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1.
采用国际标准的分析方法,对连云港市农业技术推广中心引进和选育的828份酿造大麦品种(系)进行了品质分析,分析项目为大麦籽粒蛋白含量、麦芽无水浸出物、糖化力、可溶性氮和库尔巴哈值等5个性状,初步摸清了现有种质资源的品质状况,筛选出了一批品质优、综合农艺性状好的品种(系),其中冈2、港啤1号和苏农21等品种已通过审定,并在生产上大面积应用。  相似文献   

2.
采取裂裂区试验设计,研究了播期和种植密度对强筋小麦临优145和中筋小麦临优2018蛋白质组分和品质性状的影响.结果表明:适期播种的小麦籽粒蛋白质含量和蛋白质产量均最高;推迟播期,强筋品种的醇溶蛋白和谷蛋白含量明显增加,而中筋品种变化不明显;强筋品种的品质性状受播期影响程度高于中筋品种.适期播种,小麦籽粒蛋白质、麦谷蛋白与湿面筋、沉降值、稳定时间、软化度和评价值呈显著或极显著正相关;推迟播期,醇溶蛋白与湿面筋含量呈显著正相关.播期变化引起的蛋白质各组分所占比例的改变是改善小麦品质性状的重要原因.在试验种植密度范围内(225万株·hm-2、300万株·hm-2和375万株·hm-2),小麦籽粒蛋白质含量变化不明显,密度对强筋品种的品质性状有一定调节作用;在低密度条件下(225万株·hm-2)中筋品种的品质性状最佳.  相似文献   

3.
基因型与生态环境对小麦籽粒品质与蛋白质组分的影响   总被引:47,自引:4,他引:43  
荆奇  姜东  戴廷波  曹卫星 《应用生态学报》2003,14(10):1649-1653
通过2年3点试验,研究了40个小麦(Triticum aestivum)品种(品系)籽粒品质性状和蛋白质组分含量的变异。结果表明,籽粒品质和蛋白质组分在基因型间存在较大的差异;根据小麦籽粒品质的综合性状,可将40个小麦品种(品系)分为6组不同的品质类型,在本试验点的生态环境条件下。基本以中筋及弱筋小麦为主;生态环境对小麦籽粒的容重、沉降值、湿面筋含量、蛋白质含量、赖氨酸含量与蛋白质组分含量均有极显著的影响,而面筋指数、淀粉含量和直链淀粉含量对环境反应不敏感,适宜的生态环境条件有利于形成合理的谷蛋白/醇溶蛋白比。面粉面筋质量好,基因型与生态环境的互作对小麦籽粒品质。谷蛋白与醇溶蛋白及两者的比值有显著影响,对球蛋白影响不大,而面粉蛋白质含量、面筋含量、沉降值及千粒重主要受基因的表达和环境的独立影响,蛋白质组分含量在基因型间和环境间的变化与小麦籽粒烘烤品质密切相关。  相似文献   

4.
纬度变化对不同冬小麦品种蛋白质组分的影响   总被引:4,自引:1,他引:3  
选用6个有代表性的冬小麦品种在河南省5个不同纬度试验点(32°—36°N)进行种植,研究纬度变化对冬小麦蛋白质组分含量的影响.结果表明:纬度变化对冬小麦清蛋白、麦谷蛋白含量和谷/醇比值有显著影响,而基因型差异对蛋白质组分的影响不显著.随着纬度的升高,清蛋白和醇溶蛋白含量呈降低趋势,而麦谷蛋白含量、谷/醇比值、蛋白质组分之和及小麦产量呈递增趋势.与其他试验点相比,信阳种植的6个小麦品种的清蛋白含量相对较高,驻马店和许昌的醇溶蛋白含量较高,而武陟和汤阴的麦谷蛋白含量较高.5月份平均气温、总日照时数和降雨量与小麦蛋白质组分地点间变化关系密切.因此,生产上选择适宜的小麦种植区,同时可在5月份采取改善光合作用、延长灌浆时间等栽培措施,以提高小麦籽粒品质.  相似文献   

