借用纖維測定儀研究棉花中纖維含量與土壤中氮元素的關係
棉花纖維的含量,決定棉花品質的優良,那麼棉花纖維含量是由什麼決定呢?下麵我們借用可以測量棉花纖維含量的纖維測定儀研究其纖維含量與土壤中氮元素的關係。
mianxianweicishengbijiahoufayuqishixianweibiqiangduxingchengdeguanjianshiqi。mianlingfayusuoxudeyangfenzhuyaolaiziqiduiweiguozhiye,juedingmianhuachanliangpinzhixingchengnenglideguozhiyedannongdushidanfeishiyongliang、土tu壤rang含han氮dan量liang和he棉mian株zhu吸xi氮dan量liang有you效xiao性xing的de最zui終zhong表biao現xian,研yan究jiu棉mian鈴ling對dui位wei葉ye氮dan濃nong度du變bian化hua特te征zheng與yu棉mian纖xian維wei次ci生sheng壁bi加jia厚hou發fa育yu期qi比bi強qiang度du形xing成cheng的de關guan係xi,可ke為wei調tiao控kong棉mian花hua生sheng產chan中zhong氮dan肥fei定ding量liang施shi用yong、棉纖維比強度的改善提供理論依據。
棉鈴對位葉氮濃度對纖維加厚發育相關酶活性變化及纖維比強度形成的影響。在棉纖維加厚發育過程中,定氮儀對位葉中的氮元素進行測量,控製氮濃度,然後研究纖維,發現纖維中蔗糖、葡聚糖和纖維素含量隨棉鈴對位葉氮濃度的增加呈拋物線型變化,蔗糖、纖xian維wei素su累lei積ji與yu纖xian維wei比bi強qiang度du形xing成cheng的de最zui佳jia棉mian鈴ling對dui位wei葉ye氮dan濃nong度du變bian化hua曲qu線xian相xiang吻wen合he,葡pu聚ju糖tang含han量liang與yu纖xian維wei比bi強qiang度du形xing成cheng的de最zui佳jia對dui位wei葉ye氮dan濃nong度du差cha異yi較jiao大da。通tong過guo凱氏定氮儀測量出來的氮濃度,反映了棉鈴對位葉氮濃度棉鈴發育的氮營養狀況,在棉纖維加厚發育過程中,均存在一個有利於蔗糖、葡聚糖、纖維素累積及高強纖維形成的最佳對位葉氮濃度。棉纖維中較高的蔗糖和纖維素含量有利於纖維比強度的形成;棉(mian)纖(xian)維(wei)加(jia)厚(hou)發(fa)育(yu)前(qian)期(qi)較(jiao)高(gao)的(de)葡(pu)聚(ju)糖(tang)含(han)量(liang)有(you)利(li)於(yu)纖(xian)維(wei)比(bi)強(qiang)度(du)的(de)形(xing)成(cheng),後(hou)期(qi)則(ze)對(dui)纖(xian)維(wei)比(bi)強(qiang)度(du)形(xing)成(cheng)的(de)作(zuo)用(yong)降(jiang)低(di)。不(bu)同(tong)品(pin)種(zhong)纖(xian)維(wei)比(bi)強(qiang)度(du)形(xing)成(cheng)的(de)對(dui)位(wei)葉(ye)適(shi)宜(yi)氮(dan)濃(nong)度(du)差(cha)異(yi)較(jiao)大(da),進(jin)一(yi)步(bu)說(shuo)明(ming)對(dui)位(wei)葉(ye)氮(dan)濃(nong)度(du)顯(xian)著(zhu)影(ying)響(xiang)棉(mian)花(hua)纖(xian)維(wei)加(jia)厚(hou)發(fa)育(yu)纖(xian)維(wei)中(zhong)糖(tang)類(lei)物(wu)質(zhi)的(de)變(bian)化(hua),進(jin)而(er)影(ying)響(xiang)纖(xian)維(wei)比(bi)強(qiang)度(du)的(de)形(xing)成(cheng)。
分析棉纖維加厚發育過程中棉鈴對位葉氮濃度對棉纖維加厚發育過程中關健酶(蔗糖酶、蔗糖合成酶、磷酸蔗糖合成酶、葡聚糖酶)活性變化的影響及纖維比強度形成的影響發現:棉纖維發育關鍵酶活性均受棉鈴對位葉氮濃度的影響,在棉纖維發育各鈴齡期,纖維中蔗糖酶、蔗糖合成酶、磷酸蔗糖合成酶、葡聚糖酶、纖維素隨棉鈴對位葉氮濃度增加呈拋物線形變化,棉鈴對位葉中均存在一個有利於蔗糖酶、蔗糖合成酶、磷酸蔗糖合成酶、pujutangmeidezuijiaduiweiyedannongdu。mianlingduiweiyedannongdutongguotiaokongxianweifayuguanjianmeihuoxingbianhualaiyingxiangxianweisudeleiji,jineryingxiangxianweibiqiangdudexingcheng。zaixianweifayugelingqi,zhetanghechengmei、linsuanzhetanghechengmeiyuxianweisuleijijixianweibiqiangxingchengdezuijiayedannongdubianhuaquxianxiangwenhe,shuomingzhetanghechengmeihelinsuanzhetanghechengmeihuoxingyuxianweibiqiangdexingchenggaoduzhengxiangguan;蔗糖酶、pujutangmeiyuxianweisuleijijixianweibiqiangduxingchengdezuijiamianlingduiweiyedannongduchayijiaoda,zaimianxianweifayuqianqijiaogaodezhetangmeiyouliyuxianweibiqiangdudexingcheng,houqizeduixianweibiqiangduxingchengdezuoyongjiangdi。pujutangmeidezuoyongyuqixiangfan,zaifayuhouqi,pujutangmeiduixianweibiqiangduxingchengdezuoyongzengjia。zailingling24d、 3ld、38d、45d、52d,德夏棉1號、科棉1號和美棉33B的纖維比強度形成的最佳對位葉氮濃度範圍分別為3.06%、2.73%、2.65%、2.43%左右,2.74%、2.51%、2.40%、2.28%、2.16%左右和2.94%、2.65%、2.52%、2.44%、2.28%左右。
yinweidanyuansuzaihendachengdushangjuedinglemianhuaxianweidehechengliang,buguanshicongxianweizuchenghaishihechengxianweidemeidezucheng,buguodanyuansubingbushixianweihanliangdeweiyiyinsu,qitadeyixiewaijiehuanjingyinsu、棉花品種因素等都會影響棉花纖維量。



