减氮对机插杂交籼稻产量和稻米品质的影响

2022-04-21 15:43蒋明金徐文波王荣基罗德强江学海周维佳徐富贤孙永健李敏
南方农业学报 2022年1期
关键词:产量

蒋明金 徐文波 王荣基 罗德强 江学海 周维佳 徐富贤 孙永健 李敏

摘要:【目的】研究減氮对机插杂交籼稻产量和稻米品质的影响,为机插杂交籼稻合理减氮提供理论依据。【方法】以杂交籼稻品种宜香优2115和F优498为试验材料,基于品种高产栽培施氮量(180 kg/ha,CK),在贵州贵阳和湄潭2个试验点,研究不同减氮量[减氮30 kg/ha(N-30)、减氮60 kg/ha(N-60)和不施氮(N0)]对机插杂交籼稻产量、加工品质、外观品质、营养品质和蒸煮食味品质的影响。【结果】在贵阳和湄潭试验点,减氮后机插杂交籼稻产量和稻米品质变化趋势基本一致,即随着减氮程度的增加,机插杂交籼稻群体颖花量和实际产量均逐渐降低,稻谷加工品质(糙米率、精米率和整精米率)表现为先增加后降低,稻米外观品质(垩白粒率和垩白度)和蛋白质含量逐渐降低,而稻米蒸煮食味品质(胶稠度和直链淀粉含量)均逐渐增加,综合食味值评分提高。与CK相比,减氮后机插杂交籼稻群体颖花量和实际产量分别降低4.43%~35.08%和1.76%~38.77%,垩白粒率、垩白度和蛋白质分别降低2.08%~29.58%、3.57%~45.33%和3.10%~21.37%,胶稠度、直链淀粉含量和食味值分别提高3.89%~49.28%、0.52%~13.24%和0.25%~5.67%;同一减氮处理下两试验点稻谷加工品质变化趋势略有不同,但整体上差异较小。相关分析结果表明,实际产量与群体颖花量呈极显著正相关(P<0.01,下同),且实际产量和群体颖花量与稻米蒸煮食味品质(胶稠度、碱消值和食味值)大多呈显著(P<0.05,下同)或极显著负相关,与稻米加工品质(糙米率、精米率)、外观品质(垩白粒率、垩白度)和蛋白质含量呈显著或极显著正相关。【结论】适宜的减氮量(N-30)能改善稻谷加工品质、稻米外观品质和蒸煮食味品质,且产量仍能维持在9.80 t/ha以上,协同实现机插杂交籼稻稳产和优质;而过量减氮(N-60和N0处理)虽能提高稻米外观品质和蒸煮食味品质,但稻谷加工品质有变劣趋势,且产量显著降低,难以实现机插杂交籼稻高产稳产。

关键词: 减氮;机插;杂交籼稻;产量;稻米品质

中图分类号: S511.21                        文献标志码: A 文章编号:2095-1191(2022)01-0104-11

Effects of nitrogen reduction on grain yield and quality of mechanical transplanting hybrid indica rice

JIANG Ming-jin1, XU Wen-bo1, WANG Rong-ji1, LUO De-qiang1, JIANG Xue-hai1,

ZHOU Wei-jia1,XU Fu-xian2, SUN Yong-jian3, LI Min1*

(1Rice Research Institute, Guizhou Academy of Agricultural Sciences, Guiyang  550006, China; 2 Rice and Sorghum Research Institute, Sichuan Academy of Agricultural Sciences, Deyang, Sichuan  618000, China; 3 Rice Research Institute of Sichuan Agricultural University/Crop Ecophysiology and Cultivation Key Laboratory of Sichuan Province,

Chengdu  611130, China)

