Starch Metabolism of Repeated-bolting Lily Bulbs
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摘要:
目的 研究百合种球反季节繁育二次抽薹过程中的淀粉代谢机制,为精确种球反季节繁育的收储期,促进国产种球繁育提供理论依据。 方法 通过测量百合抽薹前后不同发育时期,鳞茎中的淀粉、还原糖含量,使用扫描电镜观察鳞片细胞中的淀粉颗粒形态内容变化,定量分析不同发育时期种球的淀粉酶基因的表达情况。 结果 百合鳞茎二次抽薹过程中,淀粉和还原糖含量在萌动期出现显著性变化,淀粉含量下降4.98%,还原糖含量增加3.23%。扫描电镜(SEM)观察结果表明:百合鳞片抽薹过程中淀粉粒有A、B、C(大、中、小)3 种类型。在膨大期和成熟期包含A型和B型淀粉粒;萌动期C型淀粉粒出现,A型淀粉粒出现异形、凹陷或是拉伸,长短轴比(L/S)达最大1.77,淀粉颗粒被逐渐拆分;抽薹期A型淀粉粒消失,B、C型颗粒表面出现大量泡状突起,小颗粒可见以“出芽”的方式长出。不同发育时期淀粉酶基因的实时荧光定量多聚核苷酸链式反应(qRT-PCR)结果显示:淀粉分解酶基因AMY在不同发育时期均有表达,在膨大期和成熟期表达量较低,在萌动期和抽薹期高度表达;淀粉合成酶相关基因SSS、SBE在不同发育时期均有表达,在膨大期和成熟期表达量较高,在萌动期和抽薹期表达量较低;淀粉分解酶和合成酶相关基因在种球不同发育时期表达情况与淀粉含量的变化情况相符。 结论 百合种球反季节繁育过程中,二次抽薹导致种球大量的淀粉被消耗,将影响商品球质量以及鲜切花的品质,为消除此不利因素,繁育过程中应当在种球进入成熟期后及时进行收储。 Abstract:Objective Starch metabolism at time of repeated bolting was studied to determine the optimum time for bulb-harvesting in propagation of out-of-season lilies. Method Contents of starch and reducing sugars as well as images of starch granules under scanning electron microscope of the lily bulbs at various developmental stages were examined. Expressions of amylase-related genes of the bulbs were obtained by qRT-PCR. Result The starch and reducing sugars in the bulbs underwent significant changes at germination stage, as the starch content decreased by 4.98% and reducing sugars increased by 3.23%. The SEM images of the starch granules were of A-, B- and C-types, or, large, medium and small in sizes. They were mainly A- and B-types in the expanding and mature bulbs. Upon germinating, the granules began to separate from one another with the appearances of C-type and deformed A-type that showed depressions or were stretched to an L/S ratio as high as 1.77. At bolting, the A-type granules disappeared while the B- and C-types appeared with bubbles and tiny " bud-like” growth on their surfaces. The qRT-PCR analysis indicated that the AMY gene in the bulbs expressed at a high-level during germination and bolting stages, while SSS and SBE at expanding and mature stages, and that the variations paralleled the contents of starch and reducing sugars. Conclusion A large amount of starch was consumed during repeated bolting of the bulbs. Thus, to reduce the ill-effects on the quality of the bulbs and lily flowers, bulb-harvesting at the mature stage was recommended. -
Key words:
- lily /
- bulb /
- starch matabolism /
- bolting
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图 3 百合鳞茎抽薹过程中淀粉粒的SEM图像
注:1~4. 膨大期(1)、成熟期(2)、萌动期(6)、抽薹期(4)百合中层鳞片淀粉粒的整体状态(×150);5. 膨大期鳞片淀粉粒与絮状物共存(×500);6. 成熟期鳞片淀粉粒(×500);7. 萌动期鳞片淀粉粒出现形态变异(×500);8. 抽薹期鳞片淀粉颗粒表面及腔体内壁出现大量泡状突起(×500);9. 成熟期鳞片单个淀粉粒(×2 000);10. 萌动期鳞片单个淀粉粒(×1 500); 11. 抽薹期鳞片单个淀粉粒(×4 500);12. 抽薹期鳞片出现淀粉粒呈撕裂状(×500)。
Figure 3. SEM images of starch granules in bolting lily buds
Note: 1-4. Whole starch granules in mid-layer scales of lily bulb at expanding stage (1), mature stage (2), germination stage (3), and bolting stage (4) (×150); 5. Starch granules and flocs at expanding stage (×500); 6. Starch granules at mature stage (×500); 7. Morphological variations of starch granules at germination stage (×500); 8. Surface and vesicular protuberances on surface and inner wall of starch granules at bolting stage (×500); 9. Individual starch granule at mature stage (×2 000); 10. Individual starch granule at germination stage (×1 500); 11. Individual starch granule at bolting stage (×4 500); 12. Torn starch granules at bolting stage (×500).
