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991.
杉木茎尖诱导愈伤组织及植株再生研究 总被引:4,自引:0,他引:4
用杉木优良单株基部萌蘖条茎尖作为外植体进行组培快繁试验,结果表明:愈伤组织在改良MS+KT0.2mg/L+2,4-D1.0mg/L培养基上,外植体诱导率为86.7%;不定芽分化与增殖培养基为改良MS+KT1.0mg/L+IBA0.5mg/L,分化系数达3.42;芽苗培育约30d后,用1/2MS+IBA0.2mg/L+NAA0.5mg/L作生根培养基培养约25d,生根率可达93%以上。生根苗移植到覆盖3cm厚黄心土的苗床上栽培,成活率可达90%以上。 相似文献
992.
分析了我国现阶段居住区户外景观的建设状况,并且以一个典型小区户外景观设计为例,探索营造高品质居住区户外活动空间中活动场所的设计语言与模式。 相似文献
993.
菌根真菌与植物激素相互作用研究进展 总被引:1,自引:1,他引:0
菌根真菌生长及其与植物共生过程中可直接合成或诱导植物产生多种激素类物质,如生长素(auxin)、细胞分裂素(CTK)、赤霉素(GA)、乙烯(ET)、脱落酸(ABA)、水杨酸(SA)和茉莉酸(JA)等,这些物质除了调节植物自身生长发育、控制植物形态建成和生理代谢外,还能在菌根真菌与植物相互识别、菌根形成、诱导植物抗逆性等方面发挥作用。本文总结了菌根真菌对植物激素种类、形态和含量的影响,以及植物激素对菌根真菌生长发育、侵染、产孢和功能的影响。旨在为进一步研究菌根真菌与植物激素相互作用关系、探索菌根真菌生理代谢特点提供依据。 相似文献
994.
屋顶绿化是城市绿化建设中新兴的和最有潜力的绿化方式之一。以浙江省嘉兴市忆江南酒店屋顶绿化设计为例,参照业主意见,考虑实用功能和景观美化效果,结合屋顶现状,提出了两套屋顶绿化设计方案,并对两套方案的利弊进行了分析。 相似文献
995.
Fluorescein diacetate (FDA) was investigated as a potential viability stain for seeds of holoparasitic broomrapes Orobanche and Phelipanche (Orobanchaceae), using four weedy and two non-weedy taxa. FDA viabilities were compared with the currently used 2,3,5-triphenyl tetrazolium chloride (TTC) test, and in vitro germination induced by the strigolactone analogue GR-24. Viable FDA-stained seeds were characterised by bright yellow–green fluorescence under 450–490 nm blue light. These viable seeds could be discriminated from non-viable seeds, in which low levels of fluorescence, similar to non-stained control seeds were observed. FDA viabilities were not significantly different from those obtained using the TTC stain; however, viability values for both stains were consistently higher than levels of artificially induced germination. Positive TTC-staining showed continuous variation that was difficult to interpret. Nevertheless, the TTC test does not involve grinding seeds, and therefore probably remains a practical alternative to FDA for screening soil samples contaminated with Orobanche and Phelipanche seeds, which indicates different applications for the two viability tests. Interestingly, the strigolactone analogue GR-24 only induced germination in O. crenata , P. ramosa and O. minor , suggesting a high specificity towards this germination inducer among the species investigated. We suggest that FDA-staining provides a potential alternative to the currently used TTC test for seed viability assays for Orobanche and Phelipanche , and other parasitic weeds which are an obstacle to crop cultivation. 相似文献
996.
G. Geisler 《Journal of Agronomy and Crop Science》1986,157(1):67-71
Plants of maize ( Zea mays L.), spring barley ( Hordeum vulgare L.) and broad bean ( Vicia faba L.) were raised in tubes filled with a soil-sand mixture and supplied with nutrient solution. The nutrient supply was varied with regard to concentration and typ of compound of "N". Due to the relatively high concentrations of "N", dry matter of shoots and roots was reduced in comparison to the control; root morphology was affected in terms of root length and root thickness. The N-compounds, used in the experiment, exerted quantitatively different influences on dry matter production and root morphology, NH4 NO3 being the N-form which had the weakest detrimental effects. There was no specific response to NH+ 4 or NO− 3 but a strong influence could be shown for NH4 Cl and Na NO3 . Probably not only the concentration of "N" and the form of "N" have a specific influence, but also the cations and anions associated with the N-containing ion are effective. 相似文献
997.
998.
