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81.
在林业生产的过程中,采用正确、合理的造林技术和抚育技术,能够提高造林成活率,确保林木健康生长,并在短时间内构建完善的林分结构。而科学的抚育管理,又能进一步挖掘林业发展潜力,提升林地质量和产量,为林业发展创造更多的空间。同时做好造林和森林抚育工作,能够有效地促进林业科学发展,更好地应对全球气候变化的挑战。 相似文献
82.
利用5个锈病成株期抗性基因的KASP标记Sr2_ger9 3p、Lr34jagger、CSTM4_67G、Lr68-2、VPM_SNP和抗赤霉病基因Fhb1的KASP标记TaHRC-KASP,对云南省育成的42个小麦品种(系)进行检测,旨在筛选出含有目标基因的优异小麦种质,为云南省持久抗病小麦新品种(系)的选育提供材料。结果表明,4个材料含兼抗型成株抗锈病基因Lr34/Yr18/Sr57,频率为9.52%;6个品种(系)含兼抗型成株抗锈病基因Lr67/Yr46/Sr55,频率为14.29%;7个材料含抗慢叶锈病基因Lr68,频率为16.67%;含兼抗型成株抗锈病基因Sr2/Yr30和成株抗叶锈基因Lr37的材料各有1个,频率均为2.38%;未检测出含抗赤霉病基因Fhb1的品种(系)。云麦69、云麦75、云麦56、宜麦1号和宜麦3号等兼有2个成株期抗锈病基因,可作为今后云南持久抗锈病育种的抗源材料。 相似文献
83.
Due to the growing interest in Central and Eastern Europe on cropping of wheat in optional late autumn terms, called facultative, genetic research and field evaluation were taken on four spring cultivars: Tybalt (NL), Monsun (DE), Ostka Smolicka (PL) and Bombona (PL), currently being recommended by breeders. The PPD gene analyze, expression level of dehydrine genes (WCS120 and WDHN13) in cooling test, and qPCR for RNA isolation and analyses of WCS120 and WDHN13 gene expression at the BBCH12 stage of wheat were estimated. Molecular analysis of PPD-D1 gene confirmed the presence of photoperiod sensitive allele ppd-D1b in all tested genotypes. The highest level of NRE WCS120 gene was detected in cultivars Tybalt and Bombona. Two-year field experimental study assessed the growth, development and productivity of facultative and spring crops of studied cultivars. Based on our results from field experiments and result of molecular analysis of alleles of PPD-D1 gene, the tested genotypes can be considered as potentially facultative genotypes. 相似文献
84.
【目的】由异沙叶蝉(Psammotettix alienus)传播的小麦矮缩病毒病是近年来中国西北部麦区严重发生的小麦病毒病害之一。受侵染的小麦植株严重矮化,有效分蘖减少,产量损失严重。论文旨在明确小麦矮缩病毒(Wheat dwarf virus,WDV)侵染小麦植株后矮化症状形成与赤霉素代谢调控的关系,为该病害的防治打下基础。【方法】以小麦品种扬麦12为试验材料,以异沙叶蝉为传毒介体饲毒后转移到1叶期的健康幼苗(3头/株)上进行传毒,同时以无毒异沙叶蝉取食健康幼苗为对照。根据试验需要,不同时间取样备用。为保证试验的准确性,经PCR检测为阳性的作为处理组试验材料;采用间接酶联免疫吸附(ELISA)法,利用植物赤霉素(GA3)试剂盒测定分析侵染第21天取样的小麦叶片赤霉素含量;将带毒条沙叶蝉接种的小麦苗分为两个平行处理组,接种后第7天分别用GA3(浓度为50 mg·L-1)和H2O进行叶面喷施处理,每隔一周处理一次。以无毒叶蝉接种后长势一致的小麦苗作为对照组,根据株高统计结果分析外施赤霉素对受侵染小麦植株的表型变化;以山羊草(Aegilops tauschii)的内根-贝壳杉烯合成酶(ent-kaurene synthase-like 3,KSL3)的基因编码区序列为参考基因设计引物(KSL3-F:5′-ATGATGGTGAATCCGCCGC-3′;KSL3-R:5′-TTAATGGTTGATCTTTGTTT-3′),对扬麦12的KSL3进行克隆和序列分析;分别取接种后7、14和21 d的小麦植株叶片,提取RNA后反转录,以克隆得到的Ta KSL3基因序列设计引物(Ta KSL3-F:5′-GAGACATGTGCCATGGCGTTC-3′;Ta KSL3-R:5′-CGTGTCACTCAGATCGGTGGAG-3′),选择小麦翻译延伸因子1A(EF-1α)作为内参基因,利用荧光定量PCR方法分析赤霉素代谢相关基因的转录水平。【结果】经ELISA检测发现,接种21 d的发病植株赤霉素含量与健康植株相比降低了28.9%;通过施用浓度为50 mg·L-1的赤霉素后,发病植株的平均株高相比对照组显著增加35.9%;采用同源克隆得到了完整的小麦赤霉素合成途径关键酶KSL3的编码区序列,长度为1 827 bp,编码608个氨基酸,BLAST比对分析发现该DNA序列与山羊草KSL3编码区序列相似度为85.2%。经荧光定量检测发现受小麦矮缩病毒侵染后小麦KSL3表达量显著下降,接种14 d降低为对照组的35.7%,21 d降低为对照组的9.6%。【结论】小麦矮缩病毒的侵染导致赤霉素合成途径关键酶的表达量降低,可能使赤霉素合成受阻,赤霉素含量降低引发受赤霉素调节的细胞生物学过程异常,从而诱导矮化症状形成。研究结果为揭示小麦矮缩病毒侵染的致病机理和病害防控打下了基础。 相似文献
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86.
