欢迎访问作物学报,今天是

作物学报 ›› 2016, Vol. 42 ›› Issue (10): 1516-1529.doi: 10.3724/SP.J.1006.2016.01516

• 耕作栽培·生理生化 • 上一篇    下一篇

不同穗型超级稻品种籽粒灌浆特性

魏颖娟,赵杨,邹应斌*   

  1. 湖南农业大学农学院, 湖南长沙 410128
  • 收稿日期:2016-02-15 修回日期:2016-06-06 出版日期:2016-10-12 网络出版日期:2016-06-16
  • 通讯作者: 邹应斌, E-mail: ybzou123@126.com, Tel: 0731-84618758
  • 基金资助:

    本研究由国家现代农业产业技术体系建设专项子课题水稻栽培与土壤岗位科学家项目(CARS-01-34)和湖南农业大学研究生科研创新项目(CX2014B296)资助。

Grain-filling Characteristics in Super Rice with Different Panicle Types

WEI Ying-Juan,ZHAO Yang,ZOU Ying-Bin*   

  1. Agronomy College of Hunan Agricultural University, Changsha 410128, China?
  • Received:2016-02-15 Revised:2016-06-06 Published:2016-10-12 Published online:2016-06-16
  • Contact: 邹应斌, E-mail: ybzou123@126.com, Tel: 0731-84618758
  • Supported by:

    This study was supported by the China Agriculture Research System(CARS-01-34) and the Scientific Innovation Program for Graduate Students of Hunan Agriculture University.

摘要:

为探明不同穗粒型超级稻产量构成特点、籽粒灌浆特性及其与后期生理指标的关系。以不同生育期品种准两优527、两优培九、Y两优1号、玉香油占、黄花占为试验材料,在大田栽培条件下分期播种以确保不同生育期品种在相似的温光条件下灌浆结实。结果表明,不同播期平均产量及其构成因子的品种间差异显著,以两优培九产量最高(9.47 t hm-2),玉香油占产量最低(8.39 t hm-2)。依据每穗粒数和千粒重系统聚类分析,可将品种分为大粒型(准两优527)、中粒型(两优培九、Y两优1号)和小粒型(玉香油占、黄花占)。籽粒灌浆强度及持续时间的品种间差异明显。其中,大粒型品种籽粒灌浆起步快、强度大、峰值持续时间短,上、中、下部枝梗籽粒均为一段式灌浆;中粒型品种籽粒灌浆起步快、强度较小、峰值持续时间长,其上部枝梗籽粒为一段式灌浆,中、下部枝梗籽粒为两段式灌浆,高峰值分别在抽穗后12~18 d和24~30 d;小粒型品种籽粒灌浆起步慢、强度小、峰值持续时间长,其上、中部枝梗籽粒为一段式灌浆,下部枝梗籽粒为两段式灌浆。平均籽粒灌浆速率与品种的穗粒类型密切相关,其中,大粒型品种为0.68 mg d-1,中粒型品种为0.48~0.51 mg d-1,小粒型品种为0.41~0.47 mg d-1。籽粒灌浆强度及持续时间与后期剑叶、根系生理指标有关,籽粒灌浆启动后,叶绿素含量、叶绿素a/b值、类胡萝卜素含量逐渐降低,剑叶可溶性糖含量、MDA含量逐渐上升,POD活性、CAT活性及根系活力先后出现2次升降过程。可见,不同穗粒型超级稻品种产量构成及籽粒灌浆特点的差异明显,籽粒灌浆强度及持续时间与品种的穗粒型及枝梗着生的部位有关,也与后期剑叶及根系衰老生理指标的变化趋势一致。

关键词: 超级稻, 籽粒灌浆, 产量, 生理指标

Abstract:

The objective of this study was to ascertain the characteristics of the grain-filling and physiological indexes after heading and the yield components of super rice with different panicle-grain types. An experiment with different sowing date was conducted using different growth duration varieties (Zhunliangyou 527, Liangyoupeijiu, Y-liangyou 1, Yuxiangyouzhan, and Huanghuazhan) under the field conditions to ensure the grain filling was under the similar temperature and solar radiation conditions. The grain yield and its components averaged in three sowing treatments displayed significant difference among tested varieties, of which the highest yield reached 9.47 t ha-1 for Liangyoupeijiu and the lowest was 8.39 t ha-1 for Yuxiangyouzhan. According to the hierarchical cluster analysis based on the grain number per panicle and 1000-grain weight, tested varieties were divided into the big grain type (Zhunliangyou 527), the medium grain type (Liangyoupeijiu and Y-liangyou 1), and the small grain type (Yuxiangyouzhan and Huanghuazhan). There were obvious differences intensity and peak duration of grain filling among the tested varieties. The big grain variety showed quick grain growth at the beginning, high intensity and short peak duration for grain filling during the middle-late periods, being one step filling in the upper, middle and lower branch grains; the medium grain variety showed quicker grain growth at the beginning, smaller intensity and longer peak duration for grain filling during the middle-late periods, with two filling peaks from 12 d to 18 d and from 24 d to 30 d after heading, respectively; the small grain variety showed slow grain growth at the beginning, smaller intensity and shorter peak duration for grain filling during the middle-late periods, which was one step filling in the upper or middle branch grains and two step filling in the lower branch grains. The average grain filling rate closely related to the panicle-grain type of varieties, was 0.68 mg d-1 for big grain variety, 0.48–0.51 mg d-1 for medium varieties, and 0.41–0.47 mg d-1 for small grain varieties. The intensity and duration of the grain-filling also associated with the changes of physiological indexes of flag leaf and roots after heading. At the beginning of the grain-filling, chlorophyll content, chlorophyll a/b ratio, carotenoids content gradually declined, leaf soluble sugar content, MDA content gradually increased, POD and CAT activities and root activity successively underwent two rise and fall processes. In conclusion, different panicle-grain types super rice have significantly different characteristics of yield components and grain filling. The intensity and the duration of grain-filling depend upon the panicle-grain type of varieties and the branch and grain positions inserted on the panicle, with the same tendency of physiological indexes variation in flag leaf and roots.

