Page 172 - 《广西植物》2023年第2期
P. 172
3 6 6 广 西 植 物 43 卷
3.4 结论 affects soil water and photosynthesis of plastic ̄mulched maize
粉垄“145” 模式以粉垄耕作技术为核心创造 on the semiarid Loess Plateau of China [J]. Soil Till Resꎬ
有利于甘蔗生长的土壤环境ꎬ可使新植蔗根系更 196: 104479.
为发达ꎬ增强光合能力ꎬ促进地上部分的生长发 LI Hꎬ HUANG JLꎬ LI ZGꎬ et al.ꎬ 2021a. Fenlong tillage
increase soil nutrient availabilityꎬ and benefit vascular tissue
育ꎬ有利于干物质和糖分的积累ꎬ最终取得提质增
structure and nutrient absorption of sugarcane [ J]. Acta
产的效果ꎮ 其生理生态基础与传统粉垄的一致ꎮ Plant Nutr Fertꎬ 27(2): 204-214. [李浩ꎬ 黄金玲ꎬ 李志
同时ꎬ使用“ 一亩只耕三分地” 的整地开行方式和 刚ꎬ 等ꎬ 2021a. 粉垄耕作提高土壤养分有效性并促进甘
减少化学除草环节的投入ꎬ节省了成本ꎬ达到宽行 蔗维管组织发育和养分吸收 [J]. 植物营养与肥料学报ꎬ
休耕的目的ꎬ是粉垄“145”模式实现降本增效的主 27(2): 204-214.]
LI Hꎬ WEI BHꎬ HUANG JLꎬ et al.ꎬ 2021b. Effects of Fenlong
要原因ꎮ
cultivation on root cell structure and enzyme of respiratory
metabolic of sugarcane [J]. Sci Agric Sinꎬ 54(3): 522-
参考文献: 532. [李浩ꎬ 韦本辉ꎬ 黄金玲ꎬ 等ꎬ 2021b. 粉垄对甘蔗根
系结构发育及呼吸代谢相关酶活性的影响 [J]. 中国农
业科学ꎬ 54(3): 522-532.]
BAI Cꎬ 2021. Strengthen scientific and technological support
LI SLꎬ HUANG JLꎬWEI BHꎬ et al.ꎬ 2021. Effects of Fenlong
and promote the high ̄quality green development of sugar
tillage on photosynthetic and physiological characteristicsꎬ
industry [J]. Sugar Crop Chinꎬ 43(1): 62 - 66. [ 白晨ꎬ
2021. 强化科技支撑ꎬ 推进糖料产业高质量绿色发展 yield and quality of sugarcane ( Saccharum officinarum)
[J]. Chin J Trop Cropꎬ 42(3): 726-731. [李素丽ꎬ 黄金
[J]. 中国糖料ꎬ 43(1): 62-66.]
玲ꎬ 韦本辉ꎬ 等ꎬ 2021. 粉垄耕作对甘蔗光合生理特性及
CAI HGꎬ MA Wꎬ ZHANG XZꎬ et al.ꎬ 2014. Effect of subsoil
产量品质的影响 [J]. 热带作物学报ꎬ 42(3): 726-731.]
tillage depth on nutrient accumulationꎬ root distributionꎬ and
LI YBꎬ YUN HCꎬ YANG Xꎬ et al.ꎬ 2013. Effects of deep
grain yield in spring maize [J]. Crop Jꎬ 2(5): 297-307.
vertically rotary tillage on soil water and water use efficiency
CHEN GFꎬ TANG QZꎬ HUANG YYꎬ et al.ꎬ 2012. Primary
in northern China’ s Huang ̄huai ̄hai region [J]. Acta Ecol
research on causes and mechanism of young shoot etiolation
Sinꎬ 33(23): 7478-7486. [李轶冰ꎬ 逄焕成ꎬ 杨雪ꎬ 等ꎬ
in ratoon sugarcane crop [ J]. J S Agricꎬ 43 ( 1): 50 -
52. [陈桂芬ꎬ 唐其展ꎬ 黄玉溢ꎬ 等ꎬ 2012. 宿根甘蔗幼苗 2013. 粉垄耕作对黄淮海北部土壤水分及其利用效率的
影响 [J]. 生态学报ꎬ 33(23): 7478-7486.]