为进一步探究春化基因VRN1在小麦发育进程中的功能,利用荧光定量PCR分析了VRN1基因在不同发育特性小麦品种新春2号、京841中的表达情况。结果表明,随着生育进程的推进,VRN1基因在新春2号叶片和茎尖中表达量均呈上升趋势,VRN1基因在京841叶片中呈波动上升趋势,在茎尖中表达量趋于0;以p FGC5941载体为基础构建含有VRN1反向重复序列的RNA干扰载体,利用农杆菌介导的茎尖转化法转化新春2号获得了再生植株,并通过PCR法检测获得了转基因阳性植株,为从分子水平上实现小麦发育特性遗传改良和创育小麦新种质奠定了基础。 相似文献
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Cereal crops in the reproductive stage of growth are considerably more susceptible to injury from freezing temperatures than during their vegetative growth stage in the fall. While damage resulting from spring-freeze events has been documented, information on genotypic differences in tolerance to spring-freezes is scarce. Ninety wheat genotypes were subjected to a simulated spring-freeze at the mid-boot growth stage under controlled conditions. Spring-freeze tolerance was evaluated as the number of seeds per head at maturity after plants were frozen at −6 °C. Plants that froze, as confirmed by infrared (IR) thermography, died shortly after thawing and consequently the heads did not mature. Only in plants that had no visible freezing (super-cooled) were heads able to reach maturity and produce seeds. In plants that super-cooled four genotypes had significantly higher seed counts after being exposed to freezing than three with the lowest. In addition, significant differences between genotypes were found in whole plant survival among those that had frozen. Genotypes with high whole-plant freezing survival were not necessarily the same as the super-cooled plants with the highest seed counts. Spring-freeze tolerance was not correlated with maturity suggesting that improvement in freezing tolerance could be selected for without affecting heading date. Spring-freeze tolerance was not correlated with freezing tolerance of genotypes of plants in a vegetative state, either under non-acclimated or cold-acclimated conditions indicating that vegetative freezing tolerance is not a good predictor of spring-freeze tolerance. 相似文献
90.
Dense planting and less basal nitrogen (N) fertilization have been recommended to further increase rice (Oryza sativa L.) grain yield and N use efficiency (NUE), respectively. The objective of this study was to evaluate the integrative impacts of dense planting with reduced basal N application (DR) on rice yield, NUE and greenhouse gas (GHG) emissions. Field experiments with one conventional sparse planting (CK) and four treatments of dense planting (increased seedlings per hill) with less basal N application were conducted in northeast China from 2012 to 2013. In addition, a two-factor experiment was conducted to isolate the effect of planting density and basal N rate on CH4 emission in 2013. Our results show that an increase in planting density by about 50% with a correspondingly reduction in basal N rate by about 30% (DR1 and DR2) enhanced NUE by 14.3–50.6% and rice grain yield by 0.5–7.4% over CK. Meanwhile, DR1 and DR2 reduced GWP by 6.4–12.6% and yield-scaled GWP by 7.0–17.0% over CK. According to the two-factor experiment, soil CH4 production and oxidation and CH4 emission were not affected by planting density. However, reduced basal N rate decreased CH4 emission due to it significantly reduced soil CH4 production with a smaller reduction in soil CH4 oxidation. The above results indicate that moderate dense planting with less basal N application might be an environment friendly mode for rice cropping for high yield and NUE with less GHG emissions. 相似文献