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31.
【目的】研究减氮条件下新疆滴灌小麦高产高效的调控途径,分析滴灌春小麦花后同化物转运和籽粒灌浆特性的调控效应,为新疆滴灌春小麦的高产优质栽培提供科学依据。【方法】设置不同减氮配施有机肥处理,采用裂区设计,氮素为主区,品种为副区;于2019年在田间滴灌条件下设置7种减氮配施有机肥水平(NCK、N5、N10、N15、N20、N25、N0),比较分析不同减氮配施有机肥处理条件下,强筋小麦新春38号和中筋小麦新春49号的花后同化物转运及籽粒灌浆特性的变化。【结果】在灌浆期内,花后干物质(茎、叶)随灌浆期推进呈先升后降趋势,峰值出现在花后14 d,而穗干物质则呈逐渐增大的变化。随减氮配施有机肥程度增加,2个品种的花后干物质积累、花后干物质转移率、花后贡献率、粒重及灌浆各参数均呈现先增后减的趋势,在N15处理下各指标均达到最优值,N15>N20>N25>N10>N5>NCK>N0。2个品种的快速累积持续时间(t2~t1)、平均灌浆速率(Vmean)、最大灌浆速率(Vmax)与粒重间均存在显著关系,且平均灌浆速率与粒重间的直接效应最大,2个品种的直接通径系数为1.034 7和0.957 3。在N15处理下, Vmean相比其它处理分别增长了1.92%~30.58%(新春38号),1.02%~27.93%(新春49号)。【结论】在减氮配施有机肥处理下,以N15处理(85%N+15%有机肥)的花后干物质积累量、花后转运率及贡献率最高,籽粒粒重最高,与之相关的灌浆各参数表现最优,即N15处理为最优配比组合。  相似文献   
32.
为促进通过提高油菜种子亚麻酸含量途径增加中国人群亚麻酸的摄入量,提高健康水平的工作进程。结合文献资料,在剖析开展油菜高亚麻酸育种的意义、可行性、难点及可利用的有利条件的基础上,提出油菜高亚麻酸育种策略与技术途径。在工作实践中,陕西省杂交油菜研究中心研究团队创建并完善"油菜高亚麻酸种质的筛选方法",利用该方法开展油菜高亚麻酸种质资源筛选和高亚麻酸育种取得良好成效:油菜种质资源的整体亚麻酸含量、具有较高亚麻酸含量种质的百分比率、亚麻酸含量最高值、亚麻酸含量15%的种质数量均明显增加;获得一批亚麻酸含量大于15%(最高含量达21%)的甘蓝型油菜非转基因种质,育成高亚麻酸的不育系和恢复系;甘蓝型油菜高亚麻酸杂交种‘秦杂油7号’通过国家品种登记;2个亚麻酸含量15%左右的杂交种正在申请品种登记。发现在A02、C02及A06染色体上存在多个与亚麻酸显著关联SNP位点。提出开展基础机理研究和分子设计育种创新体系建设,开展高亚麻酸种质资源创新、综合评价和利用研究,构建高亚麻酸育种体系,规化高效保优栽培技术路线,开展油菜籽加工技术、抗氧化研究,构建标准体系等6方面建议。  相似文献   
33.
马铃薯茎基腐病是影响马铃薯生产的重要病害,目前尚未有效的综合防控措施。试验的目的是通过新型腐植酸肥料与同等养分配方化肥的田间比较试验,探讨新型腐植酸有机肥对马铃薯茎基腐病预防效果。结果表明,5~15 g壤动FT/100 kg种薯配合腐植酸肥料对马铃薯生长发育安全,在出苗率、苗高、单株根数、最大根长、芽长分别优于配方化肥1.0~2.9个百分点、1.2~4.1 cm、1.1~5.2条、1.2~2.6 cm、0.3~1.1 cm;在单株薯重、平均单薯重、商品薯率、小区产量分别高于配方化肥66.7~394.4 g、4.6~12.1 g、4.3~11.4个百分点、12.23~83.46 kg/30.8m2;对主茎、匍匐茎、块茎基腐防效分别达78.29%~87.24%、75.62%~88.51%、72.05%~86.98%,增产效果达11.60%~79.12%。研究为开展农业技术防治马铃薯茎基腐病提供了新方法,对制定综合防治技术体系具有重要指导意义。  相似文献   
34.
