9260-BC, the low isoline had half the Cd in its shoot, 30% more tightly bound Cd in the root and higher concentrations of fumaric, malic, and succinic acids in the root compared to the high isoline. Differential Cd accumulation may be linked to differential adsorption and retention of Cd in the roots of the low Cd-accumulating isolines, possibly via chelation with organic acids.  相似文献   

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