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1.
不同磷源对红三叶草根际和菌根际磷酸酶活性的影响   总被引:17,自引:2,他引:15  
以红三叶草为研究对象,利用三室培养系统,在接种菌根真菌(Glomus mosseae)的条件下研究了不同磷源对根际和菌根际磷酸酶活性的影响,植株生长8周后收获并测定根室、菌丝室的土壤磷酸酶活性、植株干重及含磷量.结果表明,根室酸性磷酸酶活性比碱性磷酸酶活性更裔,接种条件下二者都稍有增加,特别是在供给有机磷(植酸钠)的条件下明显增加了菌丝室土壤磷酸酶活性.接种菌根真菌显著增加了植株干重、磷含量和总磷吸收.施用磷酸二氢钾(KH2PO4)时菌丝吸磷量占吸磷总量的43.1%,而施用植酸钠(Na-phytate)时菌丝吸磷量占吸磷总量的60.8%。  相似文献   

2.
为探讨低磷胁迫下甘蓝型油菜酸性磷酸酶活性的基因型差异及其与磷效率的关系, 采用土培实验研究了磷高效基因型102和磷低效基因型105对有机磷和无机磷的利用及其根际土壤酸性磷酸酶活性差异; 并采用水培实验研究了甘蓝型油菜根系分泌的酸性磷酸酶及不同叶片酸性磷酸酶的活性差异. 结果表明, 低磷胁迫能诱导根系及根系分泌的酸性磷酸酶活性升高; 土培条件下, 由于酸性磷酸酶的有效性受较多因素影响, 植物的磷营养和磷吸收效率与根系分泌的酸性磷酸酶活性并不直接相关; 缺磷胁迫下重组自交系群体叶片酸性磷酸酶活性与磷利用效率呈显著正相关, 进一步表明低磷诱导的植株叶片酸性磷酸酶活性升高能促进体内磷的再利用, 从而提高磷利用效率.  相似文献   

3.
接种不同VA菌根真菌对红三叶草利用不同磷源的影响   总被引:5,自引:1,他引:4  
宋勇春  冯固  李晓林 《生态学报》2001,21(9):1506-1511
以红三叶草为材料,利用三室隔网培养方法,研究了施用不同磷源条件下,接种VA菌根真菌(Glomusmosseae和Glomusversiforme)对外加有机磷源及土壤有机磷的利用效率.植物生长10周后,测定植株干物重、含磷量、菌根侵染率及根系长度.结果表明接种菌根真菌能明显增加植株干物重和含磷量.接种条件下无机磷(KH2PO4)对植株生长的促进作用大于有机磷(Na-phytate)处理,接种Glomusversoiforme的作用明显大于接种Glomusmosseae.接种Glomusmosseae,植株对磷酸二氢钾中磷的吸收量明显大于植酸钠,而接种Glomusversiforme时则植株对植酸钠的磷吸收量明显高于磷酸二氢钾.上述结果说明接种两菌种对不同磷源的作用不同,接种Glomusmosseae可提高磷酸二氢钾中磷的利用率,接种Glomusversiforme则可提高对植酸钠的磷利用率.  相似文献   

4.
接种不同VA菌根真菌对红三中草利用不同磷源的影响   总被引:2,自引:0,他引:2  
宋勇春  冯固等 《生态学报》2001,21(9):1506-1511
以红三叶草为材料,利用三室隔网培养方法,研究了施用不同磷源条件下,接种VA菌根真菌(Glomus mosseae和Glomus versiforme)对外加有机磷源及土壤有机磷的利用效率,植物生长10周年,测定植株博干物重、含磷量、菌根侵染率及根系长度,结果表明:接种菌根真菌能明显增加植干物重和含磷量。接种条件下无机磷(KH2PO4)对植株生长的促进作用大于有机磷(Na-phytate)处理,接种Glomus versofrorme的作用明显大于接种Glomus mosseae。接种Glomus mosseae,植株对磷酸二氢钾中磷的吸收量明显大于植酸钠,而接种Glomus versiforme时则植株对植酸钠的磷吸收量明显高于磷酸二氢钾。上述结果说明接种两菌种对不同磷源的作用不同,接种Glomus mosseae可提高磷酸二氢钾中磷的利用率,接种Glomus versiforme则可提高对植酸的磷利用率。  相似文献   

