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1. Up-regulation of a homeodomain-leucine zipper gene HD-1 contributes to trichome initiation and development in cotton
NIU Er-li, CAI Cai-ping, BAO Jiang-hao, WU Shuang, ZHAO Liang, GUO Wang-zhen
Journal of Integrative Agriculture    2019, 18 (2): 361-371.   DOI: 10.1016/S2095-3119(18)61914-8
摘要325)      PDF(pc) (2738KB)(253)    收藏
Plant trichomes originate from epidermal cells.  In this work, we demonstrated that a homeodomain-leucine zipper (HD-Zip) gene, Gh_A06G1283 (GhHD-1A), was related to the leaf trichome trait in allotetraploid cotton and could be a candidate gene for the T1 locus.  The ortholog of GhHD-1A  in the hairless accession Gossypium barbadense cv. Hai7124 was interrupted by a long terminal repeat (LTR) retrotransposon, while GhHD-1A worked well in the hairy accession Gossypium hirsutum acc. T586.  Sequence and phylogenetic analysis showed that GhHD-1A  belonged to the HD-Zip IV gene family, which mainly regulated epidermis hair development in plants.  Silencing of GhHD-1A  and its homoeologs GhHD-1D in allotetraploid T586 and Hai7124 could significantly reduce the density of leaf hairs and affect the expression levels of other genes related to leaf trichome formation.  Further analysis found that GhHD-1A  mainly regulated trichome initiation on the upper epidermal hairs of leaves in cotton, while the up-regulated expression of GhHD-1A  in different organs/tissues also altered epidermal trichome development.  This study not only helps to unravel the important roles of GhHD-1A  in regulating trichome initiation in cotton, but also provides a reference for exploring the different forms of trichome development in plants.
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2. Effects of Polysaccharides from Pulsatilla Decoction on the Microvascular Endothelial Glycocalyx
ZHANG Tao, WU Shuang, SUN Xiong, DUAN Hui-qin , MU Xiang
Journal of Integrative Agriculture    2014, 13 (11): 2558-2561.   DOI: 10.1016/S2095-3119(14)60896-0
摘要1358)      PDF    收藏
Pulsatilla decoction is a famous traditional Chinese herbal formula for clearing heat and treating dysentery of animals or human. To elucidate its mechanism, many active components have been studied, however, the roles of its polysaccharides still remain unclear. This study aimed to explore effects of polysaccharides from Pulsatilla decoction (PPD) on the microvascular endothelial glycocalyx (eGC). The polysaccharides were extracted from PPD by water extraction and alcohol precipitation method. Mice were administered with PPD for 4 wk, and were then anesthetized with ether inhalation and were fixed by cardiac perfusion with gradient concentration alcian blue solution. The jejunum was sampled and jejunal mucosa was prepared for ultrathin sections by routine method and was analyzed by transmission electron microscope. The results indicated that the eGC was observed as a strong electron-dense smooth linear margin or nonuniform conglomerates coating cell membranes, and PPD significantly increased its thickness from (21.85±1.87) to (28.71±3.61) nm and improved its integrity. This study suggested that PPD may express their biological activities and protect against pathogenic factor damages by influencing the eGC.
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