表 1 引物序列及内参基因信息
Table 1. Genes and primer sets used in qRT-PCR analysis
基因名称
Gene name引物序列(5′–3′)
Primer sequence长度 Length/bp AMY F: GGGATATTCAGCAGAAATGGCGAAG 130 R: GCGGTTGGCATCTTGATTGTAGAGT SSS F: GTCAACGATTGGCACGCAAGTCT 171 R: ACCATACCACTCAGAGGGCAAGC SBE F: AGCAGCGGAGCGTCGTTAATCT 213 R: CCTGAGAGTCTTCAGCAGCCACT ACTIN F: GTCTGCGACAATGGTACTGGAATG 149 R: GCCTCATCACCAACATAAGCATCTT 注:F:正向引物;R:反向引物。
Note: F, forward primer; R, reverse primer.表 2 百合抽薹过程中淀粉粒特性比较
Table 2. Characteristics of starch granules of bolting lily bulbs
时期
Period淀粉粒类型
Type of starch granule长轴
Long axis(L)短轴
Short axis(S)L/S 范围 Min-Max/μm 平均 Mean/μm 范围 Min-Max/μm 平均 Mean/μm 范围 Min-Max/μm 平均 Mean/μm 膨大期
Expanding stageA 52.81-58.94 55.87 c 36.14-37.42 36.78 b 1.46-1.58 1.52 b B 31.15-39.58 35.03 a 17.86-33.32 24.22 ab 1.16-1.88 1.45 a 成熟期
Mature stageA 52.28-63.40 58.34 b 36.33-49.42 43.00 a 1.24-1.63 1.37 c B 21.08-48.68 35.60 a 14.01-36.52 25.37 a 1.21-2.25 1.50 a 萌动期
Germination stageA 53.03-68.90 61.48 a 24.79-43.30 35.98 b 1.47-2.42 1.77 a B 22.00-49.66 29.49 b 17.28-35.92 21.59 b 1.19-1.59 1.36 b C 16.74-18.34 17.54 b 13.96-14.42 14.19 a 1.20-1.27 1.24 a 抽薹期
Bolting stageB 23.20-46.43 34.29 ab 19.70-34.40 25.82 a 1.15-1.61 1.33 b C 17.62-19.58 18.60 a 13.82-15.50 14.66 a 1.26-1.28 1.27 a 注:不同类型淀粉粒进行方差分析,不同小写字母表示差异显著(P<0.05),相同字母者表示差异不显著(P>0.05)。
Note: Variance analysis of different types of starch grains, different lowercase letters indicate significant differences(P <0.05), the same letters indicate that the difference is not significant(P >0.05). -
[1] 王超, 王文和, 赵祥云, 等. 百合病毒脱除技术研究 [J]. 北京农学院学报, 2012, 27(4):25−28. doi: 10.3969/j.issn.1002-3186.2012.04.008WANG C, WANG W H, ZHAO X Y, et al. Virus elimination of lily [J]. Journal of Beijing University of Agriculture, 2012, 27(4): 25−28.(in Chinese) doi: 10.3969/j.issn.1002-3186.2012.04.008 [2] 钟海丰, 黄宇翔, 邓朝生, 等. 东方百合快繁培养基优化与脱毒技术研究 [J]. 中国农学通报, 2009, 25(17):168−173.ZHONG H F, HUANG Y X, DENG Z S, et al. Medium optimization of rapid propagation and viruses elimination techniques of oriental lily [J]. Chinese Agricultural Science Bulletin, 2009, 25(17): 168−173.(in Chinese) [3] 朱志国. 百合试管鳞茎诱导技术研究 [J]. 浙江农业学报, 2013, 25(5):971−974. doi: 10.3969/j.issn.1004-1524.2013.05.11ZHU Z G. Induction technology of lily bulb in tube [J]. Acta Agricultura Zhejiangensis, 2013, 25(5): 971−974.