欢迎访问作物学报,今天是

作物学报 ›› 2014, Vol. 40 ›› Issue (02): 301-312.doi: 10.3724/SP.J.1006.2014.00301

• 耕作栽培·生理生化 • 上一篇    下一篇

外源ABA和6-BA对不同持绿型小麦籽粒灌浆进程及蛋白质含量影响

杨东清1,李玉玲2,倪英丽1,3,尹燕枰1,杨卫兵1,崔正勇1,张永太2,马仁元2,王振林1,*   

  1. 1山东农业大学农学院 / 作物生物学国家重点实验室,山东泰安 271018; 2齐河县农业局, 山东齐河 251100; 任城区农业局, 山东济宁 272000
  • 收稿日期:2013-06-04 修回日期:2013-09-06 出版日期:2014-02-12 网络出版日期:2013-11-14
  • 基金资助:

    本研究由国家公益性行业(农业)科研专项经费项目(201203100, 201203029),国家自然科学基金项目(31271661),国家重点基础研究发展计划(973计划)项目(2009CB118602),国家粮食丰产科技工程项目(2012BAD04B05)和山东省现代农业技术体系项目经费资助。

Effects of Exogenous ABA and 6-BA on Protein Content and Grain Filling Process in Different Types of Stay-Green Wheat

YANG Dong-Qing1,LI Yu-Ling2,NI Ying-Li1,3,YIN Yan-Ping1,YANG Wei-Bing1,CUI Zheng-Yong1,ZHANG Yong-Tai2,MA Ren-Yuan2,WANG Zhen-Lin1,*   

  1. 1 College of Agronomy, Shandong Agricultural University / State Key Laboratory of Crop Biology, Tai’an 271018, China; Agriculture Bureau of Qihe County of Shandong Province, Qihe 251100, China; Agriculture Bureau of Rencheng District of Shandong Province, Jining 272000, China
  • Received:2013-06-04 Revised:2013-09-06 Published:2014-02-12 Published online:2013-11-14

摘要:

本文旨在揭示持绿型小麦品种的灌浆特性和籽粒蛋白质含量对外源激素的响应,认识植物激素调控籽粒灌浆和蛋白质合成的作用机制。自盛花期开始,连续4 d喷施10 mg L-1脱落酸(ABA)6-苄基腺嘌呤(6-BA),持绿型品种汶农6号的灌浆期(t3)、活跃生长期(D)、平均灌浆速率(Gmean)、最大灌浆速率(Gmax)、千粒重(TGW)和产量(GY)均大于非持绿型济麦20,且强势粒的各项灌浆参数均大于弱势粒。喷施两种外源激素显著提高两品种的GmeanGmaxTGWGY,对t3D的影响存在粒位及品种效应。喷施ABA6-BA均显著提高花后35 d的籽粒蛋白质含量,显著提高汶农6号强、弱势粒的麦谷蛋白含量,但济麦20强、弱势粒的麦谷蛋白含量显著降低。喷施ABA后,汶农6号强势粒花后7~21 d的玉米素核苷(ZR)含量显著升高;喷施6-BA后,济麦20弱势粒花后14~35 dZR含量显著升高,而汶农6号强势粒7~21 d的赤霉素(GA3)含量显著降低,弱势粒花后7~28 dGA3含量显著提高。喷施外源ABA6-BA显著提高两品种强势粒花后7~21 d的生长素(IAA)ABA含量。ABA6-BA处理显著提高花后7~21 d谷氨酰胺合成酶(GS)活性。可见,喷施外源ABA6-BA使小麦内源激素水平变化,促进籽粒灌浆,增加粒重和产量,提高籽粒GS活性和蛋白质含量,改变蛋白质组分。

关键词: 持绿型小麦, 激素, 灌浆特性, Richard方程, 蛋白质含量, 谷氨酰胺合成酶

Abstract:

This study aimed to understand the grain filling process and protein biosynthesis in grain of stay-green wheat in response to exogenous hormones. At blooming stage, plants of Wennong 6 (stay-green cultivar) and Jimai 20 (control) were sprayed with 10 mg L-1 abscisic acid (ABA) and 6-benzyladenine (6-BA) for four days.Compared with Jimai 20, Wennong 6 had longer grain-filling duration (t3) and the active growth phase (D), higher mean grain-filling rate (Gmean) and maximum grain-filling rate (Gmax), larger thousand-grain weight (TGW), and greater grain yield (GY). All parameters for grain filling were higher in superior grain than in inferior grain. Gmean, Gmax, TGW, and GY were promoted by ABA or 6-BA treatment in both cultivars. However, the effects of exogenous hormones on t3 and D were interacted with grain position in a panicle and genotype. Exogenous ABA and 6-BA treatment obviously increased protein content at 35 days after anthesis (DAA). The glutenin contents in ABA-treated and 6-BA-treated Wennong 6 significantly increased at 35 DAA; however, those in Jimai 20 decreased at 35 DAA. Exogenous ABA increased endogenous zeatin (ZR) content from 7 DAA to 21 DAA. In Wennong 6, GA3 content in superior grain was significantly decreased from 7 DAA to 21 DAA by 6-BA treatment, however, its content in inferior grain was enhanced. In both cultivars, application of ABA and 6-BA resulted in significant increases of endogenous auxin (IAA) and ABA contents from 7 DAA to 21 DAA, along with significant enhancement of glutaminesynthetase (GS) activity.

Key words: Stay-green wheat, Hormones, Grain filling characteristics, Richard equation, Protein content, Glutamine synthetase

[1]刘晓冰, 李文雄. 春小麦籽粒灌浆过程中淀粉和蛋白质积累规律的初步研究. 作物学报, 1996, 22: 736–740



Liu X B, Li W X. Preliminary studies on the accumulation of grain starch and protein during grain filling in wheat. Acta Agron Sin, 1996, 22: 736–740 (in Chinese with English abstract)



[2]许智宏, 李家洋. 中国植物激素研究: 过去、现在和未来. 植物学通报, 2006, 23: 433–442



Xu Z H, Li J Y. Plant hormones research in China: past, present and future. Chin Bull Bot, 2006, 23: 433–442 (in Chinese with English abstract)



[3]樊高琼, 杨文珏, 任万军, 邵庆勤. 烯效唑干拌种对小麦叶片衰老期间碳氮代谢的效应. 麦类作物学报, 2004, 24(4): 88–91



Fan G Q, Yang W Y, Ren W J, Shao Q Q. Effects of S-3307 waterless-dressed seeds on carbon-nitrogen metabolism of wheat during leaf senescence. J Tritic Crops, 2004, 24(4): 88–91 (in Chinese with English abstract)



[4]王兆龙, 曹卫星. 细胞分裂素对植物基因表达的调节. 植物生理学通讯, 2000, 36: 82–88



Wang Z L, Cao W X. Regulation of plant gene expression by cytokinins. Plant Physiol Commun, 2000, 36: 82–88 (in Chinese with English abstract)



[5]樊高琼, 刘帆, 邵庆勤, 任万军, 杨文珏. 小麦蛋白质和淀粉含量与籽粒发育过程中内源激素含量的关系. 植物生理学通讯, 2007, 43(1): 36–40



Fan G Q, Liu F, Shao Q Q, Ren W J, Yang W Y. Relations among wheat (Triticum aestivum L.) protein, starch contents and endogenous hormone content during kernel development. Plant Physiol Commun, 2007, 43: 36–40 (in Chinese with English abstract)



[6]陈德华, 何钟佩, 徐立华, 周桂生, 吴云康. 高产棉花叶片内源激素与氮磷钾吸收积累的关系及其对棉铃增重机理的研究. 作物学报, 2000, 26: 659–665



Chen D H, He Z P, Xu L H Zhou G S, Wu Y K. Studies on the relation between endogenous hormone of leaf and accumulation of nitrogen, phosphorus and potassium of plant as well as the cause of boll weight raised in high yield cotton. Acta Agron Sin, 2000, 26: 659–665 (in Chinese with English abstract)



[7]张鑫, 翟瑞常, 郑殿峰, 冯乃杰, 祁倩倩. 植物生长调节剂对大豆根系氮代谢相关指标的影响. 大豆科学, 2010, 29: 433–436



Zhang X, Zhang R C, Zheng D F, Feng N J, Qi Q Q. Effects of plant growth regulators (PGRs) on nitrogen metabolism related indicators in soybean roots. Soybean Sci, 2010, 29: 433–436 (in Chinese with English abstract)



