Acta Agron Sin ›› 2009, Vol. 35 ›› Issue (2): 334-340.
• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY • Previous Articles Next Articles
WEI Cun-Xu1,ZHANG Jun1,ZHOU Wei-Dong2,CHEN Yi-Fang2,XU Ru-Gen3
[1] Tang H, Watanabe K, Mitsunaga T. Structure and functionality of large, medium and small granule starches in normal and waxy barley endosperms. Carbohydrate Polymers, 2002, 49: 217–224 [2] Kumamaru T, Ogawa M, Satoh H, Okita T W. Protein body bio-genesis in cereal endosperms. In: Olsen O A ed.. Plant Cell Monogr (8): Endosperm. Heidelberg: Springer-Verlag Berlin, 2007. pp 141–158 [3] Wang J-M(汪军妹), Zhang G-P(张国平). Advance in studies on grain protein content in barley. Barley Sci (大麦科学), 1999, 10(3): 9–11 (in Chinese with English abstract) [4] Shewry P R, Franklin J, Parmar S, Smith S J, Miflin B J. The ef-fects of sulphur starvation on the amino acid and protein compo-sitions of barley grain. J Cereal Sci, 1983, 1: 21–31 [5] Wang Z(王忠), Gu Y-J(顾蕴洁), Li W-F(李卫芳), Lian X-M(练兴明), Chen G(陈刚). The study about development of barley endosperm. Sci Agric Sin (中国农业科学) , 1996, 29(6): 38–45 (in Chinese with English abstract) [6] Xi X-Y(席湘媛), Ye B-X(叶宝兴). Relationship between embryo and endosperm development and accumulation of storage re-serves in barley. Acta Bot Sin (植物学报), 1997, 39(10): 905–913 (in Chinese with English abstract) [7] Wang M(王萌), Zhou Z(周舟), Lan S-Y(蓝盛银), Xu Z-X(徐珍秀). The accumulation of starch and storage protein in starchy endosperm cells of different barleys. Sci Agric Sin (中国农业科学), 2004, 37(10): 1464–1467 (in Chinese with English abstract) [8] Miflin B J, Burgess S R, Shewry P R. The development of protein bodies in the storage tissues. J Exp Bot, 1981, 32: 199–219 [9] Mogelsvang S, Simpson D J. Changes in the levels of seven pro-tein involved in polypeptide folding and transport during en-dosperm development of two barley genotypes differing in stor-age protein localisation. Plant Mol Biol, 1998, 36: 541–552 [10] Galili G, Herman E M. Protein bodies: storage vacuoles in seeds. Adv Bot Res, 1997, 25: 113–140 [11] Richard G, Turner M P F, Napier J A, Shewry P R. Transport and deposition of cereal prolamins. Plant Physiol Biochem, 1996, 34: 237–243 [12] Wei C-X(韦存虚), Lan S-Y(蓝盛银), Xu Z-X(徐珍秀). Forma-tion of protein bodies in the developing endosperm cells of rice. Acta Agron Sin (作物学报), 2002, 28(5): 591–594 (in Chinese with English abstract) [13] Mu X-J(母锡金). Technology of thin section. In: Sun J-S(孙敬三), Qian Y-Q(钱迎倩). Methods for Plant Cell Biology (植物细胞学研究方法). Beijing: Science Press, 1987. pp 1–40 (in Chi-nese) [14] Dang J M, Copeland L. Studies of the fracture surface of rice grains using environmental scanning electron microscopy. J Sci Food Agric, 2004, 84: 707–713 [15] Bethke P C, Hillmer S, Jones R L. Isolation of intact protein stor-age vacuoles from barley aleurone. Plant Physiol, 1996, 110: 521–529 [16] Loussert C, Popineau Y, Mangavel C. Protein bodies ontogeny and localization of prolamin components in the developing en-dosperm of wheat caryopses. J Cereal Sci, 2008, 47: 445–456 [17] Yamagata H, Sugimoto T, Tanaka K, Kasai Z. Biosynthesis of storage proteins in developing rice seeds. Plant Physiol, 1982, 70: 1094–1100 [18] Lending C R, Larkins B A. Changes in the zein composition of protein bodies during maize endosperm development. Plant Cell, 1989, 1: 1011–1023 [19] Takahashi H, Saito Y, Kitagawa Y, Morita S, Masumura T, Ta-naka K. A novel vesicle derived directly from endoplasmic re-ticulum is involved in the transport of vacuolar storage proteins in rice endosperm. Plant Cell Physiol, 2005, 46: 245–249 [20] Levanony H, Rubin R, Altschuler Y, Galili G. Evidence for a novel route of wheat storage proteins to vacuoles. J Cell Biol, 1992, 119: 1117–1128 |
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