(in Chinese) doi: 10.3969/j.issn.1004-1524.2013.05.11 [4] 王亚婷, 王有兵, 铁筱睿, 等. IBA、B12及纵切对东方百合‘索邦’鳞片扦插繁殖的影响 [J]. 中国农学通报, 2014, 30(25):231−234. doi: 10.11924/j.issn.1000-6850.2014-0970WANG Y T, WANG Y B, TIE X R, et al. Effects of IBA, B12 and cutting ways on the cutting propagation of Lilium oriental hybrids 'Sorbonne' [J]. Chinese Agricultural Science Bulletin, 2014, 30(25): 231−234.(in Chinese) doi: 10.11924/j.issn.1000-6850.2014-0970 [5] 黄宇翔, 陈华, 刘金燕, 等. 东方百合鳞片扦插繁殖研究 [J]. 中国农学通报, 2005, 21(10):273−275. doi: 10.3969/j.issn.1000-6850.2005.10.076HUANG Y X, CHEN H, LIU J Y, et al. Study on cutting propagation of bud scale of oriental hybrid lily [J]. Chinese Agricultural Science Bulletin, 2005, 21(10): 273−275.(in Chinese) doi: 10.3969/j.issn.1000-6850.2005.10.076 [6] 孙红梅, 秦琦, 谢佳, 等. 激素和变温处理对东方百合扦插鳞片中糖含量的影响 [J]. 沈阳农业大学学报, 2012, 43(2):153−158. doi: 10.3969/j.issn.1000-1700.2012.02.005SUN H M, QIN Q, XIE J, et al. Effect of plant regulators and alternating temperature treatment on carbohydrate content during scale cutting in Lilium oriental hybrid [J]. Journal of Shenyang Agricultural University, 2012, 43(2): 153−158.(in Chinese) doi: 10.3969/j.issn.1000-1700.2012.02.005 [7] 黄彦玮, 师桂英, 李谋强, 等. 外源GA3、ABA对低温冷藏兰州百合种球萌发的促抑效应及种球碳水化合物变化研究 [J]. 甘肃农业大学学报, 2016, 51(1):55−61. doi: 10.3969/j.issn.1003-4315.2016.01.011HUANG Y W, SHI G Y, LI M Q, et al. Effect of exogenous GA3, ABA on bulb germination of Lanzhou lily bulbs and its carbohydrate changes during cool storage [J]. Journal of Gansu Agricultural University, 2016, 51(1): 55−61.(in Chinese) doi: 10.3969/j.issn.1003-4315.2016.01.011 [8] 侯玲玲, 夏宜平, 何桂芳. 低温作用影响百合鳞茎休眠的研究进展 [J]. 青海大学学报(自然科学版), 2006, 24(5):60−62. doi: 10.3969/j.issn.1006-8996.2006.05.019HOU L L, XIA Y P, HE G F. Advances in effects of low temperature on bulb dormancy in Lilium spp [J]. Journal of Qinghai University, 2006, 24(5): 60−62.(in Chinese) doi: 10.3969/j.issn.1006-8996.2006.05.019 [9] 王莹, 王良桂, 黄成名, 等. 露地栽培条件下百合的生长规律及种球繁殖技术 [J]. 中国农业科学, 2014, 47(8):1558−1566. doi: 10.3864/j.issn.0578-1752.2014.08.012WANG Y, WANG L G, HUANG C M, et al. Growth regularity and bulb propagation techniques of lilies in open field [J]. Scientia Agricultura Sinica, 2014, 47(8): 1558−1566.(in Chinese) doi: 10.3864/j.issn.0578-1752.2014.08.012 [10] 苗振, 缑辉, 钱振权, 等. 温度对百合种球催芽生根的影响 [J]. 