Key words: Super rice, Grain filling, Yield, Physiological index

[1]Mohapatra P K, Patel R, Sahu S K. Time of flowering affects grain quality and spikelet partitioning within the rice panicle. Aust J Plant Physiol, 1993, 20: 231–242
[2]王志琴, 杨建昌, 朱庆森, 张祖建, 郎有忠, 王学明. 亚种间杂交稻籽粒充实不良的原因探讨. 作物学报, 1998, 24: 782–787
Wang Z Q, Yang J C, Zhu Q S, Zhang Z J, Lang Y Z, Wang X M. Reasons for poor grain plumpness in intersubspecific hybrid rice. Acta Agron Sin, 1998, 24: 782–787 (in Chinese with English abstract)
[3]Yang J C, Peng S B, Visperas R M, Sanico A L, Zhu Q S, Gu S L. Grain filling pattern and cytokinin content in the grains and roots of rice plants. Plant Growth Regul, 2000, 30: 261–270
[4]Peng T, Lü Q, Zhao Y F, Sun H Z, Han Y C, Du Y X, Zhang J, Li J Z, Wang L L, Zhao Q Z. Superior grains determined by grain weight are not fully correlated with the flowering order in rice. J Integr Agric, 2015, 14: 847–855
[5]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: 182–193
Zhu Q S, Cao X Z, Luo Y Q. Growth analysis on the process of grain filling in rice. Acta Agron Sin, 1988, 14: 182–193 (in Chinese with Eng-lish abstract)
[6]Ma G H. Studies on the theory of two-step-filling of Indica rice cultivars(Oryza sativa). Chin J Rice Sci, 1996, 10: 153–158
[7]黄农荣, 钟旭华, 王丰, 郑海波. 超级杂交稻结实期根系活力与籽粒灌浆特性研究. 中国农业科学, 2006, 39: 1772–1779 
Huang N R, Zhong X H, Wang F, Zheng H B. Root vigor and grain-filling characteristics in super hybrid rice. Sci Agric Sin, 2006, 39: 1772–1779 (in Chinese with English abstract)
[8]程旺大, 张国平, 姚海根, 吴伟, 王润屹. 密穗型水稻品种的籽粒灌浆特性研究. 作物学报, 2003, 29: 841–846
Cheng W D, Zhang G P, Yao H G, Wu W, Wang R Q. Studies on the grain filling properties of compact panicle type of rice. Acta Agron Sin, 2003, 29: 841–846 (in Chinese with English abstract)
[9]王嘉宇, 范淑秀, 徐正进, 陈温福. 几个不同穗型水稻品种籽粒灌浆特性的研究. 作物学报, 2007, 33: 1366–1371
Wang J Y, Fan S X, Xu Z J, Chen W F. Filling properties of grains on different positions in a panicle of rice with different panicle types. Acta Agron Sin, 2007, 33: 1366–1371 (in Chinese with English abstract)
[10]薛菁芳, 陈书强, 杜晓东, 潘国君, 王玉成. 黑龙江省两种不同穗型水稻品种的子粒灌浆特性. 湖北农业科学, 2014, 53: 2736–2742
Xue J F, Chen S Q, Du X D, Pan G J, Wang Y C. Grain-filling characteristics of two different panicle rice varieties in Heilongjiang Province. Hubei Agric Sci, 2014, 53: 2736–2742 (in Chinese with English abstract)
[11]杨建昌, 苏宝林, 王志琴, 郎有忠, 朱庆森. 亚种间杂交稻籽粒灌浆特性及其生理的研究. 中国农业科学, 1998, 31: 8–15
Yang J C, Su B L, Wang Z Q, Lang Y Z, Zhu Q S. Characteristics and physiology of grain-filling in intersubspecific hybrid rice. Sci Agric Sin, 1998, 31: 8–15 (in Chinese with English abstract)
[12]谢光辉, 杨建昌, 王志琴, 朱庆森. 水稻籽粒灌浆特性及其与籽粒生理活性的关系. 作物学报, 2001, 27: 557–565
Xie G H, Yang J C, Wang Z Q, Zhu Q S. Grain filling characteristics of rice and their relationships to physiological activities of grains. Acta Agron Sin, 2001, 27: 557–565 (in Chinese with English abstract)
[13]黄升谋, 邹应斌. 水稻强弱势籽粒核酸和蛋白质代谢差异. 中国水稻科学, 2004, 18: 374–376
Huang S M, Zou Y B. Difference of nucleic acid and protein metabolism in superior and inferior grains of rice. Chin J Rice Sci, 2004, 18: 374–376 (in Chinese with English abstract)
[14]Yang J C, Zhang J H, Wang Z Q, Liu K, Wang P. Post-anthesis development of inferior and superior spikelets in rice in relation to abscisic acid and ethylene. J Exp Bot, 2006, 57: 149–160
[15]Zhang H, Tan G, Yang L, Yang J, Zhang J, Zhao B. Hormones in the grains and roots in relation to post-anthesis development of inferior and superior spikelets in japonica/indica hybrid rice. Plant Physiol Biochem, 2009, 47: 195–204