[8]张祥, 马爱丽, 房静, 肖健, 峦娜, 王永慧, 陈源, 陈德华. 赤霉酸和缩节胺对转Bt基因抗虫棉棉铃Bt毒蛋白表达. 棉花学报, 2010, 22: 150–156



Zhang X, Ma A L, Fang J, Xiao J, Luan N, Wang Y H, Chen Y, Chen D H. Effect of GA3 and DPC on Bt protein expression and boll nitrogen metabolism of Bt transgenic cotton. Cott Sci, 2010, 22: 150–156 (in Chinese with English abstract)



[9]崔志青, 贺德先, 蔡铁, 王成雨, 王广昌, 孟范玉, 韩占江, 李娜娜, 王振林. 喷施ABA 对小麦籽粒谷蛋白组分含量及GMP 粒度分布的影响. 中国农业科学, 2010, 43: 2595–2602



Cui Z Q, He D X, Cai T, Wang C Y, Wang G C, Meng F Y, Han Z J, Li N N, Wang Z L. Effects of spraying ABA on glutenin fraction content and GMP size distribution in wheat grain. Sci Agric Sin, 2010, 43: 2595–2602 (in Chinese with English abstract)



[10]黄瑞冬. 作物持绿性的遗传、生理基础及其应用前景. 沈阳农业大学学报, 2008, 39: 387–391



Huang R D. Genetics, physiological basis of crop stay green and its application prospects. J Shenyang Agric Univ, 2008, 39: 387–391 (in Chinese with English abstract)



[11]何萍, 金继运. 保绿型玉米的营养生理研究进展, 玉米科学, 2000, 8(4): 41–44



He P, Jin J Y. Advances in physiological basis of maize that stay-green. J Maize Sci, 2000, 8(4): 41–44 (in Chinese with English abstract)



[12]Howards Thomas, Catherine J.Howarth. Five ways to stay green. J Exp Bot, 2000, 51: 329–337



[13]Spano G, Di Fonzo N, Perrotta C, Platani C, Ronga G, Lawlor D W, Napier J A, Shewry P R. Physiological characterization of ‘stay green’ mutants in durum wheat. J Exp Bot, 2003, 54: 1415–1420



[14]罗培高, 任正隆, 吴先华, 张怀渝, 张怀琼, 冯娟. 延缓小麦衰老的结构和生物化学机制, 科学通报, 2006, 51: 2154–2460



Luo P G, Ren Z L, Wu X H, Zhang H Y, Zhang H Q, Feng J. The structure and physiological and biochemical mechanism of delaying senescence of wheat. Chin Sci Bull, 2006, 51: 2154–2460 (in Chinese with English abstract)



[15]李涛, 龚月桦, 吕金印, 刘普灵. 不同基因型小麦14 C-储备物在花后的转运与分配规律. 核农学报, 2010, 24: 149–153



Li T, Gong Y H, Lv J Y, Liu P L. Transporation and distribution of 14C-reserves on different geno type wheat varieties after anthesis. J Nucl Agric Sci, 2010, 24: 149–153 (in Chinese with English abstract)



[16]朱庆森, 曹显祖, 骆亦其. 水稻籽粒灌浆的生长分析, 作物学报, 1988, 14: 182–192



Zhu Q S, Cao X Z, Luo Y Q. Growth analysis on the process of grain filling in rice. Acta Agron Sin, 1988, 14: 182–192 (in Chinese with English abstract)



[17]何照范. 粮油品质及其分析技术. 北京: 农业出版社, 1985



He Z F. Analytical Techniques for Grain and Oil Quality. Beijing: Agriculture Press, 1985 (in Chinese)



[18]王平, 尹燕枰, 付国占, 郭营, 蔡瑞国, 梁太波, 耿庆辉, 邬云海, 王振林. 施磷对小麦旗叶氮代谢关键酶活性和子粒蛋白质含量的影响. 植物营养与肥料学报, 2009, 15: 24–31