探讨湖泊湿地土壤特性对植物多样性的影响,对于理解湿地植被分布及功能的维持机制具有重要意义.在安徽升金湖消落带沿水位梯度设立研究样方,测定植物的盖度、地上生物量以及土壤含水量、有机碳、全氮、全磷等指标,并结合Pearson相关性分析、冗余分析(redundancy analysis,RDA)探讨了土壤特性对植物多样性的影响.结果表明,随着地下水位上升,土壤含水量与全氮含量显著增加(P<0.05),土壤有机碳和土壤全磷含量显著降低(P<0.05).土壤有机碳、全磷含量以及C?N与土壤含水量极显著负相关(P<0.001),土壤全氮、N?P以及C?P与土壤含水量极显著正相关(P<0.001).土壤含水量、土壤全氮含量以及C?P和N?P是影响消落带植被物种多样性变化的关键因子,共同解释了变化的91.85%.总之,土壤含水量可以直接影响消落带植物多样性,也可以通过改变土壤中氮元素的转化和磷元素的有效性间接影响物种多样性. 相似文献
999.
分蘖与株高是禾本科草类植物重要的农艺性状,明确参与调控分蘖与株高的基因类型对牧草和草坪草分子辅助育种具有重要意义。以表型差异明显的两个高羊茅品种“Kentucky-31”(K31)和“Regenerate”为材料,旨在构建高羊茅分蘖节转录组图谱,挖掘在分蘖节部位调控生长发育相关的差异表达基因(differentially expressed genes,DEGs)。基于高通量测序技术平台Illumina HiSeq 2500×Miseq 300进行转录组测序,并将得到的数据进行de novo组装,结果共获得77872条单基因簇(unigene)。将获得的unigenes与非冗余蛋白数据库(non-redundant protein database,NR)、蛋白质数据库(universal protein,Uniprot)、基因本体数据库(gene ontology,GO)、东京基因与基因组数据库(kyoto encyclopedia of genes and genomes,KEGG)以及直系同源蛋白簇(clusters of orthologous groups,COG)数据库进行比对,结果显示:分别有59927、40213、44447、15146和13767条unigenes成功获得注释。“Regenerate”与“K31”对比有1573个上调DEGs和1441个下调DEGs。GO富集分析发现,DEGs主要富集在细胞、细胞组分、大分子复合物组装等生物过程。DEGs中共注释到42个差异表达转录因子,主要包括TCP、WRKY和ARF等19种类型。还注释到与8类植物激素相关的DEGs,包括生长素、细胞分裂素、脱落酸、赤霉素、乙烯、油菜素甾醇、水杨酸和茉莉酸。利用实时荧光定量PCR对DEGs进行表达模式验证,发现其与RNA-Seq测序结果一致,证实了测序结果的准确性。研究结果丰富了高羊茅的转录组序列资源,初步获得控制株高及分蘖发育的候选因子,为进一步开展基因功能及分子育种研究提供了理论支持。 相似文献
1000.
In this research, a hydroponics experiment was conducted to apply different concentrations of cadmium (Cd) (0, 5, 10, 25, 50, 100, 200 μmol·L-1) to maize seedlings with two leaves and one new leaf, in order to explore the effects of the different Cd concentrations on the maize seedling growth, Cd absorption kinetics and root morphology and classification. After 5 days of Cd stress, the maize seedings were sampled, the plant height, main root length, aboveground and underground biomass, root architecture, Cd content and photosynthesis and related parameters were measured. It was found that with increasing Cd stress, the plant height, main root length, biomass and tolerance index of shoots and roots, total root length, root surface area, root volume, root forks and root tips all decreased significantly; Root average diameter and root:shoot increased significantly (P<0.05). Meanwhile root parameters (root length, root surface area and root volume) of root diameter classes designated Ⅰ-Ⅲ (0-1.5 mm) showed a decreasing trend, which had a significant (P<0.05) negative correlation with root Cd concentration. The proportion of root length, root surface area and root volume with diameter between 0-0.5 mm showed a downward trend under Cd stress. Under Cd stress, Cd concentration and accumulation in underground and aboveground parts of maize seedlings increased significantly, chlorophyll content decreased, and photosynthesis was inhibited. This study has shown that Cd affected root development mainly by inhibiting the growth and morphology of fine roots, and inhibited photosynthesis, elongation and biomass accumulation of the aboveground and underground parts of the maize seedings. © 2022, Editorial Office of Acta Prataculturae Sinica. All rights reserved. 相似文献