5.
Shi Y  Chen MX  Yu ZW  Xu ZZ 《应用生态学报》2011,22(10):2504-2510
选用强筋小麦济麦20、中筋小麦泰山23和弱筋小麦宁麦9号3个小麦品种,设置了灌浆期不同阶段遮光处理:开花后不遮光(S0)、0~11 d遮光(S1)、12 ~23 d遮光(S2)、24~35 d遮光(S3),研究了其对不同小麦品种籽粒蛋白质组分含量和加工品质的影响.结果表明:3个小麦品种的籽粒清蛋白+球蛋白含量遮光处理间无显著差异;遮光均显著提高了济麦20和泰山23的高分子量谷蛋白亚基、低分子量谷蛋白亚基、谷蛋白、醇溶蛋白和总蛋白含量,其中灌浆中期遮光(S2)处理提高幅度高于其他处理;灌浆中期(S2)和后期(S3)遮光处理显著提高了宁麦9号各蛋白质组分含量.遮光显著降低了小麦籽粒产量,提高了籽粒面团形成时间、面团稳定时间和沉降值,其中灌浆中期遮光处理更为显著,表明籽粒品质的形成与灌浆中期的光照条件更为密切.总体上灌浆期遮光对3个小麦品种籽粒产量、蛋白质组分含量及加工品质指标的调节幅度为济麦20>泰山23>宁麦9号.  相似文献   

6.
以高产强筋小麦品种'济麦20'为试验材料,在防雨池栽条件下研究了灌水时期和灌水量对小麦氮代谢相关酶活性和籽粒蛋白质品质的影响.结果表明,随灌水时期增多和总灌水量增加,小麦开花后旗叶硝酸还原酶活性和谷氨酰胺合成酶活性显著增高,旗叶蛋白质水解酶内肽酶(EP)、氨肽酶(AP)、羧肽酶(CP)活性降低;小麦籽粒清蛋白和球蛋白含量增加,而籽粒谷蛋白和醇溶蛋白含量、成熟期籽粒谷醇/清球比值(谷蛋白+醇溶蛋白含量/清蛋白+球蛋白含量)降低;面粉沉降值和面团稳定时间显著降低,籽粒产量显著增加.研究发现,在本试验条件下,小麦全生育期灌水3次处理(底墒水+拔节水+开花水)在灌浆前中期旗叶NR和GS活性、灌浆中后期旗叶EP、CP、AP 活性均较高,且成熟期籽粒蛋白质含量、谷醇/清球比值、面团稳定时间、籽粒产量亦较高,是获得小麦高产优质的最佳灌水处理.  相似文献   

7.
戴廷波  赵辉  荆奇  姜东  曹卫星 《生态学报》2006,26(11):3670-3676
灌浆期高温和水分逆境是影响小麦籽粒产量和品质的关键气候因子。以扬麦9号、徐州26和豫麦34三个小麦品种为材料,利用人工气候室模拟灌浆期高温和水分胁迫环境,研究了花后高温及温度和水分互作对小麦籽粒蛋白质和淀粉形成的影响。结果表明,高温显著提高了小麦籽粒蛋白质含量及清蛋白、球蛋白和醇溶蛋白含量,但降低了谷蛋白含量,导致麦谷蛋白/醇溶蛋白比值降低。高温显著降低了籽粒总淀粉和支链淀粉含量及支/直比。籽粒蛋白质和淀粉及其组分形成所需的适宜昼夜温差随小麦品质类型而异,但温度水平对籽粒蛋白质和淀粉的影响较温差大。在高温和水分逆境下,温度对籽粒蛋白质和淀粉含量的影响较水分逆境大,且存在显著的互作效应。小麦籽粒蛋白质含量均表现为干旱〉对照〉渍水,以高温干旱最高,适温渍水最低;淀粉含量为对照〉干旱〉渍水,以适温对照最高,而高温渍水最低。高温和水分逆境显著提高了籽粒醇溶蛋白含量而降低了谷蛋白含量及支链淀粉含量,使蛋白质谷/醇比和淀粉支/直比降低,以高温渍水对籽粒蛋白质和淀粉组分的影响最为显著。不同品种之间,高蛋白小麦籽粒蛋白质和组分的形成受高温和水分逆境的影响更大,而低蛋白品种籽粒淀粉形成显著受温度和水分逆境的调节。分析表明,在高温和水分逆境下籽粒蛋白质含量与清蛋白和醇溶蛋白显著正相关,籽粒淀粉含量与谷蛋白、支链淀粉含量及支/直比显著正相关。  相似文献   