5.
通过分根处理研究了部分根系供磷对黄瓜幼苗生长、植株体内的含磷量及根系酸性磷酸酶活性的影响。结果表明 ,2 0 %根系缺磷 (1条根缺磷 ,4条根供磷 )可以促进根系及植株地上部的生长 ,其根系及地上部的生物量分别是正常生长植株的 1.39倍和 1.2 1倍。2 0 %根系缺磷 ,还可以促进其它供磷根系对磷的吸收。分根处理后 ,2 0 %根系缺磷不影响植物对磷营养的需要 ,但却表现出了R/S比增大的典型缺磷反应 ,说明植物感应缺磷根系起着比地上部更为重要的作用。分根处理后不供磷根系的酸性磷酸酶活性显著高于供磷根系的酸性磷酸酶活性 ,并且根系的酸性磷酸酶活性只与根系的含磷量显著相关 ,与地上部的磷营养状况关系不明显。这说明 ,缺磷条件下 ,黄瓜植株根系分泌酸性磷酸酶活性的增高 ,是黄瓜根系对低磷胁迫的适应性机理 ,而不是地上部改善体内磷营养的调控机理。  相似文献   

6.
丛枝菌根真菌(AMF)能够通过增强宿主植物根系分泌酸性磷酸酶帮助其适应低磷环境,但这种可塑性改变能否跨世代传递并影响后代适应低磷环境,仍不清楚。本研究通过亲代实验(实验1)和子代实验(实验2),研究AMF影响宿主植物蒺藜苜蓿(Medicago truncatula)根系酸性磷酸酶分泌的跨世代效应。实验1表明,土壤低磷水平下接种AMF的亲代宿主植物根系酸性磷酸酶活性显著提高,且根际土中有更高的酸性磷酸酶活性和有效磷含量。而高磷水平下,接种AMF处理的宿主植物酸性磷酸酶活性与不接种AMF的处理无显著差异。实验2表明,在当代低磷环境下,来自亲代低磷接种AMF的后代,其根系和根系分泌的酸性磷酸酶活性显著高于来自亲代低磷不接种AMF的后代,而亲代高磷处理的后代(有AMF和无AMF)之间酸性磷酸酶活性无显著差异。在当代高磷环境下,来自亲代不同处理的后代根系和根系分泌的酸性磷酸酶活性均无显著差异。本研究表明,AMF对宿主植物根系分泌酸性磷酸酶的生理可塑性能够跨世代传递,且该跨世代效应受到亲代磷水平的影响。  相似文献   

7.
采用三室隔网培养装置,以玉米为宿主植物,接种丛枝菌根真菌(AM)(Glomus intraradices),研究了不同用量的植酸钠对AM真菌生长和代谢活性的影响.研究发现,接种AM真菌的植株地上部和根系的P浓度和吸P量,比非菌根植物的提高了1~2倍.外源植酸钠的存在,显著降低了AM真菌根内菌丝的碱性磷酸酶活性,增加了AM真菌在土壤中的菌丝密度.结果表明,外源植酸钠对根内AM真菌碱性磷酸酶活性和真菌根外菌丝的生长具有调控(增减)作用,并且AM真菌提高了植物对土壤固有养分和外源植酸钠中P的吸收和利用.  相似文献   

8.
李鑫强  朱培  李振轮 《菌物学报》2013,32(2):261-268
金龟子绿僵菌Metarhizium anisopliae是一种广泛分布于世界各地土壤中的重要的昆虫病原真菌。已有研究表明,胞外磷酸酶在绿僵菌侵染并致死寄主过程中发挥了重要作用。利用摇瓶培养方法探究了无机磷(KH2PO4)、简单有机磷(植酸钠、磷酸苯二钠)和蛋白有机磷(酪蛋白)为单独磷源条件下,绿僵菌生物量、产胞外酸性磷酸酶以及酪氨酸蛋白磷酸酶、丝/苏氨酸蛋白磷酸酶活性的变化。实验结果显示:加入酪蛋白的培养基,最有利于绿僵菌生长、胞外蛋白的分泌和产酸性磷酸酶;其次为加入KH2PO4和磷酸苯二钠的培养基;加入植酸钠的培养基不利于绿僵菌的生长代谢。然而,加入磷酸苯二钠的培养基,最有利于酪氨酸蛋白磷酸酶、丝/苏氨酸蛋白磷酸酶的分离纯化。  相似文献   

