不同抗旱性春小麦品种资源利用效率及其权衡
[Abstract]:The efficient utilization and tradeoff strategy of plant resources is one of the hot issues in plant ecology and agroecology. Light energy, water and nitrogen are essential resources for plant growth. The relationship between environmental supply level and plant acquisition capacity, utilization efficiency, plant canopy and root structure, and the response of biomass allocation to water and nitrogen levels need to be further studied. In this study, three spring wheat varieties with different drought resistance were used as materials, different water and nitrogen supply levels were set up, and the canopy, root system structure and function of spring wheat were studied through field experiments. The responses of biomass accumulation and allocation to water and nitrogen levels were analyzed. The utilization efficiency of nitrogen, water and light energy and their trade-offs were analyzed in spring wheat varieties. The main results were as follows: (1) there were significant differences in phenotype (canopy height, specific leaf area, leaf inclination, root length, root tip number, root mean diameter, root volume, root surface area, root projection area) among the three spring wheat varieties. Specific leaf area, leaf inclination, soluble sugar, soluble protein, proline and nitrogen content in canopy were significantly different at vertical level. The drought-resistant varieties had large root system, high canopy, high content of leaf osmotic regulator, low transpiration rate and strong ability to absorb and maintain soil water and nitrogen. Ningchun 4, a non-drought-resistant variety, has compact plant type, obvious vertical distribution gradient of nitrogen in canopy, strong ability to capture and utilize light resources, high distribution ratio of photosynthetic electron to photochemical reaction direction and high net photosynthetic rate. The increase of irrigation water and appropriate amount of nitrogen application (when applying nitrogen 150kg hm-2, Ningchun 4 at N 225kg hm-2) could change the structure and function of root system by changing the canopy of wheat. (2) the reproductive allocation, grain yield, irrigation water use efficiency and yield components of Ningchun No. 4 were significantly higher than those of drought-resistant varieties (number of effective panicles, number of kernels per ear, 1000-grain weight). The biological yield and biomass of each organ of Xihan 2 were the largest, and the light energy utilization efficiency was the highest. The biomass water use efficiency of Heshantou was the highest. Drought resistant cultivar HeShangtou and Xihan 2 had low sensitivity to soil moisture and high sensitivity to nitrogen, but the non-drought-resistant cultivar Ningchun 4 was opposite. The effect of reducing irrigation on the biomass water use efficiency of drought resistant varieties was obvious, and the increase of nitrogen level to the biomass nitrogen use efficiency and grain nitrogen contribution rate of drought-resistant varieties was higher than that of non-drought resistant varieties. The biomass water use efficiency of the three wheat varieties decreased significantly after the increase of irrigation amount. With the increase of nitrogen application level, the amount of nitrogen in wheat plants increased, and the nitrogen use efficiency (nitrogen dry matter production efficiency, nitrogen harvest index, agricultural efficiency of nitrogen fertilizer) was increased. (3) nitrogen dry matter production efficiency was negatively correlated with light energy use efficiency, biomass water use efficiency, and light energy use efficiency was positively correlated with biomass water use efficiency. Therefore, there is an obvious trade-off relationship between nitrogen use efficiency and light energy, water use efficiency of spring wheat. In this study, the resource utilization efficiency of wheat varieties with different drought resistance and their responses to water and nitrogen levels were discussed, which provided a scientific basis for better understanding of the trade-offs among plant light energy, water use efficiency and nitrogen use efficiency. It is clear that irrigation and nitrogen application level are beneficial to improve the resource utilization efficiency of different drought-resistant varieties and have important practical guiding significance for the efficient utilization of agricultural resources in oasis irrigation area.
