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1.
Genome wide association studies (GWAS) were carried out to map Quantitative Trait Loci (QTL) associated with element contents in the grain using 336 spring barley. Of the elements analyzed, Fe content ranged from 21.9 to 91.0 mg kg−1, Zn from 10.4 to 54.5 mg kg−1, Ba from 0.2 to 8.9, Ca from 186.4 to 977.5, Cu from 1.5 to 9.8, K from 353.2 to 7721.5, Mg from 1049.8 to 2024.2, Mn from 8.1 to 22.9, Na from 55.9 to 627.9, P from 2272.9 to 5428.8, S from 880.7 to 1898.0, Si from 19.1 to 663.2, and Sr from 0.35 to 2.62 mg kg−1. GWAS were carried out using 6519 SNP markers and multiple elements in MLM:PCA + K model in TASSEL software. Population analyses showed two sub-populations, primarily based on row types. GWAS for row types showed association with INTERMEDIUM-C, a modifier gene for lateral spikelet fertility in the 4H chromosome, validating current GWAS approach. GWAS also showed that 2 QTL for Ba, 2 for Ca, 4 for Cu, 11 for Fe, 2 for K, 3 for Mg, 6 for Mn, 4 for Na, 3 for S, 5 for Si, and 3 for Zn were mapped in barley chromosomes. The QTL identified in the current study are valuable for breeding nutrient dense barley cultivars in the future, especially Zn and Fe. 相似文献
2.
缺铁胁迫下4种野生梨砧木介质pH值及根系Fe~(3+)还原酶活性的变化 总被引:5,自引:0,他引:5
以川梨、砂梨、豆梨和杜梨为材料,研究了在缺铁胁迫下培养介质的pH值和根系Fe3+还原酶活性的变化。结果表明,缺铁胁迫使4种砧木的介质pH值于处理的第2天就迅速降低,并且一直低于低铁和正常供铁处理;而低铁处理下,介质pH值在最初几天内反而高于正常处理,至4~5d之后才逐渐低于正常供铁处理;同时,NH4+-N对降低介质pH值和缓解缺铁症状有利。4种砧木的根系Fe3+还原酶活性都随供铁浓度的增加而不同程度的增大:无铁处理下,砂梨根系Fe3+的还原能力最小、杜梨最大;而在低铁和正常供铁条件下,砂梨和川梨的还原能力最强,杜梨次之,豆梨最小。还原酶大小与症状表现之间具有一致性。 相似文献
3.
Hayden E Williams Brittany Carrender Cierra D Roubicek Ryan Maurer Joel M DeRouchey Jason C Woodworth Steve S Dritz Michael D Tokach Kyle F Coble Robert D Goodband Jordan T Gebhardt 《Journal of animal science》2021,99(3)
Two experiments were conducted to evaluate the effects of Fe injection timing after birth on suckling and subsequent nursery and growing-finishing pig performance. The injectable Fe source used in both experiments was GleptoForte (Ceva Animal Health, LLC., Lenexa, KS). GleptoForte contains gleptoferron which is a Fe macromolecule complex. In Exp. 1, a total of 324 newborn pigs (DNA 241 × 600, initially 1.6 ± 0.04 kg body weight [BW]) within 27 litters were used. Two days after birth, all piglets were weighed, and six barrows and six gilts per litter were allotted to 1 of 6 treatments consisting of no Fe injection or 200 mg of injectable Fe provided in a single injection on d 2, 4, 6, 8, or 10 of age. Pigs were weaned (~21 d of age) and allotted to nursery pens with all pigs in each pen having received the same Fe treatment. In Exp. 2, a total of 1,892 newborn pigs (PIC 359 × C40; initially 1.5 ± 0.02 kg BW) within 172 litters were used. One day after birth, piglets were weighed, and 11 pigs within each litter were allotted to 1 of 6 treatments consisting of no Fe injection or 200 mg of injectable Fe provided on d 1, 3, 5, or 7 of age, or 200 mg on d 1 plus 200 mg on d 12 of age. Pigs were weaned (19 d of age) and placed in a commercial wean-to-finish facility in a total of 15 pens with equal representation of treatments in each pen. In both experiments, not providing an Fe injection after birth decreased (P < 0.05) preweaning average daily gain (ADG), weaning weight, and hemoglobin and hematocrit values compared with all other treatments. In Exp. 1, increasing the age that piglets received an Fe injection until 4 or 6 d after birth provided marginal evidence for an improvement (quadratic; P = 0.070) in preweaning ADG. For the nursery period, increasing the age that piglets received an Fe injection improved (quadratic; P = 0.013) d 80 BW, but there was no evidence of a difference (P > 0.10) in d 173 BW at the end of the grow-finish period. In Exp. 2, increasing the age that piglets received a 200 mg Fe injection showed no evidence of difference (P > 0.10) for subsequent nursery and growing-finishing ADG. In both experiments, hemoglobin and hematocrit values were decreased (linear; P < 0.05) at weaning with increasing age when pigs received an Fe injection. These experiments suggest that providing a 200 mg Fe injection within 7 d after farrowing is sufficient for optimizing preweaning and subsequent growth performance. 相似文献
4.
桃铁离子吸收动力学研究 总被引:3,自引:0,他引:3
以毛桃幼苗为试材,对不同铁形态、pH值和盐胁迫条件下铁离子吸收动力学特性进行了研究。结果表明,pH是影响铁吸收的主要因素,不同铁形态的有效性随pH的变化而变化;pH和铁形态影响桃铁离子吸收动力学参数Km和Imax;NaCI胁迫对盐敏感性植物(桃)铁吸收特性的影响,可能与质膜透性、载体系统活性以及介质中有效铁含量有关。 相似文献
5.