Wang P, Yin Y P, Fu G Z, Guo Y, Cai R G, Liang T B, Geng Q H, Wu Y H, Wang Z L. Effect of phosphorus on activities of enzymes related to nitrogen metabolism in flag leaves and protein content of wheat grains. Plant Nutr Fert Sci, 2009, 15: 24–31 (in Chinese with English abstract)



[19]杨卫兵, 王振林, 尹燕枰, 李文阳, 李勇, 陈晓光, 王平, 陈二影, 郭俊祥, 蔡铁, 倪英丽. 外源ABA和GA对小麦籽粒内源激素含量及其灌浆进程的影响. 中国农业科学, 2011, 44: 2673–2682



Yang W B, Wang Z L, Yin Y P, Li W Y, Li Y, Chen X G, Wang P, Chen E Y, Guo J X, Cai T, Ni Y L. Effects of spraying exogenous ABA or GA on the endogenous hormones concentration and filling of wheat grains. Sci Agric Sin, 2011, 44: 2673–2682 (in Chinese with English abstract)



[20]李永攀, 罗培高, 任正隆. 小麦持绿性及其与产量关系研究. 西南农业学报, 2008, 21: 1221–1225



Li Y P, Luo P G, Ren Z L. Studies on the relation between the yield and trait of green-keeping wheat. Southwest China J Agric Sci, 2008, 21: 1221–1225 (in Chinese with English abstract)



[21]Luo P G, Zhang H Y, Shu K, Wu X H, Zhang H Q, Ren Z L. The physiological genetic effects of 1BL/1RS translocated chromosome in ‘‘stay green’’ wheat cultivar CN17. Can J Plant Sci, 2009, 89: 1–10



[22] 史瑞青, 谢惠玲, 李鹏坤, 张慧琴. 花后喷施外源物质对小麦激素含量及源库的调节效应. 河南农业大学报, 2006, 40: 122–126



Shi R Q, Xie H L, Li P K, Zhang H Q. Effects of spraying exterior substance after florescence on wheat hormone contents and source-sink modulation. J Henan Agric Univ, 2006, 40: 122–126 (in Chinese with English abstract)



[23]Wang F, Cheng F M, Zhang G P. The relationship between grain filling and hormone content as affected by genotype and source–sink relation. Plant Growth Regul, 2006, 49: 1–8



[24]Yang J C, Zhang J H. Grain filling of cereals under soil drying. New Phytol, 2006, 169: 223–236



[25]杨建昌, 王志琴, 朱庆森, 苏宝林. ABA与GA对水稻籽粒灌浆的调控. 作物学报, 1999, 25: 341–348



Yang J C, Wang Z Q, Zhu Q S, Su B L. Regulation of ABA and GA to the grain filling of rice. Acta Agron Sin, 1999, 25: 341–348 (in Chinese with English abstract)



[26]刘晓冰, 金剑, 王光华, S J Herbert. 调节大豆粒重的生理生态因素. 大豆科学, 2007, 26: 607–617



Liu X B, Jin J, Wang G H, Herbert S J. Regulation of soybean seed size by eco-physiological factors. Soybean Sci, 2007, 26: 607–617 (in Chinese with English abstract)



[27]Xie Z J, Jiang D, Dai T B, Jing Q, Cao W X. Effects of exogenous ABA and cytokinin on leaf photosynthesis and grain protein accumulation in wheat ears cultured in vitro. Plant Growth Regul, 2004, 44: 25–32



[28]宋松泉, 段永新, 傅家瑞. ABA对种子发育的调节. 种子, 1997, (5): 36–42



Song S Q, Duan Y X, Fu J R. Regulation of ABA on seed development. Seed, 1997, (5): 36–42 (in Chinese with English abstract)



[29]Finkelstein R R, Gibson S I. ABA and sugar interactions regulating development: cross-talkor voices in a crowd. Currt Opin Plant Biol, 2002, 5: 26–32



[30]李杉, 邢更妹, 崔凯荣, 王亚馥. 植物体细胞胚发生中ATP酶活性时空分布动态与内源激素的变化. 植物学通报, 2001, 18: 308–317



Li S, Xing G M, Cui K R, Wang Y F. ATPase activity and endogenous hormone changes during plant somatic embryogenesis. Chin Bull Bot, 2001, 18: 308–317 (in Chinese with English abstract)