8.
长期轮作对黄土高原旱地小麦籽粒蛋白质营养品质的影响   总被引:3,自引:0,他引:3  
蔡艳  郝明德 《应用生态学报》2013,24(5):1354-1360
在长期定位试验条件下,研究了黄土高原旱地粮草(小麦-红豆草)、粮豆(小麦-豌豆)和粮饲(小麦-玉米)3种典型轮作制度对小麦籽粒蛋白质营养品质的影响.结果表明:轮作制度及茬口年限可对黄土高原旱地小麦籽粒蛋白质营养品质产生不同程度的影响.与连作小麦相比,实行小麦-红豆草轮作后,小麦籽粒蛋白质营养品质较稳定,且其籽粒蛋白质必需氨基酸含量、氨基酸评分、氨基酸比值系数、化学评分和氨基酸指数均较高,可作为黄土高原生产优质蛋白小麦的轮作制度;小麦与豌豆进行轮作,豌豆茬后1年小麦籽粒蛋白质营养品质较高,但豌豆茬后2年小麦籽粒蛋白质必需氨基酸含量较低,且多种必需氨基酸评分和化学评分低于连作小麦,必需氨基酸指数比连作小麦低12.2%,营养品质较低;虽然粮饲轮作小麦籽粒蛋白质营养品质较稳定,但其粗蛋白、必需氨基酸含量及氨基酸平衡程度均低于连作小麦.  相似文献   

9.
蔡艳  郝明德 《生态学杂志》2013,24(5):1354-1360
在长期定位试验条件下,研究了黄土高原旱地粮草(小麦-红豆草)、粮豆(小麦-豌豆)和粮饲(小麦-玉米)3种典型轮作制度对小麦籽粒蛋白质营养品质的影响.结果表明: 轮作制度及茬口年限可对黄土高原旱地小麦籽粒蛋白质营养品质产生不同程度的影响.与连作小麦相比,实行小麦-红豆草轮作后,小麦籽粒蛋白质营养品质较稳定,且其籽粒蛋白质必需氨基酸含量、氨基酸评分、氨基酸比值系数、化学评分和氨基酸指数均较高,可作为黄土高原生产优质蛋白小麦的轮作制度;小麦与豌豆进行轮作,豌豆茬后1年小麦籽粒蛋白质营养品质较高,但豌豆茬后2年小麦籽粒蛋白质必需氨基酸含量较低,且多种必需氨基酸评分和化学评分低于连作小麦,必需氨基酸指数比连作小麦低12.2%,营养品质较低;虽然粮饲轮作小麦籽粒蛋白质营养品质较稳定,但其粗蛋白、必需氨基酸含量及氨基酸平衡程度均低于连作小麦.  相似文献   

10.
通过田间试验,研究了不同烯效唑干拌种剂量对3个不同筋力小麦品种植株氮素积累、运转和籽粒蛋白质品质的影响,结果表明,基因型、环境及烯效唑处理对小麦品质的影响效应依次减小,且均达到了极显著水平,但三者的互作效应较小。烯效唑处理后提高了不同生态点下不同小麦品种籽粒蛋白质含量和产量,处理后的面筋含量和沉淀值增加,面团形成时间和稳定时间延长;干拌种增加了开花期各营养器官中的氮素含量和单株氮素积累量,花后氮素总转移量、总转移率及其对籽粒氮的贡献率极显著提高,且处理后旗叶中可溶性蛋白质含量在花后15 d内均显著高于对照;对籽粒中氮含量而言,烯效唑处理后提高了灌浆初期籽粒中的非蛋白氮含量,花后5—20 d内均高于对照,灌浆期间籽粒蛋白氮含量均高于对照,因而处理后的粗蛋白质含量变化动态特点为谷底高、回升快。研究认为,烯效唑处理如同基因、环境一样独立影响小麦籽粒品质,而烯效唑处理后提高了开花初期旗叶中的可溶性蛋白质含量和花前营养器官中氮素含量及花后氮素转运量,可能是其提高籽粒非蛋白氮含量、促进籽粒蛋白质含量增加和蛋白质质量提高的重要原因之一,烯效唑干拌种对小麦籽粒蛋白质品质的改善具有广适性。  相似文献   