研究了奶牛粪便堆肥过程中形成的腐殖质与Fe2 的络合特征。结果表明,堆肥过程中形成的腐殖质与Fe2 的络合能力呈现一种动态变化。腐殖质与Fe2 的络合稳定常数受到腐殖质腐殖化程度,所处环境的离子强度、pH值的影响。此外,腐殖质络合Fe2 的能力还与腐殖质中羧基的含量成正相关。对以奶牛粪便为主的农业有机固体废弃物进行堆肥化处理,有助于其中的腐殖质与Fe2 的络合。 相似文献
6.
为了探究低温等离子体(Non-Thermal Plasma,NTP)耦合催化剂对粮仓中磷化氢(PH3)的去除效果,该文采用介质阻挡放电低温等离子体与催化剂耦合的反应装置,研究了NTP与Fe2O3催化剂耦合对PH3去除率的影响,并对耦合反应后的催化剂进行表征,分析产物及反应机理。结果表明,载体和催化剂与NTP耦合改变了NTP的放电状态,提高了PH3去除率;不同载体负载Fe2O3后,在输入功率超过53 W时,NTP与Fe2O3催化剂耦合对PH3去除率均高于无填充,Fe2O3/Al2O3与NTP耦合效果最好,去除效率达到了100%。耦合前后催化剂的表征结果表明,耦合反应之后,Fe2O3/Al2O3催化剂的比表面积降低了11.23%,Fe3+/(Fe2++Fe3+)含量提高了21.06%,Osur/(Olatt+Osur+Oads)含量减少了2.24%,Fe含量降低了4.69%,P含量增加了4.34倍。产物分析表明耦合后生成的主要产物为磷酸。研究结果表明NTP耦合Fe2O3/Al2O3催化剂具有很好的PH3去除效果,为粮食仓储行业去除磷化氢提供理论依据。 相似文献
7.
8.
通过间歇式批实验和动力学实验研究了不同pH条件下磷酸盐在镁铝双氢氧化物(Mg-Al-LDH)、钠基膨润土(Na-Mt)及镁铁铝改性膨润土(Mg-Al-Mt、Fe-Mt和Fe-Al-Mt)的吸附特征。结果表明,在pH4.5~9.0范围内,随着pH的升高,Na-Mt,Fe-Mt和Fe-Al-Mt3种矿物对磷的吸附率相应减少,镁铝双氢氧化物对磷的吸附率有所增加;Mg-Al-LDH、Fe-Mt和Fe-Al-Mt的对磷吸附率约为95%,比Mg-Al-Mt高40%,比Na-Mt高80%。用Langmuir方程描述磷的等温吸附过程,最大吸附容量(Qm)大小顺序为Fe-Al-Mt〉Fe-Mt〉Mg-Al-LDH〉Mg-Al-Mt〉Na-Mt,b值大小依次为Mg-Al-LDH〉Fe-Mt〉Fe-Al-Mt〉Mg-Al-Mt〉Na-Mt,最大缓冲容量(Qmb)以Mg-Al-LDH的为最大,Na-Mt的为最小;Freundlich等温吸附方程参数KF代表相对吸附容量,以Mg-Al-LDH的KF值最高,依次是Fe-Mt、Fe-Al-Mt和Mg-Al-Mt,Na-Mt的KF值最小,这与Qmb的结果一致;决定系数(R2)表明,Langmuir等温吸附方程能更好地拟合铁改性蒙脱土和铁铝改性蒙脱土,而Freundlich方程对钠蒙脱土,双氢氧化物和镁铝改性蒙脱土的拟合效果要好。磷酸盐吸附过程分为快反应和慢反应,用动力学实验数据进行拟合,准二级动力学方程能够更好的拟合改性蒙脱土和Mg-Al-LDH对磷的动力学吸附数据,其决定系数为0.999;Elovich方程拟合改性蒙脱土磷酸盐的吸附数据也有很好的相关性(R2为0.89~0.94)。Na-Mt矿物磷酸盐的吸附用抛物线扩散方程描述最为合适,原因可能是磷酸盐镶嵌在矿物层间是一个扩散过程,不涉及化学吸附过程。 相似文献
9.
10.
As repeatedly reported, soil flooding improves the availability of P to rice. This is in contrast with an increased P sorption in paddy soils. The effects of soil flooding on the transformation of Fe oxides and the adsorption/desorption of P of two paddy soils of Zhejiang Province in Southeast‐China were studied in anaerobic incubation experiments (submerging with water in N2 atmosphere). Soil flooding significantly increased oxalate‐extractable Fe (Feox), mainly at the expense of dithionite‐soluble Fe (FeDCB), as well as oxalate‐extractable P (Pox), but decreased the ratio of Pox/Feox. Flooding largely increased both, P adsorption and the maximum P adsorption capacity. The majority of newly sorbed P in the soils was Pox, but also more newly retained P was found to be not extractable by oxalate. Flooding also changed the characteristics of P desorption in the soils. Due to a decrease of the saturation index of the P sorption capacity, P adsorbed by flooded soils was much less desorbable than that from non‐flooded soils. There are obviously significant differences in the nature of both, the Feox and Pox fractions under non‐flooded and flooded conditions. The degree of the changes in Feox, Pox, P adsorption and P desorption by flooding depended on the contents of amorphous and total Fe oxides in non‐flooded soils. Our results confirm that the adsorption and desorption behavior of P in paddy soils is largely controlled by the transformation of the Fe oxides. The reasons of the often‐reported improved P availability to rice induced by flooding, in spite of the unfavorable effect on P desorbability, are discussed. 相似文献