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1. 籼/粳杂交水稻产量、氮肥利用效率与生理表现对施氮量的响应
ZHOU Qun, YUAN Rui, ZHANG Wei-yang, GU Jun-fei, LIU Li-jun, ZHANG Hao, WANG Zhi-qin, YANG Jian-chang
Journal of Integrative Agriculture    2023, 22 (1): 63-79.   DOI: 10.1016/j.jia.2022.08.076
摘要471)      PDF    收藏

利用籼/交稻(IJHR)杂种优势是进一步提高水稻产量的有效途径。合理施用氮肥对于充分发挥IJHR杂种优势,实现其巨大产量潜力重要作用。但是,IJHR产量和氮肥利用率对施氮量的响应及其生理机制仍然不清楚。本研究旨在阐明这一问题。于2018-2019年,选用目前生产上应用3个水稻品种IJHR品种甬优2640、粳稻品种连粳7号和籼稻品种扬稻6,大田种植设置6种施氮量(0100200300400500 kg hm-2处理。结果表明,各供试品种的产量随着施氮量的增加呈现先增加后降低的趋势,甬优2640产量施氮量为400 kg hm-2时最高,为13.4 t hm-2连粳7号和扬稻6产量在施氮量为300 kg hm-2时最高分别9.4 t hm-2和10.6 t hm-2。在相同尤其是在较高的施氮量下,甬优2640产量和利用效率均高于连粳7号和扬稻6号。与连粳7号或扬稻6号相比,甬优2640具有较好的生理性状如较高的根系氧化和叶片光合速率,根和叶中高的细胞分裂素含量,灌浆期茎中同化物较多地向籽粒转运。以上结果说明,无论是低施氮量还是高施氮量IJHR均能较常规水稻获得较高的产量和氮利用效率。IJHR较好的地上部和根系性状获得较高产量和氮利用效率的重要原因IJHR植株中较高的细胞分裂素含量响应施氮量起着至关重要的作用,并于其他生理过程。

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2. JIA-2020-2649在水稻高产水平下通过改变淀粉结构与理化性质进而改善稻米品质的氮肥运筹管理
ZHOU Tian-yang, LI Zhi-kang, LI En-peng, WANG Wei-lu, YUAN Li-min, ZHANG Hao, LIU Li-jun, WANG Zhi-qin, GU Jun-fei, YANG Jian-chang
Journal of Integrative Agriculture    2022, 21 (6): 1576-1592.   DOI: 10.1016/S2095-3119(21)63678-X
摘要268)      PDF    收藏

本研究通过两年大田试验,以两个高产超级稻品种为试验材料,设置了不施用氮肥、高氮肥投入的当地农民习惯栽培方式、优化氮肥管理措施1和优化氮肥管理措施2共计四种氮肥管理方式。试验结果表明通过控制氮肥投入总量、增加种植密度和优化氮肥追施比例等措施,实现高产优质和氮肥利用率的提高。与当地农民习惯相比,优化氮肥管理分别提高了产量和氮肥偏生产力1.70%和13.06%,提高了籽粒淀粉和直链淀粉含量,显著降低了蛋白质含量。在优化氮肥管理下,支链淀粉短支链A链(DP6-12)和B1链(DP13-25)含量显著增加,淀粉结晶度显著下降,同时淀粉的粘度值增加,淀粉的热力学特性变优,从而提高了稻米的蒸煮与食味品质。以上研究结果表明优化氮肥管理可以缓解高产水平条件下因大量氮肥投入而引起的稻米品质变劣,实现高产优质和氮肥利用率的协同提高的目标,对水稻的高产优质生产具有实践和指导意义


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3. Deciphering the morpho–physiological traits for high yield potential in nitrogen efficient varieties (NEVs): A japonica rice case study
ZHU Kuan-yu, YAN Jia-qian, SHEN Yong, ZHANG Wei-yang, XU Yun-ji, WANG Zhi-qin, YANG Jian-chang
Journal of Integrative Agriculture    2022, 21 (4): 947-963.   DOI: 10.1016/S2095-3119(20)63600-0
摘要202)      PDF    收藏

