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111.
杨梅基因组SSR引物的开发与应用   总被引:2,自引:0,他引:2  
基于杨梅(Myrica rubar Sieb. et Zucc.)基因组序列信息,研究了1 431条scaffold中SSR位点的分布特点。共发掘到二至六核苷酸SSR位点43842个,分布在623条scaffold中,共有194种重复单元。二核苷酸SSR位点有36 383个,占总SSR的82.99%;AG/CT的出现频率最高,为55.70%,占总SSR位点的46.23%。三核苷酸SSR位点有6 115个,占总SSR的13.95%。四核苷酸SSR位点有827个,占1.89%。五核苷酸SSR位点为245个,占0.56%。六核苷酸SSR位点为272个,占0.62%。设计合成了59对基因组SSR引物,多态性分析显示,高度多态性引物26对,中度多态性引物为33对;将其应用于杨梅优株早鲜856及其他13个主栽品种的聚类分析,结果表明,上述引物在相似系数0.56处将14份杨梅材料分为两个群体,早鲜856与其他13个主栽品种在DNA水平上均存在差异,且与对照品种‘早色’的相似系数为0.86。  相似文献   
112.
In cucumber, the genetic basis of traits under domestication and/or diversifying selection is not well understood. Here, we reported QTL mapping for flowering time and fruit size-related traits with segregating populations derived from a cultivated × wild cross. Phenotypic data of flowering time (FT), fruit size (FS), fruit number (FN) and fruit weight per plant (FW) were collected in multiple environments. QTL analysis identified 19 QTL for these traits. We found that the major-effect QTL FT1.1 played an important role in regulating flowering time in cultivated cucumber, whereas the minor-effect QTL FT6.3 contributed to photoperiod sensitive flowering time during domestication. Two novel consensus FS QTL, FS1.4 and FS2.3, seem to be the targets of selection during breeding for the US processing cucumber. All other FS QTL were co-localized with previously detected QTL using populations derived from cultivated cucumbers, suggesting that they were under selection during both initial domestication and subsequent improvement. Results from this study also suggested that the wild cucumber is a useful resource for capturing positive transgressive segregation and novel alleles that could be explored in cucumber breeding.  相似文献   
113.
Winter canola (Brassica napus L.) is highly sensitive to increasing temperatures during the reproductive and pod-filling stages. Although the impact of high day-time temperature stress on yield and quality has been documented in canola, similar information under high night-time temperature (HNT) stress is not available. Using six hybrids and four open-pollinated cultivars, we observed a marked shift in peak flowering towards earlier, cooler hours of the morning under HNT. Averaged across two independent experiments, the photochemical efficiency of photosystem II was significantly decreased (3%), with a significant increase in thylakoid membrane damage (13%) in the leaves of susceptible cultivars under HNT stress. Similarly, the susceptible cultivars also recorded significant reduction in biomass (34%), pod number (22%), pod weight (37%) and total seed weight (40%) per plant while the same set of agronomic traits were not affected among the tolerant cultivars. Quantitative impact of heat stress was confirmed with increased sensitivity to HNT exposure from gametogenesis until maturity resulting in a significantly higher yield loss compared to stress exposure from post-flowering till maturity. HNT significantly decreased oil concentration, but increased protein concentration and saturated fatty acid levels in seeds of the susceptible cultivars. However, HNT had no impact on the unsaturated fatty acids in both hybrids and the open-pollinated cultivars. Breeding targets based on fatty acid composition for enhancing canola seed quality may not be easily amenable due to the inconsistency documented with the compositional changes under heat stress. In summary, our findings conclude that canola hybrids are better suited to regions experiencing heat stress, compared to open-pollinated cultivars, indicating the possibility of a complete shift to hybrid canola cultivation under predicted hotter climates in the future.  相似文献   
114.
晚稻机收留高茬紫云英迟播技术的应用效果研究   总被引:2,自引:0,他引:2  
通过田间试验,研究了双季稻田晚稻机械收获留高茬后紫云英迟播的应用效果。结果表明,与传统紫云英播种技术相比,晚稻机械收获留高茬紫云英迟播显著缩短了紫云英的生育期,但其盛花期能保持与传统播种技术一致,对下茬早稻作物的种植没有影响;两种播种方法对盛花期鲜草产量、植株养分含量和养分积累量均没有显著影响,说明迟播播种能达到与传统播种一样的肥田目的;迟播对紫云英的种子产量及产量构成因素均没有明显影响,与传统播种技术相比可节约劳动力成本约45元/hm2,且可避免传统播种方法对晚稻植株的伤害。在现代双季稻种植条件下,晚稻机械收获留高茬紫云英迟播技术具有较大的优势和发展前景。  相似文献   
115.