[16]王强, 张其德, 卢从明, 匡廷云, 李成荃. 超高产杂交稻不同生育期的光合色素含量、净光合速率和水分利用效率. 植物生态学报, 2002, 26: 647–651
Wang Q, Zhang Q D, Lu C M, Kuang T Y, Li C Q. Pigments content net photosynthesis rate and water use efficiency of two super high-yield rice hybrids at different developmental stages. Acta Phytoecol Sin, 2002, 26: 647–651 (in Chinese with English abstract)
[17]陆兴娜, 胡运高, 鄢圣敏, 胥伟秋, 申永超. 杂交水稻灌浆后剑叶光合特性比较研究. 广东农业科学, 2014, (3): 9–12
Lu X N, Hu Y G, Yan S M, Xu W Q, Shen Y C. Research on photosynthetic characteristics of flag leaves in hybrid rice during grain filling. Guangdong Agric Sci, 2014, (3): 9–12 (in Chinese with English abstract)
[18]庄文锋, 杨文月, 杨猛, 徐正进. 不同穗型水稻剑叶光合特性及叶绿素荧光参数的研究. 中国农学通报, 2014, 30(9): 35–42
Zhuang W F, Yang W Y, Yang M, Xu Z J. Study on photosynthetic characteristics and chlorophyll fluorescence parameters of flag leaf of rice with different panicle type. Chin Agric Sci Bull, 2014, 30(9): 35–42 (in Chinese with English abstract)
[19]梁建生, 曹显祖. 杂交水稻叶片的若干生理指标与根系伤流强度关系. 江苏农学院学报, 1993, 14(4): 25–30
Liang J S, Cao X Z. Studies on the relationship between several physiological characteristics of leaf and bleeding rate of roots hybrid rice(O. sativa L.). J Jiangsu Agric Coll, 1993, 14(4): 25–30 (in Chinese with English abstract)
[20]沈波, 王熹. 籼粳亚种间杂交稻根系伤流强度的变化规律及其与叶片生理状况的相互关系. 中国水稻科学, 2000, 14(2): 59–61
Shen B, Wang X. Changes of root exudate of Indica-Japonica hybrid rice and its relation of leaf physiological traits. Chin J Rice Sci, 2000, 14(2): 59–61 (in Chinese with English abstract)
[21]蔡永萍, 杨其光, 黄义德. 水稻水作与旱作对抽穗后剑叶光合特性, 衰老及根系活性的影响. 中国水稻科学, 2000, 14: 219–224
Cai, Y P, Yang Q G, Huang Y D. Effect of rice cultivated under paddy and upland condition on photosynthesis and senescence of flag leaf and activity of root system after heading. Chin J Rice Sci, 2000, 14: 219–224 (in Chinese with English abstract)
[22]王彦荣, 华泽田, 陈温福, 代贵金, 郝宪彬, 王岩, 张忠旭, 隋国民. 粳稻根系与叶片早衰的关系及其对籽粒灌浆的影响. 作物学报, 2003, 29: 892–898
Wang Y R, Hua Z T, Chen W F, Dai G J, Hao X B, Wang Y, Zhang Z X, Sui G M. Relation between root and leaf senescence are their effects on grain filling in Japonica rice. Acta Agron Sin, 2003, 29: 892–898 (in Chinese with English abstract)
[23]郭连安, 胡运高, 杨国涛, 王蕾. 不同杂交水稻品种根系生理特性差异. 浙江农业学报, 2014, 26: 1171–1175
Guo L A, Hu Y G, Yang G T, Wang L. Differences of root physiological characteristics within hybrid rice varieties. Acta Agric Zhejiangensis, 2014, 26: 1171–1175 (in Chinese with English abstract)
[24]李杰, 张洪程, 龚金龙, 常勇, 戴其根, 霍中洋, 许轲, 魏海燕, 高辉. 不同种植方式对超级稻籽粒灌浆特性的影响. 作物学报, 2011, 37: 1631–1641
Li J, Zhang H C, Gong J L, Chang Y, Dai Q G, Huo Z Y, Xu K, Wei H Y, Gao H. Influence of planting methods on grain-filling properties of super rice. Acta Agron Sin, 2011, 37: 1631–1641 (in Chinese with English abstract)
[25]韦还和, 孟天瑶, 李超, 张洪程, 史天宇, 马荣荣, 王晓燕, 杨筠文, 戴其根, 霍中洋, 许轲, 魏海燕, 郭保卫. 籼粳交超级稻甬优538的穗部特征及籽粒灌浆特性. 作物学报, 2015, 41: 1858–1869 
Wei H H, Meng T Y, Li C, Zhang H C, Shi T Y, Ma R R, Wang X Y, Yang J W, Dai Q G, Huo Z Y, Xu K, Wei H Y, Guo B W. Panicle traits and grain-filling characteristics of Japonica/Indica hybrid super rice Yongyou 538. Acta Agron Sin, 2015, 41: 1858–1869 (in Chinese with English abstract)
[26]Jiang Q, Du Y L, Tian X Y, Wang Q S, Xiong R H, Xu G H, Yan C, Ding Y F. Effect of panicle nitrogen on grain filling characteristics of high-yielding rice cultivars. Eur J Agron, 2016, 74: 185–192
