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Ultrastructural studies of seed coat and cotyledon during rapeseed maturation 被引量:1
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作者 CAO Jian-bo HE Li-min +4 位作者 Chinedu Charles NWAFOR QIN Li-hong ZHANG Chun-yu SONG Yan-tun HAO Rong 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第5期1239-1249,共11页
Brassica napus L.(B.napus)is an important oil crop worldwide and it rapidly accumulates oil at late stage of seed maturation.However,little is known about the cellular mechanism of oil accumulation and seed color chan... Brassica napus L.(B.napus)is an important oil crop worldwide and it rapidly accumulates oil at late stage of seed maturation.However,little is known about the cellular mechanism of oil accumulation and seed color changes during the late stage of rapeseed development.Here,we analyzed the ultrastructure of seed coat,aleurone and cotyledon in embryos of B.napus from 25 to 70 days after flowering(DAF).The pigments,which were deposited on the cell wall of palisade cells in seed coat,determined dark black color of rapeseed.The chloroplasts degenerated into non-photosynthetic plastids which caused the green cotyledon to turn into yellow.The chloroplasts in aleurone and cotyledon cells respectively degenerated into remnants without inner and outer envelope membranes and ecoplasts with intact inner and outer envelope membranes.From 40 to 70 DAF,there were degraded chloroplasts without thylakoid,oil bodies contacting with plastids or protein bodies,big starch deposits of chloroplasts degrading into small particles then disappearing,and small endoplasmic reticulum(ER)in aleurone and cotyledon cells.Additionally,there were decreases of chlorophyll content and dramatic increases of oil content in rapeseed.These results suggested that the rapid oil accumulation was independent on the NADPH synthesized by photosynthesis of chloroplasts and probably utilized other sources of reductant,such as the oxidative pentose phosphate pathway during the late stage of rapeseed development.The triacylglycerol assembly presumably utilizes the enzymes in the plastid,cytosol or oil body of cotyledon and aleurone cells. 展开更多
关键词 RAPESEED seed coat plastid development oil synthesis ULTRASTRUCTURE
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Unravelling transcriptome changes between two distinct maize inbred lines using RNA-seq
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作者 ZHOU Yu-qian WANG Qin-yang +6 位作者 ZHAO Hai-liang GONG Dian-ming SUN Chuan-long REN Xue-mei LIU Zhong-xiang HE Hai-jun QIU Fa-zhan 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2018年第7期1574-1584,共11页
Seed size play a significant role in maize yield production. Two maize inbred lines with distinct seed size and weight, V671(a large-seed inbred line) and Mc(a small-seed inbred line), were investigated by RNA-seq... Seed size play a significant role in maize yield production. Two maize inbred lines with distinct seed size and weight, V671(a large-seed inbred line) and Mc(a small-seed inbred line), were investigated by RNA-seq at 14 days after pollination(DAP), when maize endosperm undergoes an active transition from mitosis to storage accumulation. RNA-seq expression data showed that the small-seed line Mc had a higher storage accumulation activity, whereas the large-seed kernel line V671 possessed a higher DNA synthesis activity. An investigation of the pattern of increasing kernel width at serial DAPs showed that V671 experienced an increased kernel width later than did Mc, but the rate and duration of increase were longer in V671. SDS-PAGE of the storage proteins and quantitative RT-PCR of cell cycle-related genes and indole-3-acetic(IAA) synthesis genes certified that the transition from mitosis to storage accumulation starts earlier in Mc. We hypothesized that the difference in the mitosis-to-storage accumulation transition accounts for the larger seed size in V671 vs. Mc. 展开更多
关键词 maize(Zea mays L.) kernel RNA-SEQ mitosis-storage accumulation transition ENDOSPERM
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