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61.
普通小麦"济南177"(Triticum aestivum L.cv.Jinan177)经继代培养和选择,形成了性质不同的愈伤组织,一种生长迅速,易于形成悬浮系,游离的原生质具有旺盛的分裂能力,但不能分化,称为Cha9;另一种具有一定能力,但游离原生质体分裂能力低,称为176.二者之一来源的原生质体与紫外线照射的青苗碱谷原生质体融合均不能获得再生植株.而将源于Cha9和176的两种原生质体混合,与经紫外线照射的青苗碱谷原生质体在PEG诱导下融合,融合产物再生了大量植株.再生的愈伤组织及植株经表现型、细胞学、有工酶、RAPD分析,证明了其杂种性质,用不麦叶绿体特异的简单得复序列(SSR)引物分析了再生杂种的叶绿体遗传组成情况.在不同的杂种克隆中,同时带有Cha9和176的遗传物质并含有供体核及胞质基因组的克隆4具有较高的分化能力,再生了大量生长旺盛的完整植株.  相似文献   
62.
半干旱黄土高原地区春小麦地膜覆盖研究概述   总被引:7,自引:0,他引:7  
在黄土高原半干旱地区春小麦上进行的地膜覆盖试验表明,地膜覆盖通过改善耕层土壤生态环境条件,即通过改善水,热状况,活化土壤养分,对提高水分和养分利用效率,实现粮食增产具有重要作用,但近年来在生产实践和科学实验中发现,不合理的长期全生育期地膜覆盖,因在作物生长前期和中期覆膜作物较不覆膜作物生长好,覆膜作物在生长期水分蒸腾损失严重,土壤水分的蒸散(蒸发+蒸腾)损失远比不覆膜土壤严重,在作物生长后期降水少或没有补充灌溉时,会产生严重的水分肋迫现象,显著抑制小穗分化和灌浆,最终导致收获得指数和产量下降,同时,地膜覆盖的增产作用在一定程度上是以耗竭土壤肥力,特别是在有机物质为代 的,因此,不正确的地膜覆盖(如全生育期的地膜覆盖),不仅有时起不到显著的增产作用,而且易造成土壤养分,特别是土壤中硝态氮的累积和损失,肥料利用效率降低,土壤生态条件恶化,下降,难以持续高产,因此在确定地膜覆盖范式时,必须要考虑底墒,作物生育期降水,地膜覆盖的阶段性和氮肥的施用等。  相似文献   
63.
We analysed the abundance, spatial distribution and soil contact of wheat roots in dense, structured subsoil to determine whether incomplete extraction of subsoil water was due to root system limitations. Intact soil cores were collected to 1.6 m below wheat crops at maturity on a red Kandosol in southern Australia. Wheat roots, remnant roots, soil pores and root–soil contact were quantified at fresh breaks in the soil cores. In surface soil layers (<0.6 m) 30–40% of roots were clumped within pores and cracks in the soil, increasing to 85–100% in the subsoil (>0.6 m), where 44% of roots were in pores with at least three other roots. Most pores contained no roots, with occupancy declining from 20% in surface layers to 5% in subsoil. Wheat roots clumped into pores contacted the surrounding soil via numerous root hairs, whereas roots in cracks were appressed to the soil surface and had very few root hairs. Calculations assuming good root–soil contact indicated that root density was sufficient to extract available subsoil water, suggesting that uptake is constrained at the root–soil interface. To increase extraction of subsoil water, genetic targets could include increasing root–soil contact with denser root hairs, and increasing root proliferation to utilize existing soil pores.  相似文献   
64.
保护性耕作对稻田土壤有机质的影响   总被引:9,自引:0,他引:9  
邵景安  唐晓红  魏朝富  谢德体 《生态学报》2007,27(11):4434-4442
研究使用常规犁耕-休闲(DTF),常规犁耕-小麦(DTW),保护耕作-休闲(CTF),保护耕作-小麦(CTW)4个处理,评价连续实验10a后保护性耕作对稻作区SOM的影响。结果表明:垄作、免耕和小麦种植的结合是稻作区一种较好的保护性耕作实践。它不仅显著增加SOM在土壤表层的聚集,而且它也通过改变SOM的组成和结构显著影响土壤胡敏酸的光谱和热解特性。相比其他处理,垄作免耕(稻麦)在0~10cm土层拥有最多的SOM含量,但随着土层厚度的增加,这一含量下降的也较为迅速。垄作免耕(稻麦)土壤胡敏酸在波长665nm处的光密度为0.122,465nm处为0.705,而常规平作(中稻)在这两个波长处却分别为0.062和0.321。垄作免耕土壤胡敏酸DTA曲线在360~365℃处放热峰的焓变值比常规平作低,1000~1050cm-1吸收峰常规平作也比垄作免耕强。垄作免耕土壤腐殖质的氧化稳定系数增高,表明长期垄作免耕土壤腐殖酸的缩合度增高,芳构化程度增强。通过保护性耕作和作物实践可以管理稻田土壤,维持充分的SOM积累,缓解土壤有机碳的丢失。  相似文献   
65.