9.
AM真菌对枳吸收磷和分泌磷酸酶的影响   总被引:1,自引:0,他引:1  
《菌物学报》2017,(7):942-949
研究0.1mmol/L P和1mmol/L P下接种丛枝菌根(AM)真菌Funneliformis mosseae对沙培枳Poncirus trifoliata实生苗P吸收、转运和分泌磷酸酶的影响。结果显示,在0.1mmol/L P和1mmol/L P下,接种AM真菌都增加了枳地上部和地下部干重、一级侧根和二级侧根数,但1mmol/L P下接种AM真菌显著降低了枳主根长。与不接种AM真菌相比,1mmol/L P下接种AM真菌显著降低了枳叶片酸性磷酸酶活性,但显著增加了根系酸性磷酸酶活性及根系分泌酸性磷酸酶基因Pt PAP1的表达水平。接种AM真菌显著增加了0.1mmol/L P和1mmol/L P下叶片磷含量,根系磷含量仅在1mmol/L P下接种AM真菌后显著增加。在0.1mmol/L P和1mmol/L P下接种AM真菌显著降低了枳叶片(PtPAP1和PtPAP3)和根系(PtPAP3)分泌磷酸酶基因以及叶片磷转运蛋白基因(PtaPT5和PtaPT6)的表达水平,显著增加了枳根系PtaPT3、PtaPT5和PtaPT6的表达量。因此,推断接种AM真菌能刺激枳侧根数增多和酸性磷酸酶分泌,增强磷转运蛋白基因的表达,从而改善枳对磷养分的吸收。  相似文献   

10.
低磷胁迫下大麦叶片磷素利用特征   总被引:2,自引:1,他引:1  
以大麦(Hordeum vulgare)磷高效基因型(DH110和DH147)和低效基因型(DH49)为材料, 采用盆栽实验研究大麦在极低磷(25 mg·kg-1土)、低磷(50 mg·kg-1土)和正常磷(75 mg·kg-1土)处理下叶片的磷组分和酸性磷酸酶活性特征。结果表明, 低磷胁迫显著降低大麦叶片的无机磷含量, 但对难溶态磷含量影响较小。高效基因型上部叶核酸态磷含量显著高于低效基因型, 而下部叶则显著低于低效基因型, 是低效基因型的18.4%-91.4%。大麦下部叶酯磷含量和分配比例表现为高效基因型低于低效基因型, 而上部叶仅在低效基因型中显著低于高效基因型。核酸态磷和酯磷在高效基因型叶片中的含量分配表明其上部叶的磷素营养状况较优, 而下部叶易溶性有机磷的分解转化作用更强。低磷和极低磷胁迫下, 下部叶酸性磷酸酶的活性显著增加, 且高效基因型显著高于低效基因型, 分别为低效基因型的1.29-1.41倍。磷高效基因型大麦通过提高下部叶酸性磷酸酶活性加强酯磷和核酸态磷的分解, 转化为无机磷, 增加可移动性磷源的含量和比例, 以提高生育后期大麦的磷素再利用能力。  相似文献   

11.
Seedlings of six temperate pasture species, three grasses and three legumes, were grown for 19–24 days in sterile agar or sand-vermiculite media, in the presence of inorganic phosphate (Pi), glucose 1-phosphate (G1P) or inositol hexaphosphate (IHP). Agar (pH 5.0) had a low IHP-sorbing capacity while IHP was almost completely sorbed in sand-vermiculite. Pi and G1P were relatively available in both media. Growth of each species was measured in relation to phosphorus (P) supply and levels of Pi supply at which shoot yields reached 90% of maximum yield (Pcrit) were determined. Pcrit values were generally higher for the legume species than for the grasses, and were six-fold higher for Trifolium subterraneum L. seedlings when grown in sand-vermiculite relative to agar. When supplied with G1P, seedlings of the six species grew as well as plants supplied with Pi. By contrast, IHP was a poor source of P for plant growth, even when supplied in agar at levels up to 40-fold greater than Pcrit. Using the growth of T. subterraneum in the presence of IHP, it was calculated that roots released approximately 0.09 nkat phytase g-1 root dry wt per day, over 20 days of growth. By supplementing agar containing IHP with phytase from Aspergillus niger (E.C. 3.1.3.8; 0.012 nkat plant-1, or 1.3 nkat g-1 root dry wt), sufficient P became available to enable T. subterraneum seedlings to grow as well as Pi-supplied plants. These results indicate that while pasture plants can quite effectively use P from some organic P sources (e.g. G1P), the acquisition of phytate-P is limited both by availability of substrate and the capacity of plant roots to hydrolyse available IHP. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