[27]Fu J, Huang Z H, Wang Z Q, Yang J C, Zhang J H. Pre-anthesis on-structural carbohydrate reserve in the stem enhances the sink strength of in-ferior spikelets during grain filling of rice. Field Crops Res, 2011, 123: 170–182
[28]董明辉, 陈培峰, 顾俊荣, 乔中英, 黄萌, 朱赟德, 赵步洪. 麦秸还田和氮肥运筹对超级杂交稻茎鞘物质运转与籽粒灌浆特性的影响. 作物学报, 2013, 39: 673–681
Dong M H, Chen P F, Gu J R, Qiao Z Y, Huang M, Zhu B D, Zhao B H. Effects of wheat straw-residue applied to field and nitrogen manage-ment on photosynthate transportation of stem and sheath and grain-filling characteristics in super hybrid rice. Acta Agron Sin, 2013, 39: 673–681 (in Chinese with English abstract)
[29]萧浪涛, 王三根. 植物生理学实验技术. 北京: 中国农业出版社, 2005. pp 67–118
Xiao L T, Wang S G. Plant Physiology Experiment Technology. Beijing: China Agriculture Press, 2005. pp 67–118 (in Chinese)
[30]段俊, 梁承邺, 黄毓文, 陈宝源, 罗廉源. 不同类型水稻品种组合籽粒灌浆特性及库源关系的比较研究. 中国农业科学, 1996, 29(3): 66–73
Duan J, Liang C Y, Huang Y W, Chen B Y, Luo L Y. Comparative studies on the grain-filling characteristics and relationship between source and sink among various types of rice. Sci Agric Sin, 1996, 29(3): 66–73 (in Chinese with English abstract)
[31]李旭毅, 池忠志, 姜心禄, 郑家国. 成都平原两熟区籼粳稻品种籽粒灌浆特性. 中国农业科学, 2012, 45: 3256–3264
Li X Y, Chi Z Z, Jiang X L, Zheng J G. Analysis on grain filling characteristics of indica and japonica rice in rapeseed (wheat)–rice planting area in Chengdu basin. Sci Agric Sin, 2012, 45: 3256–3264 (in Chinese with English abstract)
[32]王建林, 徐正进, 马殿荣. 北方杂交稻与常规稻籽粒灌浆特性的比较. 中国水稻科学, 2004, 18: 425–430
Wang J L, Xu Z J, Ma D R. Comparison on grain filling characters between hybrid and conventional rice in northern China. Chin J Rice Sci, 2004, 18: 425–430 (in Chinese with English abstract)
[33]姜元华, 张洪程, 赵可, 许俊伟, 韦还和, 龙厚元, 王文婷, 戴其根, 霍中洋, 许轲, 魏海燕, 郭保卫. 长江下游地区不同类型水稻品种产量及其构成因素特征的研究. 中国水稻科学, 2014, 28: 621–631
Jiang Y H, Zhang H C, Zhao K, Xu J W, Wei H H, Long H Y, Wang W T, Dai Q G, Huo Z Y, Xu K, Wei H Y, Guo B W. Difference in yield and its components characteristics of different type rice cultivars in the lower reaches of the Yangtze river. Chin J Rice Sci, 2014, 28: 621–631 (in Chinese with English abstract)
[34]殷春渊, 王书玉, 刘贺梅, 薛应征, 张栩, 王和乐, 孙建权, 胡秀明, 李习军. 氮肥施用量对超级粳稻新稻18号强弱势籽粒灌浆和稻米品质的影响. 中国水稻科学, 2013, 27: 503–510
Yin C Y, Wang S Y, Liu H M, Xue Y Z, Zhang X, Wang H L, Sun J Q, Hu X M, Li X J. Effects of nitrogen fertilizer application on grain filling characteristics and rice quality of superior and inferior grain in super japonica rice Xindao 18. Chin J Rice Sci, 2013, 27: 503–510 (in Chinese with English abstract)
[35]张强, 李自超, 傅秀林, 吴长明, 金京花. 不同株穗型水稻超高产品种叶绿素含量变化规律及籽粒灌浆动态研究. 作物学报, 2005, 31: 1198–1206
Zhang Q, Li Z C, Fu X L, Wu C M, Jin J H. Changes of chlorophyll content & grain filling characteristics of the super high-yielding rice culti-vars with different plant and panicle types. Acta Agron Sin, 2005, 31: 1198–1206 (in Chinese with English abstract)
[36]杨建昌. 水稻弱势粒灌浆机理与调控途径. 作物学报, 2010, 36: 2011−2019
Yang J C. Mechanism and regulation in the filling of inferior spikelets of rice. Acta Agron Sin, 2010, 36: 2011–2019 (in Chinese with English abstract)
[37]Yang W H, Peng S B, Maribel L. Sese D, Laza R C, Visperas R M. Grain filling duration, a crucial determinant of genotypic variation of grain yield in field-grown tropical irrigated rice. Field Crops Res, 2008, 105: 221–227
[38]Yoshinaga S, Takai T, Arai-Sanoh Y, Ishimaru T, Kondo M. Varietal differences in sink production and grain-filling ability in recently developed high-yielding rice (Oryza sativa L.) varieties in Japan. Field Crops Res, 2013, 150: 74–82

