作物学报 ›› 2011, Vol. 37 ›› Issue (08): 1475-1484.doi: 10.3724/SP.J.1006.2011.01475
尹宝重1,陶哺1,张月辰2,*
YIN Bao-Zhong1,TAO Bu1,ZHANG Yue-Chen1*
摘要: 以中晚熟红小豆品种冀红小豆4号为材料, 于2006—2008年在河北农业大学植物标本园,设置自然光周期(CK)、12 h光周期处理,零叶龄(LF)~四叶龄幼苗5个处理,以CK作为对照,从对生真叶出土开始观测不同处理的生育进程、成花及生理指标,成熟时测定干物质积累、产量组分及小区产量。结果表明,短日照降低株高、茎粗并减少主茎节数,促进分枝形成,对较小叶龄植株作用明显;短日照诱导抑制植株各部位干物质的积累量,主要在真叶至第1复叶展平期间影响显著,其中对生物产量和经济产量理影响最大;短日照影响生育进程,二叶龄之前的影响较为明显,不利于产量的形成。短日诱导明显缩短生长前期,另外三叶龄短日照处理可显著提高百粒重;短日照明显增强超氧化物酶(SOD)与过氧化物酶(POD)活性,增加游离氨基酸(SAA)、可溶性蛋白(SPRO)、赤霉素(GA)、细胞分裂素(CTK)与脱落酸(ABA)含量,并在一定程度上提高GA/ABA。短日照诱导对不同叶龄红小豆生长、生理及产量所产生的影响,整体趋势是生长前期效应相对显著。
| [1]Gao X-L(高小丽), Sun J-M(孙健敏), Gao J-F(高金锋), Feng B-L(冯佰利), Chai Y(柴岩), Wang M(王孟). Comprehensive evaluation of fertility and stability of adzuki bean varieties in regional trials. J Northwest Sci-Tech Univ Agric For (Nat Sci Edn)(西北农林科技大学学报•自然科学版), 2004, 32(8):7–40 (in Chinese with English abstract) [2]Jiang L-Q(蒋陵秋), Jin W-L(金文林). Studies on the growth and development of adzuki bean (Vigna angulais Ohwi and Ohashi): VIII. The effect of short daylength control of adzuki bean. J Beijing Agric Coll (北京农学院学报), 1991, 6(1): 22–27 (in Chinese with English abstract) [3]Yin S-L(尹淑丽), Zhang Y-C(张月辰), Tao P-J(陶佩君), Deng X-P(邓小鹏), Yin B-Z(尹宝重). Effects of day-length at seedling stage on growth, development and yield of adzuki bean. Sci Agric Sin (中国农业科学), 2008, 41(8): 2286–2293 (in Chinese with English abstract) [4]Lin G-Y(林贵玉), Zheng C-S(郑成淑), Sun X-Z(孙宪芝), Wang W-L(王文莉). Effects of photoperiod on floral bud differentiation and contents of endogenous hormones in chrysanthemum. Shandong Agric Sci (山东农业科学), 2008, (1): 35–39 (in Chinese with English abstract) [5]Liu L(刘磊), Liu S-Q(刘世琦), Xu L(许莉), Du H-T(杜洪涛), Zhang Y-Q(张云起). Studies on the changes of nitrogen metabolism and peroxidase activity in onions during different photoperiod and verbalization. Acta Agric Boreali-Occid Sin (西北农业学报), 2005, 14(6): 90–95 (in Chinese with English abstract) [6]Cheng X-Q(程新奇). Effects of different leaf number on white jute responses to the photoperiod. J Changde Norm Univ (Nat Sci Edn) (常德师范学院学报•自然科学版), 2003, 15(2): 59–61 (in Chinese with English abstract) [7]Xu B(徐豹), Lu Q-H(路琴华). Comparative study on photoperiod-induction of wild (G. soja) and cultivated (G. max) soybeans. Soybean Sci (大豆科学), 1988, 7(4): 269–275 (in Chinese with English abstract) [8]McDaniel C N, King R W, Evans L T. Floral determination and in vitro floral differentiation in isolated shoot apices of Lolium temulentum L. Planta, 1991, 185: 9–16 [9]Khudairi J, Hammer K C. The relation sensitivity of xanthium leaves of different ages to photoperiodic induction. Plant Physiol, 1954, 29: 251–257 [10]Yin B-Z(尹宝重), Zhang Y-C(张月辰), Tao P-J(陶佩君), Yin S-L(尹淑丽), Deng X-P(邓小鹏), Guo C-J(郭程谨). Effects of the photoperiodic inducing on physiological and biochemical characteristics in different leaves ages of adzuki bean. Acta Agric Boreali-Sin (华北农学报), 2008, 23(2): 25–29 (in Chinese with English abstract) [11]Jiang X-M(姜雪梅), Tao P-J(陶佩君), Chai J(柴江), Wang Y-F(王艳锋), Dong W-X(董伟欣), Zhang Y-C(张月辰). Study on floret bud differentiation and setting percentage of adzuki