中国水稻科学 ›› 2019, Vol. 33 ›› Issue (1): 57-67.DOI: 10.16819/j.1001-7216.2019.8077
成臣, 曾勇军*(), 程慧煌, 谭雪明, 商庆银, 曾研华, 石庆华
收稿日期:
2018-06-15
修回日期:
2018-08-28
出版日期:
2019-01-10
发布日期:
2019-01-10
通讯作者:
曾勇军
基金资助:
Chen CHENG, Yongjun ZENG*(), Huihuang CHENG, Xueming TAN, Qingyin SHANG, Yanhua ZENG, Qinghua SHI
Received:
2018-06-15
Revised:
2018-08-28
Online:
2019-01-10
Published:
2019-01-10
Contact:
Yongjun ZENG
摘要:
【目的】为了明确灌浆结实前中期不同温度对晚粳稻籽粒灌浆、总淀粉及其组分含量的影响特征及其机理,【方法】以优质食味粳稻南粳9108为材料,利用植物培养箱控温,于水稻灌浆结实期设置高温(HT,日均温度31℃)、中温(MT,日均温度26℃)和低温(LT,日均温度21℃)三个处理,以自然温度为对照(CK),研究灌浆结实前中期持续高低温对晚粳稻籽粒灌浆、内源激素含量、淀粉及其及合成关键酶活性的影响。【结果】随温度上升(21℃~31℃),晚粳稻结实率和千粒重降低;灌浆前中期籽粒总淀粉积累速率加快,但持续时间短,总含量降低,而直链淀粉含量及其所占比例在整个灌浆期均呈降低趋势;灌浆前中期脱落酸(ABA)含量显著增加,赤霉素(GA3)含量降低,玉米素核苷(ZR)含量呈“先增先降”趋势;MT处理有利于提高灌浆结实期籽粒生长素(IAA)含量,HT和LT处理均降低籽粒IAA含量,LT处理下,IAA含量先降后升,而HT处理籽粒IAA含量一直处于较低水平;籽粒可溶性淀粉合成酶(SSS)活性与ZR变化规律相似,也呈“先增先降”趋势,但二者在灌浆结实期并不同步;淀粉分支酶(SBE)活性增加而淀粉脱分支酶(DBE)活性降低。【结论】不同温度显著影响晚粳稻籽粒内源激素含量和淀粉合成关键酶活性的变化,进而影响晚粳稻籽粒灌浆、总淀粉及其组分的积累。
中图分类号:
成臣, 曾勇军, 程慧煌, 谭雪明, 商庆银, 曾研华, 石庆华. 齐穗至乳熟期不同温度对水稻南粳9108籽粒激素含量、淀粉积累及其合成关键酶活性的影响[J]. 中国水稻科学, 2019, 33(1): 57-67.
Chen CHENG, Yongjun ZENG, Huihuang CHENG, Xueming TAN, Qingyin SHANG, Yanhua ZENG, Qinghua SHI. Effects of Different Temperature from Full Heading to Milking on Grain Filling Stage on Grain Hormones concentrations, Activities of Enzymes Involved in Starch Synthesis and Accumulation in Rice Nanjing 9108[J]. Chinese Journal OF Rice Science, 2019, 33(1): 57-67.
图1 不同处理的温度日变化及温度处理期间(9月6日至9月23日)室外气温变化 Tmax、Tavg和Tmin分别指室外一天最高气温、平均气温和最低气温。CK代表与MT处理日平均温度较为一致的对照处理;LT代表低温21℃(17℃~25℃);MT处理代表中温26℃(22℃~30℃);HT处理代表高温31℃(27℃~35℃)。
Fig.1. Daily change patterns of temperature in different treatments and outdoor temperature changes during experiment (from 6th to 23rd, September). Tmax, Tavg and Tmin refer to the maximum temperature, average temperature and minimum temperature of a day, respectively. CK, A control treatment consistent with MT treatment in daily average temperature; LT, Low temperature of 21℃(17℃~25℃); MT treatment, Medium temperature of 26℃ (22℃~30℃); HT treatment , High temperature of 31℃(27℃~35℃). The same as below.
处理 Treatment | 结实率 Seed setting rate/% | 千粒重 1000-grain weight/g |
---|---|---|
对照CK | 88.6±1.4 b | 28.2±0.8 ab |
低温LT | 91.6±0.8 a | 29.2±0.4 a |
中温MT | 88.1±0.7 b | 28.0±0.6 b |
高温HT | 66.7±1.2 c | 24.9±0.8 c |
表1 灌浆结实前中期温度对晚粳稻产量构成因素的影响
Table 1 Effect of different temperature during early- middle grain filling stage on yield components of late japonica rice.
处理 Treatment | 结实率 Seed setting rate/% | 千粒重 1000-grain weight/g |
---|---|---|
对照CK | 88.6±1.4 b | 28.2±0.8 ab |
低温LT | 91.6±0.8 a | 29.2±0.4 a |
中温MT | 88.1±0.7 b | 28.0±0.6 b |
高温HT | 66.7±1.2 c | 24.9±0.8 c |
图3 不同温度处理下晚粳稻籽粒灌浆过程中内源激素含量的变化
Fig. 3. Changes in grain endogenous hormone contents in developing grains of late japonica rice under different temperature.
图4 水稻籽粒可溶性淀粉合成酶、可溶性淀粉分支酶及淀粉脱分支酶活性的变化
Fig. 4. Changes in activities of grain soluble starch synthase (SSS), starch branching enzyme (SBE) and starch debranching enzyme (DBE).
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