【学位授予单位】:甘肃农业大学
【学位级别】:博士
【学位授予年份】:2016
【分类号】:S512.12
【相似文献】
相关期刊论文 前10条
1 ;酒春3号春小麦[J];中国农村科技;2006年11期
2 李华;赵展;;西北水地春小麦品种试验审定现状浅析[J];农业科技通讯;2007年11期
3 刘明;宋伟;陈辉;郭彦泰;;高产优质春小麦品种(系)筛选初报[J];现代化农业;2008年05期
4 张世武;;春小麦新品种西旱1号在不同种植模式下的表现[J];甘肃农业;2010年09期
5 王术;黄元财;贾宝艳;;优质高产春小麦新品种—沈麦112[J];麦类作物学报;2011年01期
6 周祥椿;;我国春小麦的栽培[J];生物学通报;1958年02期
7 ;六个墨西哥春小麦品种简介[J];甘肃农业科技;1974年02期
8 闻章;;春小麦播前加热通风能增产[J];宁夏农业科技;1983年01期
9 蔡雪强,李勇;春小麦品种比较试验[J];新疆农业科技;1997年06期
10 周庆珍,廉洪奎,王忠宝;春小麦品种垦红14[J];作物杂志;1999年05期
相关会议论文 前9条
1 韩开明;张永平;关文雯;李元清;;抗旱节水春小麦品种鉴选指标比较研究[A];第十五次中国小麦栽培科学学术研讨会论文集[C];2012年
2 吴振录;;超高产优质中筋春小麦品种新春6号[A];中国原子能农学会第七次代表大会暨学术研讨会论文集[C];2004年
3 陈坤明;宫海军;朱学艺;陈国仓;张承烈;;干旱期间春小麦不同发育阶段的抗氧化特征[A];西部地区第二届植物科学与开发学术讨论会论文摘要集[C];2001年
4 陈坤明;宫海军;陈国仓;王锁民;张承烈;;春小麦干旱响应中的谷胱甘肽代谢、氧化还原平衡及能量供应[A];中国植物生理学会全国学术年会暨成立40周年庆祝大会学术论文摘要汇编[C];2003年
5 王广金;闫文义;张宏纪;孙岩;黄景华;刁艳玲;郭强;孙光祖;;利用航天诱变进行春小麦品种改良的研究[A];全国作物生物技术与诱变技术学术研讨会论文摘要集[C];2005年
6 冯虎元;安黎哲;强维亚;徐世健;王勋陵;;增强的UV-B辐射和干旱对春小麦生长、发育和稳定碳同位素组成的影响[A];中国植物学会七十周年年会论文摘要汇编(1933—2003)[C];2003年
7 吴振录;蔡晓莉;王子霞;李剑峰;;新疆春小麦的HMW-GS组成和子粒品质研究[A];全国作物生物技术与诱变技术学术研讨会论文摘要集[C];2005年
8 张磊;王连喜;张晓煜;袁海燕;亢艳莉;;UV-B增强对中高海拔干旱半干旱地区春小麦植株形态的影响[A];中国气象学会2006年年会“气候变化及其机理和模拟”分会场论文集[C];2006年
9 马雅琴;翁跃进;;春小麦品种耐盐性鉴定评价[A];2003年全国作物遗传育种学术研讨会论文集[C];2003年
相关重要报纸文章 前10条
1 崔成龙;黑龙江垦区调整春小麦品种结构[N];中国商报;2000年
2 新疆农科院 李建疆;春小麦品种及栽培要点[N];新疆科技报(汉);2013年
3 记者 马效军 实习生 朱富林;甘肃省育出“西旱2号”春小麦新品种[N];甘肃日报;2007年
4 马效军 朱富林;甘肃育出“西旱2号”春小麦新品种[N];农资导报;2007年
5 崔成龙;黑龙江垦区春小麦产销两旺[N];新华每日电讯;2000年
6 李永威;浅议黑龙江春小麦[N];粮油市场报;2001年
7 张革文;我省“国字号”春小麦品种实现零的突破“西旱1号”通过国家审定[N];甘肃日报;2005年
8 王茜;“新春8号”独占鳌头[N];农民日报;2002年
9 本报记者 张慧疆;高产春小麦要抓好三部曲[N];巴音郭楞日报;2008年
10 陈星;耐盐春小麦“新春29号”的栽培[N];新疆科技报(汉);2009年
相关博士学位论文 前2条
1 张凯;不同抗旱性春小麦品种资源利用效率及其权衡[D];甘肃农业大学;2016年
2 索全义;内蒙古平原灌区春小麦品质特性及形成机理的研究[D];内蒙古农业大学;2007年
相关硕士学位论文 前10条
1 常磊;西北旱地春小麦农艺指标变异及稳定性分析[D];甘肃农业大学;2008年
2 张涛;春小麦水氮利用特性及相关性的研究[D];甘肃农业大学;2009年
3 李斐;不同品种春小麦养分吸收动态模型及分布规律的研究[D];内蒙古农业大学;2002年
4 周静;黄土高原丘陵沟壑区不同保护性耕作下春小麦应对干旱胁迫的生理响应[D];甘肃农业大学;2009年
5 李瑞娟;土壤—春小麦系统水分运移过程的实验研究[D];西北农林科技大学;2012年
6 栾姗姗;新疆不同类型春小麦品种产量和品质形成规律研究[D];新疆农业大学;2012年
7 梁洪艳;黑龙江省春小麦耐盐性的研究[D];东北农业大学;2007年
8 石书兵;旱作春小麦品种高产抗旱特性的综合评价[D];新疆农业大学;2000年
9 邵兴华;营养条件对春小麦干物质累积、养分吸收的影响[D];内蒙古农业大学;2002年
10 蔡晓莉;新疆春小麦主栽品种和新品种的抗旱性和品质研究[D];新疆农业大学;2005年
,本文编号:2376920
本文链接:https://www.wllwen.com/shoufeilunwen/nykjbs/2376920.html