西南林业大学学报, 2014, 34(3):32−35. doi: 10.3969/j.issn.2095-1914.2014.03.006MIAO Z, GOU H, QIAN Z Q, et al. Effects of temperature on root-forcing and budding treatment of lily bulbs [J]. Journal of Southwest Forestry University, 2014, 34(3): 32−35.(in Chinese) doi: 10.3969/j.issn.2095-1914.2014.03.006 [11] LIVAK K J, SCHMITTGEN T D. Analysis of relative gene expression data using real-time quantitative PCR and the 2-ΔΔC T method [J]. Methods, 2001, 25(4): 402−408. doi: 10.1006/meth.2001.1262 [12] 孙红梅, 李天来, 李云飞. 百合鳞茎发育过程中碳水化合物含量及淀粉酶活性变化 [J]. 植物研究, 2005, 25(1):59−63. doi: 10.3969/j.issn.1673-5102.2005.01.019SUN H M, LI T L, LI Y F. Changes of carbohydrate and amylase in lily bulb during bulb development [J]. Bulletin of Botanical Research, 2005, 25(1): 59−63.(in Chinese) doi: 10.3969/j.issn.1673-5102.2005.01.019 [13] 霍昱璟. 东方百合的花芽分化机理研究[D]. 福州: 福建农林大学, 2014.HUO Y J. Study on the flower bud differentiation mechanism of oriental lily[D]. Fuzhou: Fujian Agriculture and Forestry University, 2014. (in Chinese) [14] 夏宜平, 郑慧俊, 黄春辉, 等. 东方百合鳞茎更新发育的碳同化物积累与分配 [J]. 核农学报, 2006, 20(5):417−422. doi: 10.3969/j.issn.1000-8551.2006.05.018XIA Y P, ZHENG H J, HUANG C H, et al. Accumulation and distribution of C14 photosynthate during bulb development of lilium oriental hybrid [J]. Journal of Nuclear Agricultural Sciences, 2006, 20(5): 417−422.(in Chinese) doi: 10.3969/j.issn.1000-8551.2006.05.018 [15] 宁云芬, 龙明华, 陶劲, 等. 百合低温贮藏和花芽分化过程中鳞片细胞淀粉粒的显微观察 [J]. 园艺学报, 2011, 38(9):1770−1774.NING Y F, LONG M H, TAO J, et al. Microscopic observation of starch grains in the middle scales of Lilium formolongi during low temperature storage and flower bud differentiation [J]. Acta Horticulturae Sinica, 2011, 38(9): 1770−1774.(in Chinese) [16] 张月, 孙红梅, 沈向群, 等. 百合鳞茎发育和低温贮藏过程中淀粉粒亚显微结构的变化 [J]. 园艺学报, 2007, 34(3):699−704. doi: 10.3321/j.issn:0513-353x.2007.03.029ZHANG Y, SUN H M, SHEN X Q, et al. Changes in ultra-structure of starch granule in the middle scales of Lilium davidii var. unicolor during the bulb development and storage at low temperature [J]. Acta Horticulturae Sinica, 2007, 34(3): 699−704.(in Chinese) doi: 10.3321/j.issn:0513-353x.2007.03.029 [17] 刘芳, 田忠平, 蔡英杰, 等. 细叶百合低温解除休眠过程中鳞茎细胞淀粉粒及花芽分化的变化 [J]. 草业学报, 2015, 24(9):154−162. doi: 10.11686/cyxb2014428LIU F, TIAN Z P, CAI Y J, et al. Change in starch grains and flower bud differentiation of Lilium pumilum bulbs during breaking of dormancy under refrigerated conditions [J]. Acta Prataculturae Sinica, 2015, 24(9): 154−162.