bean. Acta Agric Boreali-Sin (华北农学报), 2008, 23(suppl-1): 144–149 (in Chinese with English abstract) [12]Mu S-J(牟善积), He M-H(何明华), Zhao G-F(赵国防). Adzuki Bean Cultivation (红小豆栽培). Tianjin: Tianjin Science and Technology Press, 1992. p 35 (in Chinese) [13]Bai B-Z(白宝璋), Jin Z-Z(靳占忠), Li C-D(李存东). Plant Physiology (植物生理学试验教程). Beijing: China Agriculture Press, 1996. pp 61–62 (in Chinese) [14]Zou Q(邹琦). Experiment Guidance of Plant Physiology (植物生理学实验指导). Beijing: China Agriculture Press, 2000. pp 72–795 (in Chinese) [15]Yang Y(杨). Research advances of molecular regulation of flowering in plants. Chin J Trop Agric (热带农业科学), 2004, 24(5): 73–75(in Chinese with English abstract) [16]Han T-F(韩天富), Wang J-L(王金陵). Studies on post-flowering photoperiodic responses in soybean. Acta Bot Sin (植物学报), 1995, 37(11): 863–869 (in Chinese with English abstract) [17]Han T-F(韩天富), Wang J-L(王金陵), Zou J-J(邹继军). The post-flowering responses of soybean to pre-flowering photoperiodic treatments. Soybean Sci (大豆科学), 1995, 14(4): 283–289 (in Chinese with English abstract) [18]Wang S-Q(王四青), Gao J-L(高聚林), Liu K-L(刘克礼), Zhang S(张胜). Study of flower pod formation and abscission in soybean. Inner Mongolia Agric Sci Technol (内蒙古农业科技), 2006, (2): 8–10 (in Chinese) [19]Lu Q-H(路琴华). A study on the relationship between the responsibility to photoperiod of soybean (G. max) leaf and soybean development. J Jilin Agric Sci (吉林农业科学), 1994, (4): 1–4 (in Chinese with English abstract) [20]Shanmugasundaram S. Variation in the photoperiodic response on several characters in soybean. Euphytica, 1979, 28: 495–507 [21]Zhang G-R(张桂茹). Photoperiodic effects on growth and development periods and agronomic characteristics in soybean. J Oil Crop (粮油作物学报), 1997, 19(4): 37–41 (in Chinese with English abstract) [22]Wen M-L(文明玲), Niu Y-Z(牛应泽), Liu X-J(刘小俊). Study on effects of photoperiod on sex differentiation and oxidase activities in cucumber. J Changjiang Veg (长江蔬菜), 2007, (4): 46–49 (in Chinese with English abstract) [23]Wang C-Z(王成章), Li J-H(李建华), Guo Y-X(郭玉霞), Fang L-Y(方丽云), Gao Y-G(高永革). Effect of photoperiod on SOD and POD activities in alfalfa varieties with different fall dormancy. Acta Agrest Sin (草地学报), 2007, 15(5): 407–411 (in Chinese with English abstract) [24]Yuan J(袁娟), Wu T-L(武天龙), Chen D(陈典). Effects of photoperiodic treatment on the endogenous hormones and dissociative amino acid of hyacinth bean leaves. J Hanghai Jiaotong Univ (Agric Sci)(上海交通大学学报•农业科学版), 2004, 22(3): 215–226 (in Chinese with English abstract) [25]Han T-F(韩天富), Ma F-M(马凤鸣), Wang J-L(王金陵), Wei S(魏湜). Photoperiodic effects on the amount and balance endogenous hormones in soybean leaves. Acta Agron Sin (植物学报), 1996, 22(6): 661–666 (in Chinese with English abstract) [26]Grochowska M J, Karaszewska A, Jankoowska B. The pattern of hormones of intactapple shoots and its changes after spraying with growth regulators. Acta Hortic, 1984, 149: 25–38 [27]Koshita Y, Takahara T, Ogata T. Involvement of endogenous plant hormones of leaves in flower bud formation of Satauma mandarin. Sci Hortic, 1999, 79: 185–194 |
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