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51.
本研究通过低氮压力选择,筛选出甘蔗氮高效种质,分析影响甘蔗氮高效的重要指标,为甘蔗氮高效育种及栽培提供理论依据。以58份甘蔗种质资源为材料,在苗期采用正常供氮(2 mmol/L N)和低氮(0.2 mmol/L N)处理,分析甘蔗植株形态、干重及氮素在各器官中累积分配的特征。通过主成分分析方法筛选影响甘蔗氮高效利用的重要指标,通过聚类分析对58份种质进行聚类。结果表明,低氮(0.2 mmol/L N)处理可以明显从植物形态区分不同种质的氮利用差异,58份种质低氮条件下的干重范围为0.64~14.75 g/株,氮累积量为5.53~63.00 mg/株,氮利用率范围为115.40~279.30 g/g。对低氮压力下甘蔗干重及氮累积等25个指标进行主成分分析后,提取出4个主要成分,总贡献率为92.35%。通过高、低氮条件下与氮利用效率有关的氮转移系数及基因潜力等19个指标分析后提取出5个主成分,总贡献率为82.21%。影响甘蔗氮高效的重要指标有甘蔗的干重(全株、叶、根)、氮累积量(全株、叶、茎)、氮利用率(全株、叶)、叶的相对氮利用率、茎的基因潜力、茎的相对干物质量和茎的相对氮累积量。经聚类分析后初步将58份甘蔗种质分为氮高效基因型、偏氮高效基因型、偏氮低效基因型和氮低效基因型。  相似文献   
52.
Abstract

Increasing resources use efficiency in intensive cultivation systems of maize (Zea mays L.) can play an important role in increasing the production and sustainability of agricultural systems. The objectives of the present study were to evaluate DM yield and the efficiency of inputs uses under different levels of water, nitrogen (N) and phosphorus (P) in maize. Therefore, three levels of irrigation including 80 (ETc80), 100 (ETc100) and 120% (ETc120) of crop evapotranspiration were considered as the main plots, and the factorial combination of three levels of zero (N0), 200 (N200) and 400 (N400) kg N ha?1 with three levels of zero (P0), 100(P100) and 200 (P200) kg P ha?1 was considered as the sub plots. The results showed that increasing the consumption of water and P was led to the reduction of N and P utilization efficiency, while RUE increased. WUE was also increased in response to application of N and P, but decreased when ETC increased. DM yield under ETc80 treatment reduced by 11 and 12%, respectively, compared to ETc100 and ETc120 which was due to reduction of cumulative absorbed radiation (Rabs(cum)) and RUE. Under these conditions, changes of stomatal conductance (gs) had little effect on DM yield. It was also found that N limitation caused 11 and 20% reduction in DM yield compared to N200 and N400, respectively. This yield reduction was mainly the result of decrease in RUE. By decreasing Rabs(cum), P deficiency also reduced DM yield by 5 and 9%, respectively, relative to P100 and P200 treatments.  相似文献   
53.
以茄子作为砧木,番茄为接穗进行嫁接,并以番茄自根植株和茄子自根植株作为对照,基于传统及现代高通量测序技术分析根际土壤的生物学性状及细菌群落结构特征,旨在揭示嫁接植株抗性增强的机制。结果表明:番茄/茄子嫁接植株根际土壤中可培养细菌、放线菌数量,微生物生物量、酶活性和细菌丰富度、多样性指数均显著高于茄子和番茄自根植株;另一方面,norank_c_Acidobacteria、硝化螺菌属(Nitrospira)、芽孢杆菌属(Bacillus)、norank_f_Gemmatimonadaceae、norank_o_Gaiellales、norank_f_Xanthobacteraceae、norank_o_SC-I-84、norank_f_Anaerolineaceae、norank_f_Nitrosomonadaceae、鞘脂单胞菌属(Sphingomonas)细菌是嫁接植株与茄子、番茄自根植株根际土壤中的共有优势细菌属;g_unclassified_o_Ignavibacteriales 、 醋酸杆菌属( g_Acetobacter )、g_norank_f_Longimicrobiaceae 、g_unclassified_f_Verrucomicrobiaceae、g_norank_p_FBP、g_norank_p_Aminicenantes 属细菌是嫁接植株根际土壤的特有优势细菌属。与自根植株相比,番茄/茄子嫁接植株根际土壤存在更高可培养微生物数量,微生物生物量和相关酶活性,具有更高的土壤养分有效性,同时拥有不同占比的共有优势细菌门属,尤其拥有更为丰富的微生物可操作分类单元(operational taxonomic units,OTU)和特有 OTU 数量,这是嫁接植株抗性增强的主要原因。  相似文献   
54.