选用氮高效水稻品种可减少氮肥的投入而不降低产量,但有关氮高效水稻品种的形态生理特征不清楚。本研究以3个氮高效粳稻品种和3个氮低效粳稻品种为材料并种植于大田,设置不施氮(0 kg N ha-1)和常规施氮量(180或200 kg N ha-1)2种处理。结果表明,与氮低效品种相比,氮高效品种在2种施氮量情况下均具有较高的总颖花量、结实率、产量和氮肥利用率。氮高效品种在穗分化期具有较高的根系氧化力、根干重、根长和根直径,灌浆期具有较高的粒叶比和茎蘖成穗率,抽穗后具有较高的氮转运量、干物质积累、良好的叶片性状包括较高的剑叶厚度、比叶重、光合速率,较高的核酮糖-1,5-二磷酸羧化酶/加氧酶、叶绿素、氮和可溶性糖含量,以及较优的冠层结构(较高的氮消减系数与消光系数之比)。上述形态生理性状与产量及氮肥利用率呈显著或极显著正相关。这些性状可作为培育和筛选氮高效水稻品种的指标。


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4. The effects of water and nitrogen on the roots and yield of upland and paddy rice
ZHANG Ya-jie, XU Jing-nan, CHENG Ya-dan, WANG Chen, LIU Gao-sheng, YANG Jian-chang
Journal of Integrative Agriculture    2020, 19 (5): 1363-1374.   DOI: 10.1016/S2095-3119(19)62811-X
摘要109)      PDF    收藏
It is of great significance to study the root characteristics of rice to improve water and nitrogen (N) use efficiency and reduce environmental pollution.  This study investigated whether root traits and architecture of rice influence grain yield, as well as water and N utilization efficiency.  An experiment was conducted using the upland rice cultivar Zhonghan 3 (a japonica cultivar) and paddy rice cultivar Huaidao 5 (also a japonica cultivar) using three N levels, namely, 2 g urea/pot (low amount, LN), 3 g urea/pot (normal amount, NN), and 4 g urea/pot (high amount, HN), and three soil water potentials (SWPs, namely, well-watered (0 kPa), mildly dried (–20 kPa) and severely dried (–40 kPa).  The results showed that with decreasing SWP, the percentage of upland rice roots increased in the 0–5 cm tillage layer, and decreased in the 5–10 and 10–20 cm tillage layers, whereas paddy rice roots showed the opposite trend.  With increasing amounts of N, the yield of upland and paddy rice increased, and the percentage of root volume ratios of the two rice cultivars in the 0–5 and 5–10 cm tillage layers increased, whereas that in the 10–20 cm tillage layer decreased.  The roots of upland rice are mainly distributed in the 10–20 cm tillage layer, whereas most paddy rice roots are in the 0–5 cm tillage layer.  These results indicate that the combination of −20 kPa SWP and NN in upland rice and 0 kPa SWP and LN in paddy rice promotes the growth of the root system during the middle and late stages, which in turn may decrease the requirements for water and N fertilizer and increase rice yield. 
 