Abstract:【Objective】To study the effect of nitrogen reduction on grain yield and quality of mechanical transplanting hybrid indica rice and provide a theoretical basis for reasonable nitrogen reduction in mechanical transplanting hybrid indica rice cultivation. 【Method】Based on the nitrogen application rate(180 kg/ha,CK)for high-yield cultivation of the varie-ty,the effect of nitrogen reduction [30 kg/ha of nitrogen reduction,(N-30);60 kg/ha of nitrogen reduction,(N-60) and no nitrogen application,(N0)] on grain yield,processing quality,appearance quality,nutritional quality,cooking and eating quality of mechanical transplanting hybrid indica rice were investigated in Guiyang and Meitan with rice varieties Yi-xiangyou 2115 and F you 498 as materials. 【Result】The grain yield and quality of mechanical transplanting hybrid indica rice were basically the same changes after nitrogen reduction in Guiyang and Meitan. With the increase in the degree of nitrogen reduction,the total number of spikelets and grain yield of mechanical transplanting hybrid indica rice gradually decreased,processing quality(brown rice rate,milled rice rate,and head milled rice rate)of rice first increased and then decreased,and appearance quality(chalkiness percentage and chalkiness degree)and protein content of rice gradually decreased,while the cooking and eating quality of rice(gel consistency and amylose content)gradually increased,and comprehensive of rice increased. Compared with CK,the total number of spikelets and grain yield of hybrid indica rice in nitrogen reduction decreased by 4.43%-35.08% and 1.76%-38.77%,respectively;the chalkiness percentage,chalkiness degree and protein content of rice decreased by 2.08%-29.58%,3.57%-45.33% and 3.10%-21.37%,respectively;the gel consistency,amylose content,comprehensive of rice increased by 3.89%-49.28%,0.52%-13.24% and 0.25%-5.67%,respectively;the change trend of rice processing quality at the two ecological sites in the same nitrogen reduction treatment was slightly different,but the overall difference was small. Correlation analysis showed that there was extremely significant positive correlation between grain yield and total number of spikelets(P<0.01, the same below). The grain yield and the total number of spikelets were significantly(P<0.05, the same below) or extremely significantly negatively correlated with the most of the cooking and eating quality of rice(gel consistency,alkali spreading value and comprehensive),and were significantly or extremely significantly positively correlated with processing quality(brown rice rate and milled rice rate),appearance quality(chalkiness percentage and chalkiness degree) and protein content of rice. 【Conclusion】An appropriate amount of nitrogen reduction(N-30) can improve processing quality,appearance quality and cooking and eating quality of mechanical transplanting hybrid indica rice,while the grain yield can still be maintained above 9.80 t/ha,synergistically to achieve stable yield and high quality of mechanical transplanting hybrid indica rice. However,excessive nitrogen reduction(N-60 and N0) can improve the appearance quality and cooking and eating quality of rice,but the processing quality of rice tends to deteriorate and grain yield of rice is significantly reduced,which is difficult to achieve high yield of mechanical transplanting hybrid indica rice.

Key words: nitrogen reduction; mechanical transplanting; hybrid indica rice; grain yield; grain quality

Foundation items: National Key Research and Development Program of China (2016YFD03006-4); National Mo-dern Agricultural Industry Technology System Project(CARS-01-25); Subsides of the National Natural Science Foundation of Guizhou Academy of Agricultural Sciences (QNKYGJHBZ〔2021〕05)