(in Chinese) doi: 10.11686/cyxb2014428 [18] 蔡宣梅, 郭文杰, 欧阳桐娇, 等. 东方百合不同培养方式鳞茎淀粉粒亚显微结构比较研究 [J]. 中国农学通报, 2014, 30(4):148−151. doi: 10.11924/j.issn.1000-6850.2013-1657CAI X M, GUO W J, OUYANG T J, et al. Comparison of different culture methods in ultra-structure of starch granules of oriental hybrid lily [J]. Chinese Agricultural Science Bulletin, 2014, 30(4): 148−151.(in Chinese) doi: 10.11924/j.issn.1000-6850.2013-1657 [19] 韦存虚, 张军, 周卫东, 等. 小麦胚乳小淀粉粒是复粒淀粉的结构观察 [J]. 麦类作物学报, 2008, 28(5):804−810.WEI C X, ZHANG J, ZHOU W D, et al. Ultrastructural observation on the development of small starch granule (compound starch granule) of wheat endosperm [J]. Journal of Triticeae Crops, 2008, 28(5): 804−810.(in Chinese) [20] 邢世岩, 李士美, 韩晨静, 等. 叶籽银杏胚乳淀粉特性及其系统学意义 [J]. 园艺学报, 2010, 37(3):345−354.XING S Y, LI S M, HAN C J, et al. Comparison on starch characters in endosperm of Ginkgo biloba var. epiphylla mak. and its systematic significance [J]. Acta Horticulturae Sinica, 2010, 37(3): 345−354.(in Chinese) [21] CLEMENT C, BURRUS M, AUDRAN J C. Floral organ growth and carbohydrate content during pollen development in lilium [J]. American Journal of Botany, 1996, 83(4): 459. doi: 10.1002/j.1537-2197.1996.tb12727.x [22] 王祥宁, 熊丽, 吴学尉, 等. 淀粉糖化与东方百合鳞片分生小鳞茎的关系 [J]. 西南农业学报, 2007, 20(1):115−119. doi: 10.3969/j.issn.1001-4829.2007.01.028WANG X N, XIONG L, WU X W, et al. Relationship between starch saccharification and propagation of bulblets from scales in oriental hybrid Lily(Lilium L.) [J]. Southwest China Journal of Agricultural Sciences, 2007, 20(1): 115−119.(in Chinese) doi: 10.3969/j.issn.1001-4829.2007.01.028 [23] 吴沙沙. 东方百合‘索邦’鳞茎源-库转换规律研究[D]. 北京: 北京林业大学, 2012.WU S S. Rules of source-sink exchange of the bulb of oriental lily 'Sorbonne'[D]. Beijing: Beijing Forestry University, 2012. (in Chinese) [24] 杨春起. 百合种球生产关键技术与休眠解除中碳水化合物代谢机理研究[D]. 北京: 中国农业大学, 2016.YANG C Q. Study on key technology of bulb production and role of carbohydrate metabolism in bulb dormancy release in lily[D]. Beijing: China Agricultural University, 2016. (in Chinese) [25] LI X Y, WANG C X, CHENG J Y, et al. Transcriptome analysis of carbohydrate metabolism during bulblet formation and development in Lilium davidii var. unicolor [J]. BMC Plant Biology, 2014, 14: 358. doi: 10.1186/s12870-014-0358-4