为了培育辣椒壮苗,在潮汐灌溉模式下筛选适合辣椒穴盘育苗的营养液,探讨不同营养液在辣椒穴盘育苗上应用的可行性,以国塔166为试材,以草炭、蛭石(体积比3∶1)为栽培基质,进行试验研究。试验采用6种营养液配方,通过测定株高、茎粗、干鲜质量、壮苗指数、叶绿素含量、光合参数、根系活力、根系形态等指标,筛选最优营养液配方。结果表明:Arnon和Hoagland 番茄配方处理辣椒幼苗的株高、茎粗、地上鲜质量、地上干质量、叶绿素含量、净光合速率、气孔导度、壮苗指数、根尖数等指标均最高,其中壮苗指数分别较日本山崎番茄、Hoagland和Arnon、华南农业大学、Rothamsted、日本山崎甜椒配方高出44.44%、62.50%、30.00%、116.67%、62.50%。综上可知,Arnon和Hoagland 番茄配方是潮汐灌溉模式下辣椒穴盘育苗的最佳配方。  相似文献   
55.
梁毅  李晓杰 《蔬菜》2020,(12):81-82
“秀球赤玉”是以高花青素深紫皮不育系562A为母本,以高花青素深紫皮自交系2014-7-10-6为父本培育的中日照、早熟、高花青素三系杂交种。其表现:鳞茎大圆球形,花青素含量高达68.8 mg/g;洋葱鳞片从外至里均为深紫色,色泽亮,外观漂亮,商品率高;辣味轻,口感脆甜,可生食;植株长势强,抗病,耐抽薹,分球、裂球少;假茎细且收口紧,耐贮性好;平均单球质量600~1 000 g,667 m2产量8 000~12 000 kg;适宜在中日照地区推广,2019—2020年累计推广面积超过1 500 hm2。  相似文献   
56.
吴兴彪 《蔬菜》2021,(7):71-74
为了明确京郊日光温室越冬茬黄瓜高产栽培所需的适宜滴灌量,以黄瓜"津优35"为试材,研究了不同滴灌量对黄瓜灌溉水分配、产量、品质、水分利用效率和经济效益的影响。结果表明:85%农户常规灌溉量处理较对照节水50.8 mm,深层渗漏量减少42.6%,黄瓜产量提高3.6 t/hm~2,可溶性糖含量提高17.3%,硝酸盐含量降低5.0 mg/kg,果实品质提高;水分利用效率提高3.61 kg/m~3,增收1.42万元/hm~2。综合来看,85%农户常规灌溉量处理是京郊日光温室越冬茬黄瓜适宜滴灌量,全生育期灌溉总量为327.9 mm,其中苗期41.7 mm,初瓜期43.1 mm,结果期243.1 mm,当埋深20 cm的土壤张力计读数为-21.6 kPa时需进行灌溉。  相似文献   
57.
【目的】研究春玉米密植群体优化栽培模式下冠层结构特征,并探索其对冠层生产的调控机制及对产量提高的贡献。【方法】以耐密高产品种“中单909”为试验材料,设置105 000 株/hm2种植密度,采用深松(S)、宽窄行(W)及化控(C)的组合,形成4种根-冠优化栽培模式:(1)传统模式(旋耕20 cm,60 cm等行距,RU),(2)耕层优化模式(深松耕作35 cm,60 cm等行距,SU),(3)冠层优化模式(传统旋耕20 cm,80 cm+40 cm宽窄行,叶面喷施磷酸胆碱合剂ECK,RWC),(4)综合优化模式(深松耕作35 cm,80 cm+40 cm宽窄行,叶面喷施磷酸胆碱合剂ECK,SWC)。比较不同栽培模式下冠层大田切片(垂直)、群体光分布、光合性能、蔗糖合成酶活性及籽粒灌浆的差异。【结果】相较于常规栽培模式(RU),耕层优化模式(SU)的玉米冠层叶片干物质增加,冠层优化模式(RWC,SWC)下密植群体株高和穗位高降低30 cm以上,但群体整齐度下降明显;RWC和SWC处理,叶片垂直分布似“纺锤型”更为均匀,垂直高度180—240 cm的光能截获相比传统模式显著降低8%—37%,而穗位以下(120—180 cm)相比传统模式提高44%—129%;RU和SU处理呈现“漏斗型”株型特征,叶片集中分布在冠层顶部。根-冠协同优化可改良高密玉米群体冠层垂直结构,显著提高穗位及穗下叶片的叶绿素含量、净光合速率,增加穗位叶蔗糖磷酸合酶(SPS)和蔗糖合成酶(SS)活性,维持生育后期冠层叶片的生理活性,延长干物质活跃积累期10 d以上。【结论】综合优化模式(SWC)改变冠层干物质空间分布,增加了密植群体中下部光能截获和光合碳代谢能力,促进了花后冠层物质生产及籽粒灌浆,显著增加玉米籽粒产量。  相似文献   
58.