11.
72份青稞氨基酸组成与营养价值评价   总被引:1,自引:0,他引:1  
为了解青稞氨基酸的组成及营养品质,本研究测定了72份青稞材料籽粒的17种氨基酸(色氨酸除外)含量,通过对供试青稞材料氨基酸含量进行聚类分析,并比较育成品种与地方品种的氨基酸组成差异,对青稞的氨基酸进行了营养价值评价。结果表明,青稞氨基酸总含量平均为87.454 mg/g DW,变幅为47.8~178.7 mg/g DW,其中必需氨基酸含量占37.15%,谷氨酸的含量最高且变异大,蛋氨酸含量最低,赖氨酸含量变异小,91.67%的青稞材料的第一限制性氨基酸为赖氨酸。青稞氨基酸的贴近度为0.903,与世界粮农组织(FAO)、世界卫生组织(WHO)、联合国大学(UNU)提出的模式蛋白质的必需氨基酸组成较接近,氨基酸比值系数分SRC(73.14)较高。非必需氨基酸占青稞总氨基酸含量的62.85%,其中鲜味和甜味氨基酸含量分别为26.58 mg/g DW和21.85 mg/g DW,分别占总氨基酸含量的30.04%和24.43%。不同青稞材料的氨基酸含量和营养价值有很大的差异,地方品种各氨基酸含量均高于育成品种。供试材料中有4份青稞的氨基酸营养价值及风味氨基酸含量均较高。研究结果可为优质氨基酸组成的青稞选育及青稞加工提供指导。  相似文献   

12.
PEG预处理对青稞种子萌发和幼苗生理特性的影响   总被引:4,自引:0,他引:4       下载免费PDF全文
选择国内外28份青稞品种材料幼苗第一片展开叶,分别测定其相对含水量和失水率,并选择其中对水分胁迫敏感与不敏感的材料各1份,研究不同浓度(5%~30%)聚乙二醇(PEG)预处理对青稞种子萌发、幼苗生长和生理特性的影响,探讨短期水分胁迫对青稞生长发育的调节作用。结果显示:(1)28个青稞材料中‘旱地紫青稞’幼苗叶片的相对含水量最高(60.16%)、‘大麻青稞’最低(38.98%),而离体失水率‘旱地紫青稞’最低(8.80%)、‘大麻青稞’最高(20.20%)。说明‘大麻青稞’对水分胁迫最敏感,而‘旱地紫青稞’最不敏感。(2)随着胁迫程度的增加,青稞种子的萌发率和生根率,幼苗的根长、苗高和鲜重均呈先增加后降低的趋势,‘旱地紫青稞’和‘大麻青稞’种子分别在15%和10%PEG处理下发芽和生根最佳且均与对照差异显著(P<0.05),两品种的幼苗根长、苗高和鲜重均在10%PEG处理下表现最佳,但‘大麻青稞’与对照差异不显著。(3)‘旱地紫青稞’幼苗叶片可溶性蛋白和叶绿素含量随PEG处理浓度增加而逐渐增加,而丙二醛含量和相对电导率则逐渐降低,并在30%PEG处理下效果差异极显著(P<0.01);‘大麻青稞’叶片可溶性蛋白和叶绿素含量随PEG处理浓度增加呈先增加后降低的趋势,丙二醛含量和相对电导率呈先降低后增加的趋势,并在20%PEG处理下最佳。研究表明,短时间低浓度PEG处理对青稞种子萌发、幼苗生长及可溶性蛋白、叶绿素、丙二醛含量和相对电导率等生理指标的改善均有一定的促进作用;高浓度PEG处理却具有抑制作用,且高浓度PEG胁迫条件下,耐旱性强比耐旱性弱品种的自我调控能力更强。  相似文献   