为了研究梨种子对果实生长发育的影响,采用高效液相色谱(HPLC)技术对‘鸭梨’和‘新高’果实发育过程中果肉和种子中的有机酸含量进行了分析。结果表明:两个品种果肉中主要的有机酸组分均为苹果酸和奎尼酸,发育初期‘鸭梨’与‘新高’果肉中各组分的比率相近,但果实成熟时‘新高’果肉中苹果酸的比率59.98%显著高于‘鸭梨’的37.51%;两个品种种子中的有机酸组分比率的动态变化相近,与果肉相反,主要表现在奎尼酸比率的增加和苹果酸比率的减少。两个品种果肉和种子中的总酸、草酸、奎尼酸,苹果酸,莽草酸,柠檬酸含量均随着果实的成熟呈下降趋势,‘鸭梨’果肉中的奎尼酸、莽草酸、柠檬酸含量高于‘新高’;‘新高’在果实成熟时种子中的总酸含量4.59mg/g显著低于‘鸭梨’13.00mg/g,‘鸭梨’成熟果实种子中的草酸、奎尼酸、莽草酸含量显著高于‘新高’;在果实发育初期,种子中的苹果酸含量极显著高于果肉,在果实成熟时则显著低于果肉。  相似文献   
35.
A field experiment was performed to explore responses of carbon metabolism, antioxidant system and endogenous hormone content of summer maize hybrids DengHai605 (DH605) and ZhengDan958 (ZD958) to waterlogging at the third leaf stage (V3), the sixth leaf stage (V6) and the 10th day after the tasselling stage (10VT). Results showed that waterlogging significantly decreased the contents of zeatin riboside (ZR), indole‐3‐acetic acid (IAA) and gibberellic acid (GA), compared to those of CK. However, leaf abscisic acid (ABA) content was significantly increased by waterlogging at different stages, with the most significant increase was found in the treatment of waterlogging at V3 (V3‐W), with an increase of 30% and 29% for DH605 and ZD958, respectively. Waterlogging significantly decreased antioxidative enzyme activities, accelerating leaf senescence, resulted in the disorder of leaf gas exchange parameters and chlorophyll fluorescence parameters. In addition, waterlogging decreased key enzyme activities of carbon metabolism (ribulose bisphosphate carboxylase and phosphoenolpyruvate carboxylase), with the most significant reduction in V3‐W, with a decrease of 46% and 49% for DH605, and 53% and 55% for ZD958, respectively. Visibly, waterlogging disturbed carbon metabolism, affected plant endogenous hormone content, accelerated leaf senescence and eventually resulted in a significant reduction in photosynthetic characteristic and grain yield. V3 was most susceptible to waterlogging, followed by V6 and 10VT.  相似文献   
36.
We determined the effect of four concentrations of dietary crude protein, 30.7, 37.2, 41.8 and 46.8% on growth rate, survival and body composition of the juvenile cauque river prawn (Macrobrachium americanum). The prawns were hatched in the laboratory from the spawn of one wild ovigerous female. Prawns consuming 37.2% crude protein reached a final weight of 0.58 g (feed conversion ratio of 2.15), which was significantly better than the other treatments. Survival was 100% in all treatments. Protein content in the diets had no significant effect on whole body proximate composition and amino acid profile. Juveniles consuming the 37.2% crude protein diet grew faster than those fed the other diets. Specific growth rate was adjusted to the two‐slope broken‐line regression analysis model to estimate the optimal protein requirement. In conclusion, these results demonstrated that the 37.2% protein level diet is optimal for juvenile cauque river prawn M. americanum in the experimental conditions of this study.  相似文献   
37.