以新丰抗90白菜种子为试验材料,在1 000×g、2 000×g、4 000×g 3种不同超重力的条件下分别处理20、40、60 min后,幼苗期采取叶片测定其游离脯氨酸含量、过氧化物酶活性、超氧化物歧化酶活性。结果显示,2 000×g,40 min处理游离普氨酸含量最低;4 000×g,60 min处理游离脯氨酸含量最高,与对照相比,所有处理均抑制游离普氨酸的形成。1 000×g,20 min处理后的POD活性最高;2 000×g,60 min处理后的POD活性最低,但高于对照,超重力处理能显著提高POD活性。1 000×g,40 min处理SOD活性最高,4 000×g,60 min处理SOD活性最低,适宜的超重力处理有利于提高SOD活性。  相似文献   
116.
以早抽薹‘S-1’与晚抽薹‘G-1’为亲本,构建F1、BC1、BC2和F2群体,采用植物数量性状主基因 + 多基因混合遗传模型分析法对结球甘蓝抽薹性状进行遗传分析,并采用SLAF-BSA方法对抽薹时间进行QTL定位分析。结果显示,结球甘蓝抽薹性状是由2对加性—显性—上位性主基因 + 加性—显性多基因遗传控制;主基因 + 多基因平均遗传率是93.41%。共检测到2个QTL,分别为2号染色体上的2.31 ~ 3.09 Mb和33.57 ~ 34.40 Mb,总长度为1.61 Mb。  相似文献   
117.
为了提高大白菜耐抽薹品种的分子育种效率,本研究针对大白菜抽薹相关基因BrFLC1第6个内含子的第一个碱基(Pi6+1)G-A的SNP变异开发进行高通量检测的竞争性等位基因特异性PCR(KASP)标记。结果表明,开发的KASP标记BrFLC1-KASP1可有效将晚抽薹类型材料Y177-12(G)和早抽薹类型材料Y195-93(A)分为2组。利用BrFLC1-KASP1标记可以对57份大白菜材料的基因型进行有效鉴别,且鉴定结果与酶切扩增多态性标记(CAPS)G-MvaI以及直接测序法的鉴定结果完全一致。综上所述, BrFLC1-KASP1标记在大白菜材料中具有通用性,且具有准确率高、成本低、效率高的特点。本研究结果对大白菜耐抽薹性的分子标记辅助选择具有重要的育种实践价值。  相似文献   
118.
DNA条形码技术可对物种进行快速自动鉴定,具有鉴定准确、结果稳定、操作简便、适用广泛等特点,目前在中药领域应用较多。从DNA条形码技术在中药材鉴定、种植、流通、市场监管、中成药鉴定和药用植物种质资源调查等中药领域的多个方面进行综述,并探讨DNA条形码技术在中药领域的优势和不足,以期为DNA条形码技术在中药领域的研究提供新的思路。  相似文献   
119.
为了找到适用于转录组测序要求的大白菜小孢子总RNA 提取方法,以出胚率较高的吉红82 为试材,以热激诱导处理后的小孢子为研究对象,比较分析了TRIzol 法、改良CTAB 法及超纯试剂盒法3 种方法的RNA 提取效果。结果表明:TRIzol法(磨样)和改良CTAB 法提取的RNA 浓度较高,但完整性较差;超纯RNA 提取试剂盒法提取的RNA 质量最高,且完整性好,能够满足转录组测序的要求。  相似文献   
120.
In rice, pre‐exposure to sublethal treatment followed by harsh lethal treatment is known to improve tolerance of different abiotic stresses at the vegetative stage within and across generations. Our major aim was to test the phenomenon of thermo‐tolerance at flowering across (trans)‐generations and within generation using rice cultivars contrasting for heat stress tolerance at flowering. To test trans‐generational response, plants were exposed to higher temperature at flowering stage and seeds obtained from previous generations were exposed to heat stress during flowering, which recorded significantly lower fertility when exposed to the same degree of stress in their subsequent generations. A pre‐acclimation to moderately high acclimating temperatures imposed over three different durations during the vegetative and initial reproductive stage showed positive response in the tolerant N22, particularly under severe heat stress (40 °C). This finding indicates the possibility of acquiring ameliorative thermo‐tolerant mechanisms at anthesis, restricted to tolerant genetic backgrounds to combat subsequent harsh conditions within the same generation. However, trans‐generational memory was ineffective in mitigating spikelet sterility losses in both tolerant and susceptible backgrounds. Rice is extremely sensitive to heat stress during flowering; hence, similar exercise across other crops of interest needs to be carried out before generalizing conclusions.  相似文献   
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