12.
通过土培盆栽试验,研究了16份野生大麦种质资源在相同供磷水平下磷素吸收利用的基因型差异,探讨磷高效野生大麦根际土壤无机磷组分特征.结果表明:拔节期和扬花期磷素干物质生产效率(CV=11.6%、12.4%)、成熟期磷素籽粒生产效率(CV=13.7%)基因型间差异较大.不同生育时期磷高效基因型IS-22-30和IS-22-25生物量、磷积累量和磷素干物质生产效率均显著高于低效基因型IS-07-07,且高效基因型的籽粒产量分别是低效基因型的3.10和3.20倍.不施磷、施磷30 mg·kg-1条件下,不同磷素利用效率野生大麦根际土壤有效磷和水溶性磷含量均显著低于非根际土壤,且高效基因型较低效基因型根际土壤水溶性磷亏缺量更大.根际与非根际土壤无机磷组分含量为Ca10-P>O-P>Fe-P>Al-P>Ca2-P>Ca8-P.在拔节期和扬花期,施磷30 mg·kg-1条件下,磷高效基因型根际土壤Ca8-P含量显著高于低效基因型,而Ca2-P含量显著低于低效基因型;不施磷条件下,高效基因型根际土壤Ca2-P和Ca8-P含量均显著高于低效基因型,且根际土壤Ca10-P均减少.施磷30 mg·kg-1条件下,根际土壤Fe-P和O-P含量均表现为高效基因型显著高于低效基因型,Al-P含量则呈现相反的趋势;不施磷条件下,高效基因型根际土壤Al-P、Fe-P和O-P含量均显著低于低效基因型.低磷胁迫下,高效基因型活化吸收Ca2-P、Al-P的能力强于低效基因型.  相似文献   

13.
不同有机无机复混肥对水稻产量和氮素利用率的影响   总被引:19,自引:0,他引:19  
通过田间试验,研究了菜粕堆肥、猪粪堆肥和中药渣堆肥有机无机复混肥与化肥对常优1号水稻产量、氮素利用效率、土壤供氮特征以及土壤微生物多样性的影响.结果表明:各施氮肥处理的稻谷产量(7918.8~9449.2 kg·hm-2)均显著高于对照(6947.9 kg·hm-2),其中有机无机复混肥处理的稻谷产量(8532.0~9449.2 kg·hm-2)显著高于化肥处理(7918.8 kg·hm-2),比化肥处理增产7.7%~19.3%;菜粕堆肥、猪粪堆肥、中药渣堆肥有机无机复混肥处理的氮素积累量、氮素转运率、氮素回收率和氮肥农学利用效率及生理利用效率均显著高于化肥处理;有机无机复混肥处理明显提高了土壤矿质氮含量,改善了土壤供氮特性,提高了氮利用率;对各处理土壤DNA条带采用邻接法分析显示:5个处理土壤样品可分为三大族群,化肥与对照处理为第一族群,猪粪堆肥、中药渣堆肥处理为第二族群,菜粕堆肥处理属第三族群.表明施入外源有机物质(菜粕、猪粪与中药渣)可能会改变土壤的细菌群落结构,而施入化肥对土壤的细菌群落结构影响较小.  相似文献   

14.
Wheat seedlings exhibited a differential ability to utilize P from a range of organic P substrates when grown in agar culture under sterile conditions. Plants showed limited ability to obtain P from inositol hexaphosphate (IHP), whereas other monoester substrates such as glucose 1‐phosphate (G1P), were equivalent sources of P for plant growth as compared with inorganic phosphate (Pi). Poor utilization of IHP was exemplified by significantly lower rates of dry matter accumulation and reduced P content of tissues, which were generally not significantly different to control plants that were grown in the absence of added P. The inability of wheat seedlings to obtain P from IHP was not associated with poor substrate availability but was due to either insufficient root phytase activity or inappropriate localization of phytase within root tissues. Phytase activities of 4 and 24 mU g ? 1 root fresh weight (FW) were determined for crude root extracts prepared from plants that were grown with either adequate P or under deficient conditions, respectively. Similar levels of phytase activity (approximately 12 mU g ? 1 FW) were observed in assays using intact roots, although no secreted activity was detected. By comparison, a secreted acid phosphomonoesterase activity was observed, and activities of between 466 and 1029 mU phosphomonoesterase g ? 1 root FW were measured for intact roots. On the basis of the differences in enzyme activity, and the observed differences in the ability of wheat seedlings to utilize G1P and IHP, it is evident that low intrinsic levels of phytase activity in wheat roots is a critical factor that limits the ability of wheat to obtain P from phytate when supplied in agar under non‐limiting conditions. This hypothesis was further supported by the observation that the ability of wheat to obtain P from IHP was significantly improved when the seedlings were inoculated with a soil bacterium (Pseudomonas sp. strain CCAR59) that possesses phytase activity.  相似文献   