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5. Changes in starch quality of mid-season indica rice varieties in the lower reaches of the Yangtze River in last 80 years
ZHANG Hao, JING Wen-jiang, XU Jing-ju, MA Bing-ju, WANG Wei-lu, ZHANG Wei-yang, GU Jun-fei, LIU Li-jun, WANG Zhi-qin, YANG Jian-chang
Journal of Integrative Agriculture    2020, 19 (12): 2983-2996.   DOI: 10.1016/S2095-3119(20)63431-1
摘要119)      PDF    收藏
Rice (Oryza sativa L.) quality depends mainly on the characteristics of starch stored in kernels.  Understanding the changes in starch characteristics in kernels during variety improvement would have great significance to improve rice quality.  This study was designed to investigate the starch characteristics in the kernels and associated physiological traits of indica rice varieties in the lower reaches of the Yangtze River in China in last 80 years.  Eight representative mid-season indica rice varieties were grown in the field.  The results showed that the grain yield was significantly increased with the improvement of varieties and such an increase was mainly attributed to the increase in total number of spikelets.  The tall varieties applied in the 1940s–1950s had higher protein content, relative crystallinity and infrared (IR) ratio of 1 045/1 022 cm–1.  The semi-dwarf varieties applied in the 1980s–1990s had higher gel consistency, amylopectin content, IR ratio of 1 022/995 cm–1, and breakdown value.  With the improvement of varieties, the amylose content, large-sized starch granule number and volume distribution, onset and peak of gelatinization temperature, gelatinization and retrogradation enthalpy, setback value, pasting temperature, viscosity of peak, hot and final, and 1-aminocycopropane-1-carboxylic acid (ACC) concentrations in panicles and root bleeding were gradually decreased, whereas the medium-sized starch granule number and volume distribution, activities of key enzymes in grains, and zeatin (Z)+zeatin riboside (ZR) contents in panicles and root bleeding at grain filling stage were gradually increased.  Correlation analysis showed that starch thermodynamic characteristics were closely related to starch structure and components, key enzymes and hormones.  The results suggest that starch quality was enhanced through the optimization of starch components, structure, thermodynamics, and the regulation of key enzymes in grains and hormones in panicles and root bleedings at grain filling stage during the improvement of mid-season indica rice.
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6. Optimizing integrative cultivation management improves grain quality while increasing yield and nitrogen use efficiency in rice
ZHANG Hao, HOU Dan-ping, PENG Xian-long, MA Bing-ju, SHAO Shi-mei, JING Wen-jiang, GU Jun-fei, LIU Li-jun, WANG Zhi-qin, LIU Yuan-ying, YANG Jian-chang
Journal of Integrative Agriculture    2019, 18 (12): 2716-2731.   DOI: 10.1016/S2095-3119(19)62836-4
摘要202)      PDF    收藏
A major challenge in rice (Oryza sativa L.) production is to cope with increasing grain yield and fertilizer use efficiency without compromising grain quality.  This study was designed to determine if optimizing integrative cultivation management in rice could improve grain quality while increase yield and nitrogen use efficiency (NUE).  An indica-japonica hybrid rice cultivar and a japonica rice cultivar were grown in the field, with five cultivation managements including no N application (0 N), local farmer’s practice (LFP), and three optimizing integrative cultivation managements, reducing N rate and increasing plant density (ND), ND+alternate wetting and moderate soil drying irrigation (NDW), and NDW+applying rapeseed cake fertilizer (NDWR).  The results showed that the optimizing integrative cultivation managements could not only increase grain yield, but also enhance NUE compared to LFP.  Compared to LFP, NDWR significantly increased brown, milled, head milled rice rate, ratio of the kernel length to breadth and breakdown value of starch, whereas decreased amylose content, gel consistency, prolamin content, setback value, percentage of chalky kernels, and chalkiness.  The three optimizing integrative cultivation managements increased contents of total proteins, albumin and glutelin, activities of the key enzymes involved in the sucrose-starch conversion in grains, root oxidation activity, and malic and succinic acid concentrations in root exudates during the grain-filling period.  The results suggested that optimizing integrative cultivation managements could improve grain quality meanwhile increase grain yield and NUE by enhancing physiological activities of rice plants.
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7.  
WANG Zhi-qin, ZHANG Wei-yang, YANG Jian-chang
Journal of Integrative Agriculture    2018, 17 (07): 1475-1481.   DOI: 10.1016/S2095-3119(18)61981-1
摘要446)      PDF(pc) (716KB)(364)    收藏
 
