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Regulation of Foliar Application DCPTA on Growth and Development of Maize Seedling Leaves in Heilongjiang Province 被引量:4
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作者 Gu Wan-rong Meng Yao +4 位作者 Zhang Jun-bao Ji Biao Wang Yong-chao Li Jing Wei Shi 《Journal of Northeast Agricultural University(English Edition)》 CAS 2014年第2期1-11,共11页
DCPTA (2-diethylaminoethyl-3, 4-dichlorophenylether) is a new plant regulator which can be used to regulate growth and development for crops. Experiments on maize seedlings were conducted in the growth chamber to st... DCPTA (2-diethylaminoethyl-3, 4-dichlorophenylether) is a new plant regulator which can be used to regulate growth and development for crops. Experiments on maize seedlings were conducted in the growth chamber to study the effects of foliar applied DCPTA. The plant pots were placed in a completely randomized design with three replicates. The maize seedlings were treated with 0 mg·L-1 (control), 20 mg·L-1 and 40 mg·L-1 DCPTA solution. The effects of DCPTA on the photosynthetic characteristics (photosynthesis, stomata conductance, intercellular CO2, and transpiration rate), related physiological characteristics (contents of soluble sugar and starch), chlorophyll fluorescence parameters (Fo, Fro, Fv/Fm, Fv/Fo, qP, and qN) and the weight of dry matter in maize seedling were studied. The results showed that DCPTA enhanced photosynthesis of maize seedling. In general, photosynthetic rate in leaves was significantly promoted through spraying DCPTA solution, and 40 rag" L~ DCPTA was found to be the best concentration for maize. The relationship between stomata conductance and transpiration rate in maize leaves could be described as linear. With regard to the chlorophyll fluorescence parameters, our fmdings showed that 40 mg·L-1 DCPTA in maize seedling caused an increase in Fm, Fv/Fm, Fm/Fo, qP and a decrease in Fo and qN at some time points checked. It is suggested that DCPTA increased photosynthetic rate by raising both the content of chlorophyll and activities of PSII and the contents of sugar and starch. Compared with the control, the treated maize seedling caused an increase in plant height, root length, shoot dry mass, root dry mass, or the total (root plus shoot) dry mass. 展开更多
关键词 DCPTA PHOTOSYNTHESIS growth and development maize seedling
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mTOR Signaling Pathway and Its Regulation on Growth and Development
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作者 YANG Cairong ZHENG Kejia ZHANG Yan LI Ning LI Shufeng YAN Yunqin 《Journal of Northeast Agricultural University(English Edition)》 CAS 2010年第1期84-89,共6页
The mammalian target of rapamycin (mTOR) signaling pathway is evolutionarily conserved, mTOR can integrate and converge a wide range of signals, including intracellular and extracellular nutrients, growth factors, e... The mammalian target of rapamycin (mTOR) signaling pathway is evolutionarily conserved, mTOR can integrate and converge a wide range of signals, including intracellular and extracellular nutrients, growth factors, energy and stress conditions, and has a crucial role in the vertebrate growth control. This review analyzed the main components and regulated factors of TOR signaling pathway, explained functions and mechanisms of roTOR during the individual growth, the development and its dynamic role, revealed its additional functions beyond the cell growth control, and finally reviewed the tissue specificity and time specificity of mTOR signaling pathway, and its regulation on sexual differentiation, tissue differentiation and organogenesis in the individual development. 展开更多
关键词 MTOR signaling pathway growth and development REGULATION
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Morphological characteristics,developmental dynamics,and gene temporal expressions across various development stages of Aphis gossypii sexual female
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作者 LÜJingli WANG Liuyu +10 位作者 ZHANG Kaixin LI Dongyang GAO Mengxue GUO Lixiang TANG Zhijuan GAO Xueke ZHU Xiangzhen WANG Li JI Jichao LUO Junyu CUI Jinjie 《Journal of Cotton Research》 CAS 2024年第4期372-385,共14页
Background Aphis gossypii(Hemiptera:Aphididae)is a worldwide polyphagous phloem-feeding agricultural pest,and it can produce offspring by sexual or asexual reproduction.Compared with dozens of generations by parthenog... Background Aphis gossypii(Hemiptera:Aphididae)is a worldwide polyphagous phloem-feeding agricultural pest,and it can produce offspring by sexual or asexual reproduction.Compared with dozens of generations by parthenogenesis,sexual reproduction is performed in only one generation within one year,and little is known about the sexual reproduction of A.gossypii.In this study,sexual females of A.gossypii were successfully obtained through a previously established induction platform,and the morphological characteristics,developmental dynamics,and temporal gene expression were examined.Subsequently,signaling pathways potentially involved in regulating the growth,development,and reproduction of sexual females were investigated.Results The morphological observation showed that from the 1st instar nymph to adult,sexual females exhibited a gradually deepened body color,an enlarged body size,longer antennae with a blackened end,and obviously protruding cauda(in adulthood).The anatomy found that the ovaries