0 引言

【研究意义】水稻(Oryza sativa L.)是我国最重要的粮食作物之一(周新桥等,2020),稳定和提高水稻单产对保障我国粮食安全具有重要意义。在实现高产的过程中,除品种因素外,施用化肥(特别是氮肥)是水稻增产的重要手段。据统计,我国水稻生产中氮肥用量约占世界总用量的37%,单位面积施氮量高出世界平均水平约75%(Ju et al.,2015)。增施氮肥虽然整体上能提高水稻产量(欧达等,2019;吴培等,2019),但过量施氮不仅直接增加生产成本、降低水稻生产效益,也潜在增加病虫害发生机率、劣化稻米品质(黄世文等,2009;吴汉等,2020;胡雅杰等,2021),且过量施氮也易通过淋洗、径流等途径进入水体,引发地下水NO3-含量超标与地表水富营养化等一系列生态环境问题(Peng et al.,2006)。因此,研究如何在减氮投入的同时稳定水稻产量、改善稻米品质,对实现水稻绿色安全生产和进一步节本增效具有重要意义。【前人研究进展】氮作为水稻生长发育最重要的营养元素之一,合理施氮对实现水稻稳产高产及提高稻米品质具有重要意义(王秀斌等,2016;从夕汉等,2017;蒋伟勤等,2020;郭琳等,2021)。目前,已有较多学者针对不同生态区、土壤类型及品种类型研究了施氮量及施氮方式对水稻产量、品质和氮肥利用率的影响(蒋鹏等,2017;成臣等,2018;李楠等,2019;付景等,2021),为我国各稻区水稻生产因地制宜合理施氮提供了指导作用。近年来,大量研究表明,适当减氮能在不显著降低水稻产量的同时提高氮肥利用率并改善稻米品质(张荣萍和陶诗顺,2016;杜志敏等,2020;蒋鹏等,2020)。与农民惯用施肥相比,在植物营养生长阶段早期减氮30%能同时提高产量和氮肥农学利用率(Peng et al.,2006);在常规氮肥基础上减氮28%可实现华南稻区早晚兼用型水稻稳产甚至增产、保持或改善稻米品质(莫钊文等,2014);高肥力土壤条件下减氮有利于改善稻米加工品质,降低稻米垩白粒率和垩白度,且不同土壤肥力下减氮整体上均有利于稻米蒸煮食味品质的提高(姜玉伟等,2016);适当的穗肥减氮能在保证产量不显著变化的情况下,进一步改善优质食味水稻的外观品质和蒸煮食味品质(陈云等,2021);在浙江沿海地区常规单季稻栽培条件下,减氮17%能够保证甬优系列籼粳杂交稻产量,但应综合考虑耕地基础地力、品种特性和肥料利用率等因素的长期效应(汪峰等,2021);减氮也可显著降低稻米的出糙率、精米率、整精米率、垩白粒率和垩白度,增加稻米直链淀粉含量和胶稠度,进而改善稻米的外观品质和蒸煮食味品质(邵士梅,2021)。【本研究切入点】目前,关于杂交籼稻优质丰产协同的施氮研究相对较少,尤其是如何减量施氮既能够维持机插杂交籼稻高产又能显著提高稻米品质的研究鲜有报道。【拟解决的关键问题】通过在贵州不同试验点,选用优质杂交籼稻为材料,以各品种高产栽培施氮量为对照,研究不同减氮量條件下机插优质杂交籼稻产量及品质的变化,分析产量与稻米品质的关系,明确机插杂交籼稻高产与优质协同形成的最佳减氮措施,为机插杂交籼稻合理减氮提供理论依据。

1 材料与方法

1. 1 试验材料

试验材料为贵州地区广泛种植的优质杂交籼稻品种宜香优2115和F优498,均由贵州省水稻研究所供种。

1. 2 试验地概况

试验于2019年在贵阳市贵州省农业科学院水稻研究所试验基地(东经106°39′22″、北纬26°30′36″,海拔1139 m)和遵义市湄潭县高台镇(东经107°38′16″、北纬27°61′25″,海拔681 m)进行。试验地均为冬闲田,土壤基本理化性质见表1。试验地气象数据由贵州省水稻研究所内农业试验自动气象站和贵州省湄潭县农业农村局提供,详见表2。

1. 3 试验方法

本课题组前期研究表明,高产栽培条件下,杂交籼稻品种宜香优2115和F优498均在施氮量180 kg/ha左右达到高产(李敏等,2020)。因此,本研究以高产栽培施氮量180 kg/ha为对照(CK),设减氮30 kg/ha(N-30)、减氮60 kg/ha(N-60)和不施氮(N0)3个减氮量处理。试验采用两因素裂区设计,品种为主区,减氮量为副区,3次重复,小区面积15 m2。

采用塑料毯状软盘(长58.0 cm、宽28.0 cm、高2.5 cm)育秧,于4月15日播种,2个品种的播种量均为70 g/盘。秧龄25 d时移栽,模拟毯苗机插,移栽株行距20 cm×30 cm,两苗栽插。氮肥(尿素)按基肥∶分蘖肥∶穗肥=4∶3∶3施用,移栽前1 d施用基肥,移栽后5 d施用分蘖肥,倒4叶龄期一次性施用穗肥;磷肥(P2O5)施用总量为75 kg/ha,全部作基肥一次施用;钾肥(K2O)施用总量为150 kg/ha,按基肥和拔节肥分2次等量施用。氮肥处理间以塑料挡板隔离,高度40 cm,保证单独排灌,防止串肥。移栽至返青保持浅水灌溉,返青后进行间隙湿润灌溉,有效分蘖临界期前一周排水晒田,拔节孕穗期至抽穗后45 d进行干湿交替灌溉,病虫草害管理等按当地高产高效栽培管理模式严格执行。