[1] 胡川, 赵凯男, 黄修利, 吴金芝, 任开明, 王贺正, 付国占, 黄明, 李友军. 一次灌溉下耕作方式和氮肥用量对旱地小麦产量和品质的影响[J]. 作物学报, 2026, 52(6): 1830-1846.
[2] 马胜乾, 王志平, 陈浩天, 窦淑贤, 张燕, 邓艾兴, 张卫建, 原向阳, 宋振伟. 秸秆还田下耕作方式与氮肥施用量对东北玉米产量及土壤团聚体的影响[J]. 作物学报, 2026, 52(6): 1802-1816.
[3] 张思思, 赵向辉, 周洋, 姚云凤, 朱荣昱, 董元杰, 胡国庆, 徐通, 刘兆新. 冬闲期翻耕和绿肥还田对连作花生田土壤理化性质和产量的影响[J]. 作物学报, 2026, 52(5): 1472-1486.
[4] 张宁宁, 滕雨菲, 任娜娜, 魏兴卓, 闫书豪, 樊可心, 王永宏, 陈文康, 张兴华, 朱万超, 徐淑兔, 薛吉全. 201份玉米自交系抗旱表型评价及可塑性分析[J]. 作物学报, 2026, 52(5): 1309-1325.
[5] 张鸿蓉, 王菲儿, 李盼, 仇海龙, 朱静, 赵连豪, 南运有, 何蔚, 樊志龙, 胡发龙, 柴强, 殷文. 减量20%灌水与25%有机肥替代化肥提高青贮玉米产量的光合特性[J]. 作物学报, 2026, 52(5): 1487-1500.
[6] 王宇诚, 张露, 刘阿康, 黄见良, 彭少兵, 袁珅. 基于产量差的作物大面积单产提升策略与展望[J]. 作物学报, 2026, 52(5): 1279-1290.
[7] 赵佳雪, 周龙昊, 郭岂源, 尚伦霄, 王涵, 刘志涛, 陈曦, 张晓佩, 宋宪亮, 毛丽丽. 长期秸秆还田与深松通过改善土壤环境与棉花光合特性提高滨海盐碱地棉花产量[J]. 作物学报, 2026, 52(5): 1548-1560.
[8] 郭星宇, 胡丹, 林苏期, 王梦凯, 谭文峰, 黄传琴. 生物炭配施化肥提高玉米‖大豆下玉米产量和土壤生态系统多功能性[J]. 作物学报, 2026, 52(5): 1536-1547.
[9] 张振, 冯连杰, 石玉, 于振文, 张永丽. 节水补灌下不同穗型小麦产量形成差异研究[J]. 作物学报, 2026, 52(5): 1522-1535.
[10] 闫安, 蒋昆炜, 王蓉圆, 田林, 张璐, 王韵, 徐建龙. 水稻剑叶小维管束数基因SVN7的鉴定与克隆[J]. 作物学报, 2026, 52(5): 1364-1372.
[11] 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.
[12] 王壮壮, 武紫君, 张永新, 张芯源, 袁丽雪, 陈如雪, 刘世举, 段剑钊, 冯伟, 王同朝, 王永华. 豫东南黏壤潮土区水氮优化协同提高冬小麦产量和氮素利用效率[J]. 作物学报, 2026, 52(5): 1501-1521.
[13] 蔡宏玮, 于爱忠, 姜科强, 王鹏飞, 王玉珑, 霍建喆, 庞小能, 尹波, 尚永盼. 干旱灌区有机肥替代部分化肥促进甜玉米产量提升的关键机制[J]. 作物学报, 2026, 52(4): 1166-1180.
[14] 崔雪梅, 柳妍娣, 刘景辉, 米俊珍, 武俊英, 赵宝平. 不同基因型燕麦强弱势粒生理特性与产量关系研究[J]. 作物学报, 2026, 52(4): 1220-1235.
[15] 杨锐, 陈敬东, 黄郢, 张学昆, 周登文, 刘清云, 徐劲松, 谢伶俐, 许本波. 长江下游冬油菜区应对气候变化的育种和栽培策略研究[J]. 作物学报, 2026, 52(4): 1153-1165.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!