of sexual females developed rapidly from the 2^(nd)instar nymph,and the embedded oocytes matured in adulthood.In addition,time-course transcriptome analysis revealed that gene expression profiles across the development of sexual females fell into 9 clusters with distinct patterns,in which gene expression levels in clusters 1,5,and 8 peaked at the 2^(nd)instar nymphal stage with the largest number of up-regulated genes,suggesting that the 2^(nd)instar nymph was an important ovary development period.Kyoto Encyclopedia of Genes and Genomes(KEGG)pathway enrichment analysis revealed that a large number of genes in the sexual female adult were enriched in the TGF-beta signaling pathway and Forkhead box O(FoxO)signaling pathway,highlighting their important role in sexual female adult development and reproduction.Conclusion The morphological changes of the sexual female at each developmental stage were revealed for the first time.In addition,time-course transcriptomic analyses suggest genes enriched in the TGF-beta signaling pathway and FoxO signaling pathway probably contribute to regulating the development and oocyte maturation of sexual females.Overall,these findings will facilitate the regulating mechanism research in the growth and development of sexual females by providing candidate genes. 展开更多
关键词 Aphis gossypii Sexual female growth and development OOGENESIS Time-course transcriptome
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Effects of Plant Protein Hydrolysate on Emergence and Growth of Rice Seedlings 被引量:1
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作者 Tao Bo Zheng Cai-yue +2 位作者 Li Jing-jing Guo Jing Zhang Yu-hang 《Journal of Northeast Agricultural University(English Edition)》 CAS 2021年第3期9-20,共12页
With the rise of organic agriculture,researches on the production of slow-release organic fertilizer from natural organic materials have attracted much attention.Plant protein and peptides have potential applications ... With the rise of organic agriculture,researches on the production of slow-release organic fertilizer from natural organic materials have attracted much attention.Plant protein and peptides have potential applications in agricultural production.The effects of bioactive peptides derived from plant protein on rice seed germination and seedling growth and development were systematically studied using bioassays and greenhouse growth experiments.The feasibility of phytoprotein peptide application in the rice seedling stage was discussed.The results showed that the phytoprotein peptides had no adverse effects on rice,and the application when applied to rice seedlings,phytoprotein peptides within a certain concentration range produced obvious promotion effects on the growth and development of rice seedlings,which were more pronounced in the underground part of the plants.Phytoprotein peptides increased root length and dry matter accumulation and improved the robustness of rice seedlings.A 40 g·mol^(-1)·L^(-1) dose of phytoprotein peptides increased root length,plant fresh weight,plant dry weight,root fresh weight and root dry weight by 59.24%,20.14%,26.32%,51.57%and 81.70%,respectively compared to the control.In addition,the phytoprotein peptides significantly increased the chlorophyll content,root activity and nitrate reductase activity of rice seedlings,as well as superoxide dismutase,peroxidase,catalase andβ-1,3-glucanase activity in rice leaves,which could improve stress resistance.Plant peptides were simple to produce and cost-effective.Reasonable development and excavation of plant protein and protein hydrolysate peptide in China's agricultural application had a good practical basis and value significance. 展开更多
关键词 phytoprotein peptides RICE EMERGENCE growth and development
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Agronomic Traits of Transgenic Soybean Overexpressing TaDREB3 被引量:1
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作者 ZHANG Binbin ZHANG Tong WU Xiaoxia 《Journal of Northeast Agricultural University(English Edition)》 CAS 2011年第2期1-6,共6页
Dongnong50 was overexpressing TaDREB3, a stress-tolerance gene, and transgenic progenies with TaDREB3 showing stable heredity characters were obtained in this study. The seeds of T4 generation were sowed on saline lan... Dongnong50 was overexpressing TaDREB3, a stress-tolerance gene, and transgenic progenies with TaDREB3 showing stable heredity characters were obtained in this study. The seeds of T4 generation were sowed on saline land of which salt concentration was 0.19% and pH was 8.43, and agronomic traits including growth period, plant height, numbers of main nodes, branching numbers, pods per plant, numbers of seeds per plant, and weight of 100-seed were collected and comparing to control plants Dongnong50 were made. The impacts of TaDREB3 gene on agronomic traits of soybeans under high concentration of salt were discussed. The results showed that the growth period was not altered in transgenic line with TaDREB3 under high concentration of saline and alkali, the extremely significant or significant increase in the numbers of main nodes, pods per plant and in branching numbers and other agronomic traits in transgenic lines in comparing with non-transgenic lines was an indicator of their resistance to saline-alkali stress 展开更多
关键词 DREB transgenic soybean stress-tolerance growth and development period agronomic trait
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