13.
《Genomics》2021,113(6):3735-3749
Germination and seedling growth are crucial for plant development and agricultural production. While, the regulatory mechanisms during these processes in Tibetan hulless barley (Hordeum vulgare L. var. nudum) are not well understood. Given the regulatory roles of microRNAs (miRNAs) in crop plants and the irreplaceability of barley in the highland area of China, we herein presented a genome-wide survey of miRNAs to reveal a potential regulatory network in the early developmental stages of two Tibetan hulless barleys, from which a total of 156 miRNAs was identified including 35 known and 121 novel ones. Six of the identified novel miRNAs were further experimentally validated. According to the evolutionary analysis, miR156, miR166, miR168, and miR171 were conserved across Tibetan hulless barleys and eight other seed plants. Expression profiles of ten known miRNAs showed that they were involved in phytohormone signaling, carbohydrate and lipid metabolism, as well as juvenile-adult transition during barley development. Moreover, a total of 1280 genes targeted by 101 miRNAs were predicted from both barley libraries. Three genes (PLN03212, MATE eukaryotic, and GRAS) were validated via the RNA ligase-mediated 5′-rapid amplification of cDNA ends (RLM-5' RACE) to be the targets of hvu-miR159a, hvu-miR166a, and hvu-miR171-3p, respectively. Based on the Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis of putative targets, the most abundant pathways were related to “metabolism”.These results revealed that miRNA-target pairs participating in the regulation of multigene expression and the embryonic development of Tibetan hulless barleys were controlled by complex mechanisms involving the concordant expression of different miRNAs and feedback loops among miRNAs as well as their targets. The study provides insight into the regulatory network of barley miRNAs for better understanding of miRNA functions during germination and seedling growth.  相似文献   

14.
Based on previously performed in vitro studies, which showed that hulless barley varieties could reduce large intestinal Salmonella Typhimurium var. Copenhagen proliferation in pigs, two in vivo experiments were conducted to prove these observations. In Experiment (Exp.) 1, 126 weaning piglets were randomly allocated into pens of seven animals each and fed one of six experimental diets. Three diets contained (75% as-fed) one of three hulless barley varieties with beta-glucan (BG) contents ranging from 5 to 11% and amylose from 5 to 40%, and two diets contained a low BG and amylose hulless barley supplemented with isolated barley BG or raw potato starch. A hulled barley diet served as a control. Two piglets per pen ("Trojan" pigs) were orally infected with Salmonella Typhimurium var. Copenhagen (ST). The remaining five pigs per pen were designated "Contact" pigs. The ST shedding was determined over one week after infection. On day 6, the two Trojans and two random Contacts from each pen were euthanised and intestinal contents and mesenteric lymph nodes cultured for ST. Intestinal volatile fatty acids and microbial composition were determined. In Exp. 2, 126 piglets were assigned to one of three diets based on hulled or hulless barleys. The timeline, infection, sampling and analyses were similar as in Exp. 1 except samples were taken from four Contact pigs. Hulless barley varieties with high BG and amylose tended to decrease ST persistence in Exp. 1. Clostridia from cluster I in the colon were reduced with high amylose hulless barley or diets supplemented with potato starch (p < 0.05), whereas other microbial groups were not. Propionate increased (p < 0.05) and acetate decreased (p < 0.05) with hulless barley inclusion. Exp. 2 revealed a reduced ST shedding and reduced number of clostridia for high BG hulless barley as compared to common hulled barley and a low BG variety (p < 0.05). In conclusion, high BG hulless barley do not prevent ST colonisation but might help to reduce transmission in pigs, likely by supporting an intestinal environment limiting growth of this zoopathogen.  相似文献   