An early event in the formation of the serotonergic synapse by the Retzius (R) onto the pressure-sensitive (P) neurons of the leech is the elimination of an extrasynaptic response to transmitter from sites of contact on the postsynaptic cell. This event during synapse formation is cell-specific in that it is elicited in vitro by contact with the presynaptic R cell but not with other neurons. In the study reported here, we investigated the nature of this interaction between R and P neurons. The loss of the extrasynaptic response of the P cell was elicited by contact with R cells fixed in a mild paraformaldehyde solution, but not by R cells treated with the proteolytic enzyme trypsin prior to fixation. As well, a variety of lectins were assayed for their ability to interfere with synapse formation. The transmitter responses of P cells plated on lectin-coated substrates were unaffected. However, exposure of the R cell to the lectin wheat germ agglutinin (WGA), but not to other lectins, prior to pairing prevented the loss of the extrasynaptic response in contacted P cells and blocked the formation of the R? P synapse in culture. We conclude that recognition by the P cell of the R cell during synapse formation may be mediated by an R cell-specific surface protein which binds wheat germ agglutinin. 1994 John Wiley & Sons, Inc.  相似文献   
66.
67.
种植密度对冬小麦根系时空分布和氮素利用效率的影响   总被引:2,自引:0,他引:2  
在大田条件下,以大穗型品种泰农18和中穗型品种山农15为材料,研究不同种植密度(泰农18:每公顷135、270、405万株;山农15:每公顷172.5、345、517.5万株)对冬小麦根系时空分布和氮素利用效率的影响.结果表明:在整个生育期,随种植密度的增加,泰农18的根长密度、根系总吸收面积和活跃吸收面积均显著增加;在生育后期,山农15的根长密度、根系总吸收面积和活跃吸收面积在种植密度为每公顷345万株时最大.泰农18的籽粒产量、氮肥吸收利用效率、氮肥偏生产力和氮素利用效率在种植密度为每公顷405万株时最高,山农15在种植密度为每公顷345万株时最高,但与种植密度为每公顷517.5万株的处理差异不显著.随种植密度的增加,冬小麦成熟期土壤硝态氮、铵态氮和无机态氮在不同土层的积累量均降低.泰农18和山农15种植密度分别为每公顷405万株和345万株时,是兼顾高产和高效利用氮素的适宜种植密度.  相似文献   
68.
Identification of new low-molecular-weight glutenin subunit genes in wheat   总被引:22,自引:0,他引:22  
To clarify the composition of low-molecular-weight glutenin subunits (LMW-GSs) in a soft wheat cultivar, we cloned and characterized LMW-GS genes from a cDNA library and genomic DNA in Norin 61. Based on alignment of the conserved N- and C- terminal domains of the deduced amino-acid sequences, these genes are classified into 12 groups. One of these groups (group 5), the corresponding gene of which has not been reported previously, contains two additional hydrophobic amino-acid clusters interrupting the N-terminal repetitive domain. Other groups (groups 11 and 12), which were not identified in other cultivars as a protein product, showed all eight cysteines in the C-terminal conserved domain. With specific primer sets for these groups it was revealed that Glu-D3 and Glu-A3 encoded the former and the latter, respectively. Both groups of genes were expressed in immature seeds. The presence of these groups of LMW-GSs may affect the dough strength of soft wheat. Received: 26 March 2001 / Accepted: 16 July 2001  相似文献   
69.
Higher temperatures caused by future climate change will bring more frequent heat stress events and pose an increasing risk to global wheat production. Crop models have been widely used to simulate future crop productivity but are rarely tested with observed heat stress experimental datasets. Four wheat models (DSSAT‐CERES‐Wheat, DSSAT‐Nwheat, APSIM‐Wheat, and WheatGrow) were evaluated with 4 years of environment‐controlled phytotron experimental datasets with two wheat cultivars under heat stress at anthesis and grain filling stages. Heat stress at anthesis reduced observed grain numbers per unit area and individual grain size, while heat stress during grain filling mainly decreased the size of the individual grains. The observed impact of heat stress on grain filling duration, total aboveground biomass, grain yield, and grain protein concentration (GPC) varied depending on cultivar and accumulated heat stress. For every unit increase of heat degree days (HDD, degree days over 30 °C), grain filling duration was reduced by 0.30–0.60%, total aboveground biomass was reduced by 0.37–0.43%, and grain yield was reduced by 1.0–1.6%, but GPC was increased by 0.50% for cv Yangmai16 and 0.80% for cv Xumai30. The tested crop simulation models could reproduce some of the observed reductions in grain filling duration, final total aboveground biomass, and grain yield, as well as the observed increase in GPC due to heat stress. Most of the crop models tended to reproduce heat stress impacts better during grain filling than at anthesis. Some of the tested models require improvements in the response to heat stress during grain filling, but all models need improvements in simulating heat stress effects on grain set during anthesis. The observed significant genetic variability in the response of wheat to heat stress needs to be considered through cultivar parameters in future simulation studies.  相似文献   
70.
转基因小麦“中间试验”与农艺性状评价   总被引:5,自引:0,他引:5  
在湖北武汉对3个转基因小麦品系连续2次进行了"中间试验".结果表明在田间栽培条件下,转基因小麦植株个体生长发育正常,但转基因小麦主要农艺性状与对照间存在差异;特别是小区产量与本地小麦品种之间存在极显著差异;转基因小麦品系与其受体品系之间千粒重和小区产量上存在显著差异或极显著差异.组织化学和SDS-PAGE检测结果表明,外源基因能够稳定遗传,功能得到正确表达.  相似文献   
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