黄化的原因初探 [J]. 南方农业学报ꎬ 43(1): 50-52.]
LI ZSꎬ JIANG DHꎬ WEI BHꎬ 2020. Effects of Fenlong on
CHEN SLꎬ HU JMꎬ HUANG ZHꎬ et al.ꎬ 2020. Effects of smash
rhizosphere microorganisms and enzyme activities in
ridging on soil organic carbon mineralization and structure of
perennial sugarcane field [J]. New Agricꎬ (7): 45-47. [黎
sugarcane field in flat and slope farmland [ J]. Chin J
Agrometeorolꎬ 41(5): 299-307. [陈仕林ꎬ 胡钧铭ꎬ 黄忠 佐生ꎬ 蒋代华ꎬ 韦本辉ꎬ 2020. 粉垄耕作对宿根蔗地根际
华ꎬ 等ꎬ 2020. 粉垄耕作对平地和坡耕地蔗田土壤有机碳 微生物及酶活性的影响 [J]. 新农业ꎬ (7): 45-47.]
LIU JHꎬ 2019. Effects of Smash ̄ridging tillage on soil properties
矿化 和 结 构 的 影 响 [ J]. 中 国 农 业 气 象ꎬ 41 ( 5):
299-307.] and potato growth [D]. Yinchuan: Ningxia University: 32-
33. [刘江汉ꎬ 2019. 粉垄耕作对土壤性质及马铃薯生长
CHENG DJꎬ ZHANG YLꎬ 2012. Guidance for soil physics
experiment [ M ]. Beijing: China Water Resources and 的影响 [D]. 银川: 宁夏大学: 32-33.]
Hydropower Press: 17. [程东娟ꎬ 张亚丽ꎬ 2012. 土壤物理 LIU ZPꎬ 2018. Quality characteristics and regulation technique
实验指导 [M]. 北京: 中国水利水电出版社: 17.] of sugarcane cultivated ̄layer in red soil slope farmland
DAO JMꎬ FAN Xꎬ LI FQꎬ et al.ꎬ 2018. Sugarcane nutrition [D]. Chongqing: Southwest University: 23. [ 刘 志 鹏ꎬ
2018. 红壤坡耕地甘蔗耕层质量特征及调控技术研究
management and detection technology [M]. Beijing: China
Agricultural Press: 150-153ꎬ 166-167. [刀静梅ꎬ 樊仙ꎬ [D]. 重庆: 西南大学: 23.]
李复琴ꎬ 等ꎬ 2018. 甘蔗营养管理与检测技术 [M]. 北京: LUO Tꎬ WU JMꎬ DENG YCꎬ et al.ꎬ 2021. The status and
中国农业出版社: 150-153ꎬ 166-167.] etiology analysis of chlorosis disease of ratoon sugarcane in
GUAN DHꎬ AL ̄KAISI MMꎬ ZHANG YSꎬ et al.ꎬ 2014. Tillage Guangxi [J]. Sugarcane Canesugarꎬ 50(1): 68-73. [罗霆ꎬ
practices affect biomass and grain yield through regulating 吴建明ꎬ 邓宇驰ꎬ 等ꎬ 2021. 广西宿根甘蔗黄化病现状及
root growthꎬ root ̄bleeding sap and nutrients uptake in 病因分析 [J]. 甘蔗糖业ꎬ 50(1): 68-73.]
summer maize [J]. Field Crop Resꎬ 157: 89-97. NIE SWꎬ ZHANG YTꎬ ZHANG QPꎬ et al.ꎬ 2017. Effect of
HUANG JFꎬ KHAN MTꎬ PERECIN Dꎬ et al.ꎬ 2020. Sugarcane smashing ridge tillage on grain yields of winter wheat and
for bioethanol production: Potential of bagasse in Chinese summer maize and contents of soil nutrients [J]. Chin J Soil
perspective [J]. Renew Sustain Energy Revꎬ 133: 110296. Sciꎬ 48(4): 930-936. [聂胜委ꎬ 张玉亭ꎬ 张巧萍ꎬ 等ꎬ
LAMPTEY Sꎬ LI LLꎬ XIE JHꎬ et al.ꎬ 2020. Tillage system 2017. 粉垄耕作对小麦玉米产量及耕层土壤养分的影响