Finger millet [Eleusine coracana (L.) Gaertn.] is an important coarse cereal crop grown in the arid and semi‐arid regions and often experiences high temperature (HT) stress. The objectives of this research were (i) to quantify effects of season‐long HT stress on physiological and yield traits, (ii) to identify the developmental stages most sensitive to HT stress and (iii) to quantify the genetic variability for HT stress tolerance in finger millet. Research was conducted in controlled environment conditions. HT stress decreased the chlorophyll index, photosystem II activity, grain yield and harvest index. Maximum decrease in number of seeds per panicle and grain yield per plant was observed when stress was imposed during booting, panicle emergence or flowering stages. Maximum genotypic variation was explained by panicle width and number of seeds per panicle at optimum temperature (OT) and grain yield per plant at HT and number of seeds at HT. Based on the stress response and grain yield, tolerant or susceptible genotypes were identified. Finger millet is sensitive to HT stress during reproductive stages, and there was genotypic variability among the finger millet genotypes for number of seeds per panicle and grain yield under HT, which can be exploited to enhance stress tolerance.  相似文献   
59.
Four sets of durum samples were used in this study to further understand the interrelationships among hard vitreous kernels (HVK), protein content, and pigment concentration, with a focus on the interaction and synergistic effects of protein content and vitreousness on durum quality. HVK level increases with higher protein content in the range of 9.5–12.5%, but this relationship is less evident in durum samples with high protein content (12.5–14.5%). Both protein content and kernel vitreousness can significantly affect durum milling quality. White starchy kernels (WSK) in low protein durum have a very detrimental impact on milling and pasta processing quality, but high protein content can mitigate the adverse impact of WSK on durum quality. Although protein content plays a dominant role, higher HVK might contribute positively to pasta firmness. There was no significant difference in yellow pigment content between HVK and WSK. However, pigment loss from semolina to dough was higher for WSK than HVK. Despite the difference in protein content, HVK and WSK have little difference in gluten strength. The monomeric protein was preferentially accumulated in HVK. The glutenin proteins of HVK and WSK were similar in the ratios of 1Bx/1By and HMW/LMW-GS.  相似文献   
60.
High temperature combined with low dissolved oxygen (DO) is one of the most challenging environmental conditions farmed fish experience; thus, understanding their impact on growth regulation is of relevance to cultured and wild populations. This study examines appetite‐ and growth‐regulating mechanisms in Atlantic salmon postsmolt exposed to either high (HO) or low oxygen (LO) at a suboptimally high temperature (17°C). Additionally, the effects of high (HE) and low (LE) dietary energy (DE) were examined. After a month of treatment, analyses of hormones, regulating appetite (ghrelin) and growth (growth hormone receptor ghr1 and insulin‐like growth factor IGF‐1), and free amino acids (FAA) were measured pre‐ and postprandially at ?4, ?2, 0, 2, 4 and 6 h. No preprandial ghrelin peaks were detected despite a significant reduction in feed intake and growth under hypoxia compared to normoxia. LO treatment also had an overall negative effect on survival compared to HO, while nutrient retention efficiency, FCR and plasma FAA concentrations were unaffected (> 0.05). Feeding HE diet resulted in increased growth (+17%) and improved FCR (?14%) and energy retention efficiency (+26%) independent of DO. Plasma FAA concentrations were unaffected by LO treatment and DE (> 0.05). Growth regulatory gene expressions possibly reflect an overall lower growth at a high temperature overriding the impacts of DO and DE. This study also indicates that optimal adaptation time to environmental conditions and feeding regime is crucial for establishing a regular hormonal appetite signalling that reflects real feeding anticipation in salmon.  相似文献   
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