1. 4 测定项目及方法

1. 4. 1 产量性状 于成熟期,各小区选择20穴植株调查有效穗数,选取5穴代表性植株测定每穗粒数、结实率和千粒重,计算理论产量、群体颖花量。各小区实收稻谷,晒干去杂后按标准含水量13.5%计算实际产量。

1. 4. 2 稻米品质 稻谷经晒干去杂后,各小区取样1 kg左右,自然阴干存放3个月。待其理化性质稳定后,用FOSS Infratec 1241-近红外快速谷物品质分析仪(丹麦福斯有限公司)测定精米的直链淀粉含量和蛋白质含量;用SATAKE STA1B型米饭食味计(日本佐竹公司)测定米饭食味值;参照GB/T 17891—2017《优质稻谷》测定垩白粒率、垩白度和长宽比;参照GB/T 5495—2008《粮油检验 稻谷出糙率检验》测定出糙率;参照GB/T 21719—2008《稻谷整精米率检验法》测定精米率和整精米率;参照NY/T 83—2017《米质测定方法》测定碱消值和胶稠度。

1. 5 统计分析

采用Excel 2016进行数据整理、计算及作图,以SPSS 24.0 进行统计分析,采用Origin 2020进行相关分析及作图。

2 结果与分析

2. 1 减氮对机插杂交籼稻产量的影响

从表3可知,贵阳和湄潭试验点机插杂交籼稻的群体颖花量、理论产量和实际产量均随减氮程度增加而逐渐降低。与CK相比,贵阳点减氮后宜香优2115和F优498的群体颖花量分别降低8.61%~27.34%和8.02%~29.25%,湄潭点分别降低4.43%~34.64%和5.23%~35.08%,差异均达显著水平(P<0.05,下同)。贵阳点减氮后宜香优2115和F优498的实际产量分别较CK降低2.29%~31.01%和3.90%~37.72%,湄潭点分别降低1.76%~36.43%和2.80%和38.77%;N-30处理下宜香优2115和F优498的实际产量在贵阳和湄潭点虽有所降低,但差异均未达显著水平(P>0.05,下同),且产量仍能维持在9.80 t/ha以上;而当减氮至N-60或N0后,产量显著降低,尤其是湄潭试验点N0处理下F优498的实际产量显著降低38.77%。说明减氮会导致机插杂交籼稻群体颖花量和产量降低,适宜的减氮量可维持机插杂交籼稻稳产,而过量减氮产量会显著降低。

2. 2 减氮对机插杂交籼稻稻谷加工品质的影响

由表4可见,贵阳和湄潭试验点机插杂交籼稻的稻米加工品质整体均随减氮程度增加表现为先增加后降低,且贵阳和湄潭点分别在N-60和N-30处理下稻米加工品质更优。與CK相比,贵阳点减氮后杂交籼稻糙米率和精米率的变化差异均不显著(除N0处理下宜香优2115精米率显著降低3.68%外);整精米率除宜香优2115在减氮至N0后显著下降15.38%外,其余显著提高2.02%~11.65%;湄潭点减氮至N-30处理杂交籼稻糙米率、精米率和整精米率的变化差异均不显著,但继续减氮会导致糙米率和整精米率显著降低(除F优498的糙米率外),减氮至N0处理宜香优2115和F优498的精米率分别显著降低7.14%和1.98%。说明适宜的减氮量有利于提高机插杂交籼稻稻谷加工品质,但因试验地而有所不同。

2. 3 减氮对机插杂交籼稻稻米外观品质的影响

从表5可知,贵阳和湄潭试验点机插杂交籼稻稻米垩白粒率和垩白度均随减氮程度的增加而降低,而长宽比变化较小。与CK相比,贵阳和湄潭点减氮后杂交籼稻垩白粒率降低幅度为2.08%~29.58%,但仅当减氮至N-60或N0后差异达显著水平,这与试验点和品种差异有关;杂交籼稻垩白度分别降低3.57%~45.33%,且除湄潭点宜香优2115外,差异均达显著水平。说明适宜的减氮量可以降低机插杂交籼稻稻米垩白粒率和垩白度,改善稻米外观品质。