[31]黄上志, 傅家瑞. 脱落酸对发育中花生胚萌发和贮藏蛋白质合成的影响. 植物生理学报, 1993, 19: 31–37



Huang S Z, Fu J R. Effect of abscisic acid on precocious germination and storage protein during culture of developing peanut embryos. Acta Phytophysiol Sin, 1993, 19: 31–37 (in Chinese with English abstract)



[32]Yang W B, Cai T, Ni Y L, Li Y, Guo J X, Peng D L, Yang D Q, Yin Y P, Wang Z L. Effects of exogenous abscisic acid and gibberellic acid on filling process and nitrogen metabolism characteristics in wheat grains. Aust J Crop Sci, 2013, 7: 58–65



[33]谢祝捷, 姜东, 曹卫星, 戴廷波, 荆奇. 花后干旱和渍水条件下生长调节物质对冬小麦光合特性和物质运转的影响. 作物学报, 2004, 30: 1047–1052



Xie Z J, Jiang D, Cao W X, Dai T B, Jing Q. Effects of plant growth regulation substances on photosynthetic characteristics and assimilate transportation in winter wheat under post-anthesis drought and waterlogging. Acta Agron Sin, 2004, 30: 1047–1052 (in Chinese with English abstract)



[34]Criado M V, Caputo C, Roberts I N, Castro M A, Barneix A J. Cytokinin-induced changes of nitrogen remobilization and chloroplast ultrastructurein wheat (Triticum aestivum). J Plant Physiol, 2009, 166: 1775–1785



[35]Ananieva K I, Ananiev E D. Effect of methyl ester of jasmonic acid and benzylaminopurine on growth and protein profile of excised cotyledons of Cucurvita pepo (Zucchini). Biol Plant, 1999, 42: 549–557



[36]高文川, 马猛, 王爱娜, 赵慧贤. 不同品质类型小麦籽粒麦谷蛋白亚基及谷蛋白聚合体形成和累积动态. 作物学报, 2010, 36: 1769–1776



Gao W C, Ma M, Wang A N, Zhao H X. Accumulation dynamics of glutenin suunits and glutenin polymer in wheat cultivars with different qualities during grain development. Acta Agron Sin, 2010, 36: 1769–1776 (in Chinese with English abstract)



[37]张敏, 戴廷波, 姜东, 荆奇, 曹卫星. 6-BA对小麦花后C/N物质运转和籽粒品质的影响. 南京农业大学学报, 2006, 29(4): 6–10



Zhang M, Dai T B, Jiang D, Jing Q, Cao W X. Effects of 6-BA on carbon and nitrogen assimilate translocation after anthesis and quality formation in wheat. J Nanjing Agric Univ, 2006, 29(4): 6–10 (in Chinese with English abstract)



[38]李文阳, 尹燕枰, 严素辉, 戴忠民, 梁太波, 王振林. 不同粒型小麦品种籽粒内源激素变化与籽粒灌浆特征的比较. 华北农学报, 2007, 22(1): 5–8



Li W Y, Yin Y P, Yan S H, Dai Z M, Liang T B, Wang Z L. Hormonal changes in relation to filling characters in developing grains of two wheat cultivars differing in grain size. Acta Agric Boreali-Sin, 2007, 22(1): 5–8 (in Chinese with English abstract)



[39]郑莎莎, 孙传范, 孙红春, 刘连涛, 赵金峰, 李存东. 不同外源激素对花铃期棉花主茎叶生理特性的影响. 中国农业科学, 2009, 42: 4383–4389



Zheng S S, Sun C F, Sun H C, Liu L T, Zhao J F, Li C D. Effects of different exogenous hormones on physiological characteristics of main stem leaves at flower and boll stage in cotton. Sci Agric Sin, 2009, 42: 4383–4389 (in Chinese with English abstract)



[40]Wilkinson S, Kudoyarova G R, Veselov D S, Arkhipova T N, Davies W J. Plant hormone interactions: innovative targets for crop breeding and management. J Exp Bot, 2012, 63: 3499–3509



