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1.
Effects of Transgenic Bt+CpTI Cotton on Field Abundance of Non-Target Pests and Predators in Xinjiang, China
XU Yao, WU Kong-ming, LI Hao-bing, LIU Jian, DING Rui-feng, WANG Fei, Ahtam Uwayis, LI Haiqiang, WANG Dong-mei, CHEN Xue-xin
Journal of Integrative Agriculture 2012, 12 (
9
): 1493-1499. DOI:
10.1016/S1671-2927(00)8681
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1374
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Transgenic insect-resistant cotton is being increasingly planted in Xinjiang cotton-planting regions, where geographical climate conditions and species composition of pests and natural enemies are greatly unique in China. Limited studies have been conducted on the ecological impacts of transgenic insect-resistant cotton, especially for transgenic double genes (Bt+CpTI) cotton, in this region. In this study, the potential effects of transgenic Bt+CpTI cotton on the seasonal abundance of non-target pests and predators were assessed from 2009 to 2011 in Korla, Xinjiang. The results showed that species composition and seasonal abundance of 5 groups of pests and 5 groups of predators were not significantly different between transgenic Bt+CpTI cotton and non-transgenic cotton every year. It suggests that transgenic Bt+CpTI cotton per se does not affect the population dynamics of non-target pests and predators on this crop in Xinjiang.
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2.
Actin and Myosin Co-Localize in Plasmodesmata and Ectodesmata-Like Structure
DONG Yu, LIU Na, LIU Gang, LI Wen-long, YAN Ai-hua, WANG Dong-mei
Journal of Integrative Agriculture 2011, 10 (
6
): 845-849. DOI:
10.1016/S1671-2927(11)60070-9
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3041
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Actin and myosin were found to be associated with the cytoplasmic sleeve of plasmodesmata. As cytoskeletal proteins, actin and myosin are believed to regulate the conductivity of plasmodesmata (PDs) in higher plants. Using immunocytochemical methods, we found the two proteins to be co-localized - and closely linked to each other - in plasmodesmata and ectodesmata-like structure in ageing parenchymatous cells of
Allium sativum
L. We suggest that intercellular communication is affected by the interaction between actin and myosin.
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3.
Infection Behaviour of Melampsora larici-populina on the Leaf Surface of Populus purdomii
YU Zhong-dong, PENG Shao-bing, REN Zheng-zheng, WANG Dong-mei , CAO Zhi-min
Journal of Integrative Agriculture 2011, 10 (
10
): 1562-1569. DOI:
10.1016/S1671-2927(11)60152-1
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Behaviours of urediospore germtube in Melampsora larici-populina on the leaf surface of Populus purdomii were studied by light microscope, scanning electron microscope (SEM), transmission electron microscope (TEM), and fluorescence microscope. Crab-like fusion cells on leaf surface, intercellular hyphal cells in leaf tissues, as well as nucleus states, were observed and counted up in this study. Under unsaturated humidity, 32% of germinated tubes fused into a distinguishable swollen crab-shaped cell at the merging site, and 10.5% of observed crab-like cells had more than three nuclei. Wedge-shaped mycelia developed and then penetrated the leaf surface directly, or indirectly through stomata. Tips of germtube passed through the intercellular cells of poplar leaves directly were found in TEM. Aniline blue dyeing also showed that the infecting hyphae could invade into the cuticle and epidemic cell wall directly. For the case of infection through stomata, there were two different situations. Short branches and wedge hyphae usually penetrated the leaf surface via opened stomata, whereas, some germtube branches and wedge hyphae penetrated leaves through the guard cell walls or stoma lips. In the latter case, the stomata were always closed. The samples from wild forestlands had the same fused cells and wedge hyphae, but the occurrence rate was much higher than that in the chamber. Even under the saturated air humidity, germtubes could roll back and formed fusion structure, or merged together with their tips. The fusion cells might centralize the plasma of merged germtubes and have a strong survival capacity to protect germtubes from dying under arid circumstances, and provide a chance of genetic variation as well.
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