15.
Forty crossbred barrows (Camborough 15 Line female x Canabred sire) weighing an average of 79.6 +/- 8.0 kg were used in a factorial design experiment (5 barleys x 2 enzyme levels) conducted to determine the effects of phytase supplementation on nutrient digestibility in low-phytate barleys fed to finishing pigs. The pigs were assigned to one of 10 dietary treatments comprised of a normal 2-rowed, hulled variety of barley (CDC Fleet, 0.26% phytate) or 2 low-phytate hulled genotypes designated as LP422 (0.14% phytate) and LP635 (0.09% phytate). A normal, hulless barley (CDC Dawn, 0.26% phytate) and a hulless genotype designated as LP422H (0.14% phytate) were also included. All barleys were fed with and without phytase (Natuphos 5000 FTU/kg). The diets fed contained 98% barley, 0.5% vitamin premix, 0.5% trace mineral premix, 0.5% NaCl and 0.5% chromic oxide but no supplemental phosphorus. The marked feed was provided for a 7-day acclimatization period, followed by a 3-day faecal collection. In the absence of phytase, phosphorus digestibility increased substantially (P < 0.05) as the level of phytate in the barley declined. For the hulled varieties, phosphorus digestibility increased from 12.9% for the normal barley (0.26% phytate) to 35.3 and 39.8% for the two low-phytate genotypes (0.14 and 0.09% phytate respectively). For the hulless varieties, phosphorus digestibility increased from 9.2% for the normal barley (0.26% phytate) to 34.7% for the hulless variety with 54% of the normal level of phytate (0.14% phytate). In contrast, when phytase was added to the diet, there was little difference in phosphorus digestibility between pigs fed normal barley and those fed the low-phytate genotypes (significant barley x enzyme interaction, P = 0.01). For the hulled varieties, phosphorus digestibility was 50.1% for the barley with the normal level of phytate (0.26% phytate) compared with 51.1 and 52.4% for the varieties with 54 and 35% of the normal level of phytate (0.14 and 0.09% phytate respectively). For the hulless varieties, phosphorus digestibility increased from 47.1% for the normal barley (0.26% phytate) to 54.4% for the hulless variety with 54% of the normal level of phytate (0.14% phytate). In conclusion, both supplementation with phytase and selection for low-phytate genotypes of barley were successful in increasing the digestibility of phosphorus for pigs. Unfortunately, the effects did not appear to be additive. Whether or not swine producers will choose low-phytate barley or supplementation with phytase as a means to improve phosphorus utilization, will likely depend on the yield potential of low-phytate barley and the additional costs associated with supplementation with phytase.  相似文献   

16.
Contaminating fungi, such as Fusarium species, produce metabolites that may interfere with normal barley grain proteolysis pattern and consequently, affect malt and beer quality. Protein compositional changes of an initial mixture of 20 % Fusarium culmorum infected and 80 % noninfected mature barley grains and respective malt are reported here. Proteolytic activity of infected barley grains (IBG) and respective malt, with controls (uninfected grains), were characterized using protease inhibitors from each class of this enzyme, including metallo-, cysteine, serine, and aspartic proteases, as well as uninhibited protease fractions. The proteins were extracted according to the Osborne fractionation and separated by size exclusion chromatography. Additionally, two-dimensional (2D) gel electrophoresis (GE) was used to analyze hydrophobic storage proteins isolated from the control and IBG. Analyses revealed that F. culmorum IBG had a twofold increase of proteolytic activity compared to the control sample, which showed an increase in all protease classes with aspartic proteases dominating. Infected and control malt grains were comparable with cysteine proteases representing almost 50 % of all proteolytic enzymes detected. Protein extractability was 31 % higher in IBG compared to the control barley. The albumin fraction showed that several metabolic proteins decreased and increased at different rates during infection and malting, thus showing a complex F. culmorum infection interdependence. Prolamin storage proteins were more hydrophobic during barley fungal infection. F. culmorum interfered with the grain hydrolytic protein profile, thereby altering the grain's protein content and quality.  相似文献   

17.
为了开发利用资源丰富的青稞麸皮,分析了青稞麸皮油的脂肪酸组成并研究了其对高血脂症大鼠的降血脂作用.通过GC-MS分析,从青稞麸皮油中检测到了10种脂肪酸,并发现其亚油酸含量为75.08%.在青稞麸皮油降血脂实验中,选用24只雄性SD大鼠随机分为空白对照组、高脂模型组和青稞麸皮油组,除空白对照组饲喂普通饲料外,其余各组饲喂高脂饲料并进行干预实验比较.3周后,高脂模型组血清TC、TG、LDL-C和AI 4项指标均显著高于空白对照组(P<0.05或P<0.01),而HDL-C/TC显著降低(P<0.05);青稞麸皮油组的血清TC、TG、LDL-C和AI 4项指标均显著低于高脂模型组(P<0.05或P<0.01),而HDL-C/TC显著升高(P<0.05).结果表明青稞麸皮油对大鼠的高血脂症和动脉硬化的形成有明显的抑制作用,而造成这一结果的原因可能是青稞麸皮油中的高亚油酸含量.  相似文献   