[41]Cha K W, Lee Y J, Koh H J, Lee B M, NamY W, Paek N C. Isolation, characterization, and mapping of the stay green mutant in rice. Theor Appl Genet, 2002, 104: 526–532



[42]Yamaguchi S, Kamiya Y J. Gibberellin biosynthesis: its regulation by endogenous and environmental signals. Plant Cell Physiol, 2000, 41: 251–257



[43]Cutler A J, Krochko J E. Formation and breakdown of ABA. Trends Plant Sci, 1999, 4: 472–478



[44]Seo M, Koshiba T. Complex regulation of ABA biosynthesis in plants. Trends Plant Sci, 2002, 7: 41–48



[45]王忠. 植物生理学. 北京: 中国农业出版社, 2006. pp 282–283



Wang Z. Plant Physiology. Beijing: China Agriculture Press, 2006. pp 282–283 (in Chinese)



[46]李秀菊, 职明星, 鲁玉贞. 不同粒型小麦籽粒发育过程中细胞分裂素含量的变化. 麦类作物学报, 2005, 25(2): 42–45



Li X J, Zhi M X, Lu Y Z. Changes of cytokinins content during the wheat grain development of different grain sizes. J Triticeae Crops, 2005, 25(2): 42–45 (in Chinese with English abstract)



[47]王震宇, 张春荣, 李玲. 细胞分裂素结合蛋白的研究进展. 植物学通报, 2000, 17: 520–527



Wang Z Y, Zhang C R, Li L. Progress of studies on cytokinin-binding proteins. Chin Bull Bot, 2000, 17: 520–527 (in Chinese with English abstract)



[48]董明辉, 刘晓斌, 陆春泉, 赵步洪, 杨建昌. 外源ABA和GA对水稻不同粒位籽粒主要米质性状的影响. 作物学报, 2009, 35: 899–906



Dong M H, Liu X B, Lu C Q, Zhao B H, Yang J C. Effects of exogenous ABA and GA on the main quality characteristics of grains at different positions of panicle in rice. Acta Agron Sin, 2009, 35: 899–906 (in Chinese with English abstract)



[49]常二华, 王朋, 唐成, 刘立军, 王志琴, 杨建昌. 水稻根和籽粒细胞分裂素和脱落酸浓度与籽粒灌浆及蒸煮品质的关系. 作物学报, 2006, 32: 540–547



Chang E H, Wang P, Tang C, Liu L J, Wang Z Q, Yang J C. Concentrations of cytokinin and abscisic acid in roots and grains and Its relationship with grain filling and cooking quality of rice. Acta Agron Sin, 2006, 32: 540–547 (in Chinese with English abstract)



[50]Travaglia C, Reinoso H, Cohen A, Luna C, Tommasino E, Castillo C, Bottini R. Exogenous ABA increases yield in field-grown wheat with moderate water restriction. J Plant Growth Regul, 2010, 29: 366–374



[51]崔志青, 尹燕枰, 田奇卓, 王广昌, 孟范玉, 王平, 王振林. 喷施ABA对两个穗型不同小麦穗颈节伤流、穗部性状及产量的影响. 生态学报, 2011, 31: 1085–1092



Cui Z Q, Yin Y P, Tian Q Z, Wang G C, Meng F Y, Wang P, Wang Z L. Effects of Spraying ABA on bleeding intensity in neck-panicle node, spike traits and grain yields of two different panicle-type winter wheat. Acta Ecol Sin, 2011, 31: 1085–1092 (in Chinese with English abstract)



[52]赵步洪, 张洪熙, 朱庆森, 杨建昌. 两系杂交稻籽粒充实不良的成因及其与激素含量的关系. 中国农业科学, 2006, 36: 477–486



Zhao B H, Zhang H X, Zhu Q S, Yang J C. Causes of poor grain plumpness of two-line hybrids and their relationships to contents of hormones in the rice grain. Sci Agric Sin, 2006, 36: 477–486 (in Chinese with English abstract)