2. 4 减氮对机插杂交籼稻稻米蛋白质含量的影响

由图1可看出,在贵阳和湄潭试验点,机插杂交籼稻稻米蛋白质含量均表现为CK>N-30>N-60>N0,且不同减氮量处理间差异大多达显著水平。与CK相比,贵阳点减氮后宜香优2115和F优498的稻米蛋白质含量分别降低3.69%~18.94%和3.10%~7.87%;而湄潭点分别降低4.66%~16.44%和4.02%~21.37%,差异均达显著水平。说明减氮会降低机插杂交籼稻稻米蛋白质含量。

2. 5 减氮对机插杂交籼稻稻米蒸煮食味品质的影响

机插杂交籼稻稻米蒸煮食味品质见表6。贵阳和湄潭试验点减氮后杂交籼稻稻米胶稠度分别较CK显著增长3.89%~49.28%;碱消值整体变化差异较小,但F优498碱消值在贵阳和湄潭点分别较CK显著增加4.84%和8.77%;直链淀粉含量较CK增加幅度为0.52%~13.24%,但差异大多均未达显著水平;食味值较CK提高0.25%~5.67%,且差异大多达显著水平。说明适宜的减氮有利于改善机插杂交籼稻稻米蒸煮食味品质。

2. 6 杂交籼稻产量与稻米品质的相关分析

由图2可见,机插优质杂交籼稻产量与稻米品质间关系密切。实际产量与群体颖花量呈极显著正相关(P<0.01,下同);产量性状(实际产量和群体颖花量)与稻米蒸煮食味品质(胶稠度、碱消值和食味值)大多呈显著或极显著负相关,而与稻米加工品质(糙米率、精米率)、外观品质(垩白粒率、垩白度)和蛋白质含量呈显著或极显著正相关。食味值与胶稠度和碱消值呈极显著正相关;稻米蒸煮食味品质(食味值、胶稠度和碱消值)与加工品质(糙米率、精米率和整精米率)、外观品质(垩白粒率、垩白度)和蛋白质含量大多呈显著或极显著负相关。此外,稻米加工品质(糙米率、精米率)与外观品质(垩白粒率、垩白度)和蛋白质含量也大多呈显著或极显著正相关。说明机插杂交籼稻产量与蒸煮食味品质仍是一对矛盾,且稻米蒸煮食味品质与加工品质和外观品质也在一定程度上存在矛盾,而适宜的减氮量可在产量不显著降低前提下,获得较优的稻米加工品质和外观品质,改善稻米蒸煮食味品质。

3 讨论

氮肥是影响水稻产量和稻米品质形成的重要因素,减少氮肥施用量不仅会降低水稻产量,也会对稻谷加工品质和外观品质具有明显的负向调控效应(廖爽等,2018;李书先等,2019)。但也有研究发现,减少氮肥施用量可提高水稻产量(韩宝吉等,2011),并有利于提高稻谷糙米率、精米率和整精米率,降低垩白度(陶进等,2016;石吕等,2019)。机插水稻作为我国水稻机械化、轻简化栽培主要方式之一(彭少兵,2016),其需肥特性与传统移栽水稻有所差异(吕伟生等,2018)。本研究结果表明,减氮后机插杂交籼稻品种的群体颖花量和产量均逐渐降低,稻谷糙米率、精米率和整精米均表现出先增加后降低的变化趋势,稻米垩白粒率和垩白度持续降低,与人工移栽稻表现有所异同(张军等,2011;张自常等,2013;张桂莲等,2019)。与高产栽培施氮量相比,适量减氮(N-30)能够在不显著降低产量情况下改善机插杂交籼稻稻谷加工品质和外观品质,这主要是由于在品种最高产量施氮量条件下,适量减氮后机插杂交籼稻植株可通过自身调节维持一定的光合产物积累与转运,籽粒的充实度相对较高(王道中等,2012);而过量减氮(N-60)会造成机插杂交籼稻生育中后期形成氮素亏缺(汤国平等,2017),叶片衰老加快,光合产物不足,籽粒充实度差(姜玉伟等,2016),最终导致机插杂交籼稻产量显著降低,稻米加工品质呈显著下降趋势。

