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121.
木本植物木质部空穴和栓塞化研究(综述) 总被引:10,自引:0,他引:10
申卫军 《热带亚热带植物学报》1999,7(3):257-266
木本植物木质部空穴和栓塞化现象的发现至今已近80年历史,国外学者对此做了较多的研究,国内此方面的研究极少。木质部空穴和栓塞化研究是木本植物体内水分传输研究的前沿所在,不同学者在不同地区对不同材料的研究结果各异,争议颇多。本文对这一研究方向近年来的资料作了概括和总结,包括栓塞化现象的发现、检测方法、诱因及形成机理、木质部栓塞化同输水结构间的关系等方面。 相似文献
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Michael D. Weiser Sean T. Michaletz Vanessa Buzzard Ye Deng Zhili He Lina Shen Brian J. Enquist Robert B. Waide Jizhong Zhou Michael Kaspari 《Ecography》2018,41(2):255-264
The abundance–adaptation hypothesis argues that taxa with more individuals and faster generation times will have more evolutionary ‘experiments’ allowing expansion into, and diversification within, novel habitats. Thus, as older taxa have produced more individuals over time, and smaller taxa have higher population sizes and faster generation times, the Latitudinal Diversity Gradients (LDGs) of these clades should show shallower slopes. We describe the LDGs for archaea, bacteria, fungi, invertebrates and trees from six North American forests. For three focal groups – bacteria, ants, and trees – older taxa had shallower LDG slopes than the more recent, terminal taxa. Across 12 orders of magnitude of body mass, LDG slopes were steeper in larger taxa. The slopes of LDGs vary systematically with body size and clade age, underscoring the non‐canonical nature of LDGs. The steepest LDG slopes were found for the largest organisms while the smallest, from bacteria to small litter‐soil invertebrates, have shallower‐ to zero‐slope LDGs. If tropical niche conservatism is the failure of clades to adapt to, and diversify in temperate habitats, then the steep LDGs of chordates and plants likely arise from the decreased ability of clades with large individuals to adapt to the multiple challenges of extra‐tropical life. 相似文献
124.
A novel rice C2H2-type zinc finger protein lacking DLN-box/EAR-motif plays a role in salt tolerance 总被引:2,自引:0,他引:2
Huang J Yang X Wang MM Tang HJ Ding LY Shen Y Zhang HS 《Biochimica et biophysica acta》2007,1769(4):220-227
A cDNA for the gene ZFP182, encoding a C2H2-type zinc finger protein, was cloned from rice by RT-PCR. ZFP182 codes an 18.2 kDa protein with two C2H2-type zinc finger motifs, one nuclear localization signal and one Leu-rich domain. The DLN-box/EAR-motif, which exists in most of plant C2H2-type zinc finger proteins, does not exist in ZFP182. The expression analysis showed that ZFP182 gene was constitutively expressed in leaves, culms, roots and spikes at the adult rice plants, and markedly induced in the seedlings by cold (4 degrees C), 150 mM NaCl and 0.1 mM ABA treatments. The approximate 1.4 kb promoter region of ZFP182 gene was fused into GUS reporter gene and transformed into tobacco. The histochemical analysis revealed that GUS expression could not be detected in transformed tobacco seedlings under normal conditions, but strongly observed in tobacco leaf discs and the vascular tissue of roots treated with NaCl or KCl. Expression of ZFP182 in transgenic tobacco and overexpression in rice increased plant tolerance to salt stress. These results demonstrated that ZFP182 might be involved in plant responses to salt stress. 相似文献
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为优化谷氨酸棒状杆菌表达系统的纯化工艺,合成里氏木霉的CBD基因,将其与谷氨酸棒状杆菌分泌表达载体pXMJ19-sp连接,构建以CBD为纯化标签的重组载体pXMJ 19-sp-CBD.在该载体中插入GFP基因并转化至谷氨酸棒状杆菌,可获得分泌表达融合蛋白GFP-CBD的重组菌.该菌经IPTG诱导后的发酵液在紫外灯下显示强烈的绿色荧光,重组蛋白的分泌表达量达200 mg/L.利用CBD标签对纤维素柱的可逆性吸附,可直接对谷氨酸棒状杆菌分泌到培养基中的重组蛋白进行纯化,从而简化工艺和降低成本,为工业化大生产奠定基础. 相似文献
128.
Mei Li Zhong Wei Jianing Wang Alexandre Jousset Ville‐Petri Friman Yangchun Xu Qirong Shen Thomas Pommier 《Ecology letters》2019,22(1):149-158
While several studies have established a positive correlation between community diversity and invasion resistance, it is less clear how species interactions within resident communities shape this process. Here, we experimentally tested how antagonistic and facilitative pairwise interactions within resident model microbial communities predict invasion by the plant–pathogenic bacterium Ralstonia solanacearum. We found that facilitative resident community interactions promoted and antagonistic interactions suppressed invasions both in the lab and in the tomato plant rhizosphere. Crucially, pairwise interactions reliably explained observed invasion outcomes also in multispecies communities, and mechanistically, this was linked to direct inhibition of the invader by antagonistic communities (antibiosis), and to a lesser degree by resource competition between members of the resident community and the invader. Together, our findings suggest that the type and strength of pairwise interactions can reliably predict the outcome of invasions in more complex multispecies communities. 相似文献
129.
红豆杉生物工程的研究进展 总被引:9,自引:0,他引:9
自从紫杉醇(taxol,又称paclitaxel,结构见图1)被批准作为植源性抗癌药应用以来,由于其天然资源的限制,使得近几年来对寻找及扩大紫杉醇药源途径的研究取得了极大的进展。这些途径大致包括:(1)筛选高产量红豆杉(Taxus)栽培品种,(2)化学合成,(3)生物技术,(4)微生物生产。在这些研究领域特别是生物技术研究领域中,由于目前对紫杉醇的生物合成及关键酶研究所取得的进展,已使人们相信通过基因工程手段作为最佳生产紫杉醇药源途径之一,在不久的将来将会变为现实。本文报道的就是有关紫杉醇在生物工程方面的研究进展概况。1 研究简史红豆杉体外培… 相似文献
130.
Characterization and function analysis of a cold-induced AmCIP gene encoding a dehydrin-like protein in Ammopiptanthus mongolicus. 总被引:5,自引:0,他引:5
A cDNA clone was isolated after difference screening from cotyledons of two-week cold-treated Ammopiptanthus mongolicus. The full-length cDNA sequence [designated as AmCIP (A. mongolicus cold-induced protein) gene] was 806 bp long and contained a 465 bp open reading frame (ORF) encoding a 16.6 kD protein of 154 amino acids. Bioinformatic analyses indicated that CIP belongs to dehydrin family with the features of high hydrophilicity, a helix K-segment, a long Gly-rich region and a phosphorylatable tract of Ser as well as deficiency in Cys and Trp. The expression of CIP gene increased after two weeks of cold treatment and more expression was detected in radicle than in cotyledon. And PCR amplification of the AmCIP gene from genome of A. mongolicus revealed this gene has no intron. Function prediction suggested this protein seems to protect the stabilization of membrane structure and prevent macromolecular coagulation or sequestrate calcium ions by association or disassociation with membrane under low temperature conditions. 相似文献