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8. Grain yield and water use efficiency of super rice under soil water deficit and alternate wetting and drying irrigation
ZHOU Qun, JU Cheng-xin, WANG Zhi-qin, ZHANG Hao, LIU Li-jun, YANG Jian-chang, ZHANG Jian-hua
Journal of Integrative Agriculture    2017, 16 (05): 1028-1043.   DOI: 10.1016/S2095-3119(16)61506-X
摘要941)      PDF    收藏
This study investigated if super rice could better cope with soil water deficit and if it could have better yield performance and water use efficiency (WUE) under alternate wetting and drying (AWD) irrigation than check rice.  Two super rice cultivars and two elite check rice cultivars were grown in pots with three soil moisture levels, well watered (WW), moderate water deficit (MWD) and severe water deficit (SWD).  Two cultivars, each for super rice and check rice, were grown in field with three irrigation regimes, alternate wetting and moderate drying (AWMD), alternate wetting and severe drying (AWSD) and conventional irrigation (CI).  Compared with that under WW, grain yield was significantly decreased under MWD and SWD treatments, with less reduction for super rice than for check rice.  Super rice had higher percentage of productive tillers, deeper root distribution, higher root oxidation activity, and greater aboveground biomass production at mid and late growth stages than check rice, especially under WMD and WSD.  Compared with CI, AWMD increased, whereas AWSD decreased grain yield, with more increase or less decrease for super rice than for check rice.  Both MWD and SWD treatments and either AWMD or AWSD regime significantly increased WUE compared with WW treatment or CI regime, with more increase for super rice than for check rice.  The results suggest that super rice has a stronger ability to cope with soil water deficit and holds greater promising to increase both grain yield and WUE by adoption of moderate AWD irrigation.
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9. Performance in Grain Yield and Physiological Traits of Rice in the Yangtze River Basin of China During the Last 60 yr
ZHANG Hao, CHEN Ting-ting, LIU Li-jun, WANG Zhi-qin, YANG Jian-chang , ZHANG Jian-hua
Journal of Integrative Agriculture    2013, 12 (1): 57-66.   DOI: 10.1016/S2095-3119(13)60205-1
摘要1963)      PDF    收藏
Knowledge on the performance in grain yield and physiological traits is essential to understand the main yield-limiting factor and make strategies for breeding and crop management in rice (Oryza sativa L.). This study investigated the changes in grain yield and associated physiological traits of rice in the Yangtze River Basin of China during the last 60 yr. Thirteen mid-season indica and 12 japonica rice cultivars that were popularly used were grown in the field in 2008 and 2009. The grain yield and yield components, biomass, leaf area, leaf photosynthesis, root oxidation activity, and harvest index were examined. The results showed that grain yield and grain yield per day have progressively increased during the years and such increases are mainly attributed to the expanded sink size as a result of more spikelets per panicle, especially for the case of super rice. Both biomass and harvest index were increased with the improvement of cultivars. Increase in biomass for modern rice cultivars was associated with an enhancement of leaf area and photosynthesis, root dry weight, and root oxidation activity, although the indica super rice cultivars showed a lower leaf photosynthetic rate and root oxidation activity than the semi-dwarf cultivars during the grain filling period. Both indica and japonica super rice cultivars exhibited a low percentage of filled grains, which may limit their great yield potential. All the data suggested that grain yield have been substantially improved during the 60 yr of rice breeding in the Yangtze River Basin. Expanded sink size, increased dry matter production and harvest index, and enhanced leaf area and photosynthesis, root dry weight, and root oxidation activity contribute to the improvement in grain yield. Increase in filling efficiency could realize the great yield potential in super rice.
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10. Root Morphology and Physiology in Relation to the Yield Formation of Rice
YANG Jian-chang, ZHANG Hao, ZHANG Jian-hua
Journal of Integrative Agriculture    2012, 12 (6): 920-926.   DOI: 10.1016/S1671-2927(00)8614
摘要2291)      PDF    收藏
Root system is a vital part of plant and regulates many aspects of shoot growth and development. This paper reviews how some traits of root morphology and physiology are related to the formation of grain yield in rice (Oryza sativa L.). Higher root biomass, root oxidation activity, and cytokinin contents in roots are required for achieving more panicle number, more spikelets per panicle, greater grain-filling percentage, and higher grain yield. However, these root traits are not linearly correlated with yield components. When these traits reach very high levels, grain filling and grain yield are not necessarily enhanced. High numbers of mitochondria, Golgi bodies, and amyloplasts in root tip cells benefit root and shoot growth and yield formation. Proper crop management, such as an alternate wetting and moderate soil drying irrigation, can significantly improve ultra-structure of root tip cells, increase root length density and concentration of cytokinins in root bleedings, and consequently, increase grain-filling percentage, grain yield, and water use efficiency. Further studies are needed to investigate the mechanism underlying root-shoot and root-soil interactions for high grain yield, the roles of root-sourced hormones in regulating crop growth and development and the effects of soil moisture and nutrient management on the root architecture and physiology.
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