在人工移栽或直播稻相关研究中,稻米蒸煮食味品质与直链淀粉含量和蛋白质含量均呈负相关关系,胶稠度长、碱消值等级高(糊化温度低)、冷饭质地软、湿润且光滑的米饭口感更好(姚姝等,2016;石吕等,2019;胡雅杰等,2021)。本研究结果表明,减氮后机插杂交籼稻稻米蛋白质含量显著降低,胶稠度变长,直链淀粉含量增加,食味值得到明显提高,与机插粳稻相关研究结果基本一致(朱邦辉等,2015;唐健等,2020;张军等,2020)。其原因可能是由于机插杂交籼稻籽粒淀粉与蛋白质的合成也存在一定互补效应,减氮后机插杂交籼稻籽粒和叶片中蛋白质合成相关酶活性降低,淀粉合成酶活性增加(石吕等,2019),促进了杂交籼稻籽粒中淀粉的合成与积累,一定程度上改变了稻米内淀粉精细结构(张艳霞,2007),进而影响机插杂交籼稻稻米食味品质。可见,稻米蒸煮食味品质需从蛋白质及其组成、直链淀粉含量、淀粉精细结构和淀粉糊化特性等多方面综合评价。

高产和优质一直是水稻生产中存在的一对矛盾,稻米品质又是一个复杂性状(张昌泉等,2016;王丹英等,2021)。在实现水稻高产稳产的同时,如何协同实现较优的稻谷加工品质、外观品质和蒸煮食味品质一直是研究的热点。胡群等(2017)、陈梦云等(2017)研究表明,增施穗肥有利于提高机插优良食味粳稻产量,改善稻米的加工和營养品质,但对稻米外观品质和蒸煮食味品质有劣化作用;唐健等(2020)研究表明,施氮量180 kg/ha时机插优质晚稻的产量最高,且稻谷加工品质、外观品质、营养品质和蒸煮品质均有明显改善,但淀粉RVA谱有变劣的趋势。本研究结果表明,机插优质杂交籼稻产量与稻谷糙米率、精米率和蛋白质含量呈显著或极显著正相关,与胶稠度、食味值呈极显著负相关,与前人研究结果大致相同(陈梦云等,2017;胡群等,2017;廖爽等,2018;徐富贤等,2020)。同时,本研究也发现适量减氮(N-30)后机插杂交籼稻产量仍能达到9.80 t/ha以上的高产水平,且稻谷加工品质、外观品质和蒸煮食味品质均得到明显改善;而过量减氮(N-60)后虽能显著提高机插杂交籼稻稻谷外观品质和蒸煮食味品质,但稻谷加工品质有降低趋势,且水稻大幅度减产。因此,基于高产栽培施氮量180 kg/ha,减氮30 kg/ha有望协同实现机插杂交籼稻稳产与优质。

与此同时,本研究也发现机插杂交籼稻稻米品质指标在贵阳和湄潭试验点存在一定差异。试验点位置可反映出水稻全生育期综合生态对稻米品质的影响,海拔高度越高,稻米品质更优(赵正武等,2005)。本研究结果中,与湄潭相比,海拔高度相对高的贵阳试验点机插杂交籼稻稻米的胶稠度更长,食味值更高,稻米品质相对较优,与前人研究结果基本一致(徐富贤等,2012)。同时,灌浆结实期气温也对稻米品质具有重要影响(盛婧等,2007),一般而言,水稻籽粒灌浆结实期高温会导致糙米率、精米率和整精米率下降,稻米垩白粒率和垩白度增加(戴云云等,2009)。本研究结果表明,与湄潭点相比,贵阳试验点机插杂交籼稻稻米整精米率较低,这可能与该年度水稻生育后期的最低气温有关(蒋鹏等,2017)。与此同时,本研究也发现宜香优2115的垩白粒率和垩白度在湄潭点更低,而F优498则与之相反,但两试验点的土壤基本理化性质差异较小,说明生态条件对垩白粒率和垩白度的影响存在基因型差异。因此,因地制宜选择适宜的优质稻品种也是机插杂交籼稻减氮稳产提质栽培需考虑的重要因素。

4 结论

随着减氮程度的提高,机插杂交籼稻稻谷加工品质表现为先提高后降低,外观品质和蒸煮食味品质均能得到明显改善,但水稻产量持续降低。在贵阳和湄潭试验点,基于高产栽培施氮量180 kg/ha,适量减氮30 kg/ha后机插杂交籼稻可实现稳产优质协调的目标;而过量减氮60 kg/ha,机插杂交籼稻稻米外观品质和蒸煮食味品质虽有明显改善,但加工品质有劣化趋势,产量显著降低。

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