[1] 金昱何, 王雪菲, 徐张一娃, 缪怡宁, 蒋云杰, 伊莹, 缪德麟, 朱静仪, 钟一帆, 陈铭亨, 方芳, 刘鹏. 外源激素对低温胁迫下大豆叶片叶绿素荧光参数及抗氧化酶系统的影响[J]. 作物学报, 2026, 52(6): 1817-1829.
[2] 蔡兆琴, 何观咏, 何文, 阮丽霞, 梁振华, 李永珍, 李恒锐, 陈会鲜. 木薯分枝发育过程的动态转录组分析与关键基因发掘[J]. 作物学报, 2026, 52(5): 1430-1441.
[3] 刘昕萌, 任昊, 张继波, 张吉旺, 赵斌, 任佰朝, 刘鹏, 王洪章. 茉莉酸甲酯(MeJA)缓解高温影响玉米雌穗分化的生理机制[J]. 作物学报, 2026, 52(5): 1561-1572.
[4] 马亮, 马璐, 张舒钰, 章慧敏, 王仁明, 宋旭东, 张振良, 冒宇翔, 陆虎华, 陈国清, 郝德荣, 周广飞. 玉米苞叶数目转录组分析及候选基因鉴定[J]. 作物学报, 2026, 52(3): 790-801.
[5] 张宇, 刘芳, 蔡诚诚, 杨小华, 吉阿么石扎, 杨元军, 王西瑶. 溴乙烷与赤霉素协同处理破除马铃薯块茎休眠的机理初探[J]. 作物学报, 2026, 52(3): 825-838.
[6] 孔德真, 桑伟, 聂迎彬, 李伟, 徐红军, 李江博, 刘鹏鹏, 田笑明. 小麦AL型细胞质雄性不育系与同型保持系穗花发育时期代谢物变化比较研究[J]. 作物学报, 2025, 51(9): 2454-2466.
[7] 沈傲, 刘敏, 倪迪安, 刘炜. 谷子m6A甲基转移酶基因SiMTA1的启动子序列特征和基因表达模式分析[J]. 作物学报, 2025, 51(7): 1969-1978.
[8] 李福媛, 杨奕, 马继琼, 许明辉, 林良斌, 孙一丁. 水稻OsPUB4基因克隆、激素诱导表达分析与互作蛋白筛选[J]. 作物学报, 2025, 51(6): 1690-1700.
[9] 宋松泉, 唐翠芳, 程红焱, 王程亮, 袁良兵, 左胜. 谷类作物的胚乳发育及其对种子休眠与萌发的作用[J]. 作物学报, 2025, 51(5): 1133-1155.
[10] 赵喜娟, 张帆, 刘圣宣, 覃骏, 陈惠兰, 林原, 罗红兵, 刘易, 宋波涛, 胡新喜, 王恩爽. 4种马铃薯内源激素提取方法优化及其在块茎解除休眠过程中的含量分析[J]. 作物学报, 2025, 51(4): 1050-1060.
[11] 辛雨宁, 任昊, 王洪章, 梁明磊, 于涛, 刘鹏. 喷施6-苄氨基腺嘌呤(6-BA)对授粉后高温胁迫下夏玉米籽粒灌浆及产量的影响[J]. 作物学报, 2025, 51(2): 418-431.
[12] 张妍妍, 李迎, 刘栩辰, 黄超, 吕佳宁, 周海佳, 马守田, 秦安振, 高子乐, 吴光辉, 陈丹, 姬夏楠, 刘战东. 深松耕作条件下滴灌对冬小麦花后干物质积累及灌浆特性的影响[J]. 作物学报, 2025, 51(11): 3065-3079.
[13] 赵黎明, 段绍彪, 项洪涛, 郑殿峰, 冯乃杰, 沈雪峰. 干湿交替灌溉与植物生长调节剂对水稻光合特性及内源激素的影响[J]. 作物学报, 2025, 51(1): 174-188.
[14] 谢章书, 谢学方, 屠小菊, 刘爱玉, 董合忠, 周仲华. 植物激素对棉花蕾铃脱落的调控研究进展[J]. 作物学报, 2025, 51(1): 1-29.
[15] 祁稼民, 许春苗, 肖斌. 马铃薯TIFY基因家族的全基因组鉴定及表达分析[J]. 作物学报, 2024, 50(9): 2297-2309.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!