The sea cucumber (Apostichopus japonicus), an important echinodermata, had high value in nutrition and medicine for its rich collagen, sulphated polysaccharide, glycosides and polyunsaturated fatty acids (PUFA). The cDNA of the fatty acid desaturase gene in A. japonicus (AJFAD6) was cloned and was found to encode a desaturase with delta 6 FAD activity. Sequence analysis indicated that AJFAD6 included an open reading frame of 1392 bp, encoding 463 amino acids. AJFAD6 has all the conserved motifs found in other members of the FAD6 family, including an N‐terminal cytochrome b5 domain and three histidine‐rich regions. qRT‐PCR showed that AJFAD6 was expressed in all tissues tested during juvenile development and was mainly expressed in the respiratory tree at 150 days after adherence (150 days) and in the intestine at 100 days. Furthermore, AJFAD6 mRNA was also detected in the analysed adult tissues, with higher expression in the intestine and testis. Functional characterization of AJFAD6 in a recombinant yeast, Pichia pastoris, showed that AJFAD6 could catalyse exogenous linoleic acid (LA) and α‐linolenic acid (ALA) to produce γ‐linoleic acid (GLA) and stearidonic acid (STA), respectively, at conversion rates of 11.1% for LA to GLA and 3.4% for ALA to STA. Our results suggested that the biosynthetic pathway of PUFA existed in the sea cucumber, but endogenous production of eicosapentaenoic acid, arachidonic acid and docosahexaenoic acid from either LA or ALA precursor appeared to be limited.  相似文献   
38.
以辽宁盘锦光合蟹业有限公司养殖基地为试验场所,研究施以3种肥料(化肥、鸡肥、化肥与鸡肥的混和肥)对土池培育小球藻的主要营养指标——脂质含量和脂肪酸组成的影响。试验结果表明,施混合肥所培养的小球藻,其藻细胞密度略高于化肥组和鸡肥组;混合肥组小球藻的脂质含量(鲜质量的5.36%)也高于化肥组(鲜质量的4.02%)和鸡肥组(鲜质量的2.89%);混合肥组小球藻的多不饱和脂肪酸和高度不饱和脂肪酸的含量显著优于单一施化肥或鸡肥的小球藻。因此,在土池中施混合肥更有利于培育出高质量的小球藻。  相似文献   
39.
The breadmaking quality of wheat is affected by the composition of gluten proteins and the polymerisation of subunits that are synthesised and accumulated in developing wheat grain. The biological mechanisms and time course of these events during grain development are documented, but not widely confirmed. Therefore, the aim of this study was to monitor the accumulation of gluten protein subunits and the size distribution of protein aggregates during grain development. The effect of desiccation on the polymerisation of gluten proteins and the functional properties of gluten were also studied. The results showed that the size of glutenin polymers remained consistently low until yellow ripeness (YR), while it increased during grain desiccation after YR. Hence, this polymerisation process was presumed to be initiated by desiccation. A similar polymerisation event was also observed when premature grains were dried artificially. The composition of gluten proteins, the ratios of glutenin to gliadin and high molecular weight-glutenin subunits to low molecular weight-glutenin subunits, in premature grain after artificial desiccation showed close association with the size of glutenin polymers in artificially dried grain. Functional properties of gluten in these samples were also associated with polymer size after artificial desiccation.  相似文献   
40.
This study aimed at elucidating SS-bonds of HMW-gliadins (HGL) from wheat with the focus on terminators of glutenin polymerisation. HGL from wheat flour extracts non-treated or treated with the S-alkylation reagent N-ethylmaleinimide (NEMI) were compared. HGL from wheat flour Akteur were isolated, hydrolysed with thermolysin and the resulting peptides pre-separated by gel permeation chromatography and analysed by liquid chromatography/mass-spectrometry using alternating electron transfer dissociation/collision-induced dissociation. Altogether, 22 and 28 SS-peptides from samples without and with NEMI treatment, respectively, were identified. Twenty-six peptides included standard SS-bonds of α- and γ-gliadins, high-molecular-weight and low-molecular-weight glutenin subunits. Eleven SS-bonds were identified for the first time. Fifteen peptides unique to HGL contained cysteine residues from gliadins with an odd number of cysteines (ω5-, α- and γ-gliadins). Thus, gliadins with an odd number of cysteines, glutathione and cysteine had acted as terminators of glutenin polymerisation. Decisive differences between samples without and with NEMI treatment were not obvious showing that the termination of polymerisation was already completed in the flour. The two HGL samples, however, were different in the majority of ten peptides that included disulphide-linked low-molecular-weight (LMW) thiols such as glutathione and cysteine with the former being enriched in the non-treated HGL-sample.  相似文献   
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