18.
AGO蛋白是RNA诱导沉默复合体的核心分子,在植物的生长、发育及胁迫响应中起重要作用。为探索青稞AGO基因在青稞抗条纹病病原菌过程中的作用机制,该研究以抗条纹病青稞品种‘昆仑14号’和感病品种‘Z1141’为材料,利用条纹病原菌侵染两品种,从感病前后的转录组测序结果中获得一个差异表达基因,克隆验证了该基因为HvtAGO1。结果表明:(1)HvtAGO1基因长3675 bp,其完整开放阅读框为3651 bp,编码1217个氨基酸;蛋白质序列分析表明,HvtAGO1为一个亲水性的不稳定碱性蛋白,具有高度保守的DUF1785、PAZ和PIWI结构域。(2)青稞HvtAGO1蛋白与山羊草、二穗短柄草、乌拉尔图小麦的AGO1蛋白序列相似性分别为96.64%、79.34%和80.07%,DUF1785、PAZ和PIWI结构域相似性分别为97.57%、98.44%和96.02%;系统进化树分析表明,青稞HvtAGO1蛋白与山羊草的亲缘关系最近,与玉米和粟的亲缘关系最远。(3)降解组测序结果表明,hvu-miR168-5p与HvtAGO1存在靶向关系。(4)qRT-PCR分析表明,条纹病胁迫下,与正常叶片相比,‘昆仑14号’与‘Z1141’感病叶片的hvu-miR168-5p和靶基因HvtAGO1表达量均极显著上调,且‘昆仑14号’表达量显著高于‘Z1141’。研究推测,hvu-miR168-5p和靶基因HvtAGO1在青稞抗条纹病的调控过程中发挥着重要作用。  相似文献   

19.
Abstract A comparison was made of the content of total and some individual fatty acids in grains of nine barley varieties grown at six sites in Belgium. The varieties represented six- and two-rowed winter types and two-rowed spring types. The results showed that the winter types contain more linolenic acid (C18 : 3) than spring types and that six-rowed barleys have less total fatty acids than two-rowed barleys, due mainly to a low concentration of palmitic (C16:0), oleic (CI8 : 1) and linoleic (C18 : 2) acids. Analysis of variance showed that fatty acid content is affected by both the genotype and the environment and multiple regression analysis suggested that weather conditions before and after flowering affected lipid composition.  相似文献   

20.
Based on previously performed in vitro studies, which showed that hulless barley varieties could reduce large intestinal Salmonella Typhimurium var. Copenhagen proliferation in pigs, two in vivo experiments were conducted to prove these observations. In Experiment (Exp.) 1, 126 weaning piglets were randomly allocated into pens of seven animals each and fed one of six experimental diets. Three diets contained (75% as-fed) one of three hulless barley varieties with β-glucan (BG) contents ranging from 5 to 11% and amylose from 5 to 40%, and two diets contained a low BG and amylose hulless barley supplemented with isolated barley BG or raw potato starch. A hulled barley diet served as a control. Two piglets per pen (“Trojan” pigs) were orally infected with Salmonella Typhimurium var. Copenhagen (ST). The remaining five pigs per pen were designated “Contact” pigs. The ST shedding was determined over one week after infection. On day 6, the two Trojans and two random Contacts from each pen were euthanised and intestinal contents and mesenteric lymph nodes cultured for ST. Intestinal volatile fatty acids and microbial composition were determined. In Exp. 2, 126 piglets were assigned to one of three diets based on hulled or hulless barleys. The timeline, infection, sampling and analyses were similar as in Exp. 1 except samples were taken from four Contact pigs. Hulless barley varieties with high BG and amylose tended to decrease ST persistence in Exp. 1. Clostridia from cluster I in the colon were reduced with high amylose hulless barley or diets supplemented with potato starch (p < 0.05), whereas other microbial groups were not. Propionate increased (p < 0.05) and acetate decreased (p < 0.05) with hulless barley inclusion. Exp. 2 revealed a reduced ST shedding and reduced number of clostridia for high BG hulless barley as compared to common hulled barley and a low BG variety (p < 0.05). In conclusion, high BG hulless barley do not prevent ST colonisation but might help to reduce transmission in pigs, likely by supporting an intestinal environment limiting growth of this zoopathogen.  相似文献   

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