15.
耐低磷水稻基因型筛选指标的研究   总被引:29,自引:1,他引:29  
采用溶液培养试验,并结合大田试验,研究和探讨了耐低磷水稻基因型的筛选指标.结果表明,溶液培养试验中,在正常供磷和低磷胁迫条件下,在所有调查性状中水稻单株干重都具有较大的基因型间变异(CV分别为21.73%和19.54%).在所有调查性状的相对值中,相对单株干重(低磷胁迫/正常供磷)也具有较大的基因型间变异(CV为19.60%);相关分析表明,相对单株干重与相对根干重、相对株高、相对单株吸磷量、相对地上部磷积累、相对磷利用效率和相对植株磷浓度均呈极显著正相关(P<0.01).因此,水稻相对单株干重可以作为苗期筛选水稻耐低磷基因型的一个筛选指标.溶液培养试验中水稻的相对单株干重和大田试验中水稻的相对稻谷产量(不施磷/施磷)没有显著相关性,因此溶液培养试验的相对单株干重不能作为评价大田试验中水稻耐低磷能力的指标.低磷营养液培养的水稻体内磷利用效率与缺磷土壤生长的水稻体内磷利用效率呈极显著正相关.因此,直接以低磷营养液培养水稻苗期体内磷利用效率作为筛选指标,然后进行大田试验验证,是一条筛选水稻磷高效利用基因型的有效途径.  相似文献   

16.
The variation of seedling characteristics under different water supply conditions is strongly associated with drought resistance in rice (Oryza sativa L.) and a better elucidation of its genetics is helpful for improving rice drought resistance. Ninety-six doubled-haploid (DH)rice lines of an indica and japonica cross were grown in both flooding and upland conditions and QTLs for morphological traits at seedling stage were examined using 208 restriction fragment length polymorphism (RFLP) and 76 microsatellite (SSR) markers. A total of 32 putative QTLs were associated with the four seedling traits: average of three adventitious root lengths (ARL), shoot height (SH), shoot biomass (SW), and root to shoot dry weight ratio (RSR). Five QTLs detected were the same under control and upland conditions. The ratio between the mean value of the seedling trait under upland and flooding conditions was used for assessing drought tolerance. A total of six QTLs for drought tolerance were detected. Comparative analysis was performed for the QTLs detected in this case and those reported from two other populations with the same upland rice variety Azucena as parent. Several identical QTLs for seedling elongation across the three populations with the positive alleles from the upland rice Azucena were detected, which suggests that the alleles of Azucena might be involved in water stress-accelerated elongation of rice under different genetic backgrounds. Five cell wall-related candidate genes for OsEXP1, OsEXP2, OsEXP4, EXT, and EGase were mapped on the intervals carrying the QTLs for seedling traits.  相似文献   

17.
A greenhouse experiment was carried out to study the severity of phosphorus (P) deficiency symptoms on leaves, shoot dry matter production, and shoot concentration and content (the total amount per shoot) of P in 39 bread wheat (Triticum aestivum L.) and 34 durum wheat (Triticum durum L.) genotypes grown in a severely P-deficient calcareous soil with low (20mgPkg−1 soil) and adequate (80mgPkg−1 soil) P supply for 39 days. As the seed P concentration or content can affect plant performance under P-deficient conditions, the seeds of the genotypes used in the present study were also analyzed for P concentration. Phosphorus efficiency (relative shoot growth) of genotypes, calculated by the ratio of shoot dry matter production under low P to that under adequate P supply, significantly differed among the genotypes, and varied between 46.7% and 78.6%. Phosphorus efficiency ranged from 51% to 71% with an average of 61% for bread and from 47% to 79% with an average of 66% for durum wheat genotypes. There was no correlation between P efficiency ratio and P concentration of plants (R 2=0.0001), but P efficiency of all bread and durum wheat genotypes showed a very significant correlation with the P content (the total amount of P per shoot) (R 2=0.333***). The relationship between the P efficiency and total amount of P per shoot was much more significant in bread (R 2=0.341***) than in durum wheat (R 2=0.135*). Like shoot P concentrations, also severity of visible leaf symptoms of P deficiency on older leaves, including leaf chlorosis and necrosis, did not correlate with P efficiency. In most cases, genotypes showing higher P efficiency had higher absolute shoot dry weight under P deficient conditions. Under P deficient conditions, the absolute shoot dry weight very significantly correlated with shoot P content (R 2=0.665***), but the correlation between the absolute shoot dry weight and shoot P concentration tended to be negative. There was also variation in native seed P reserve of the genotypes, but this variation had no influence on the P efficiency. The results indicate that the total amount of P per shoot and shoot dry matter production at low P supply are most reliable parameters in ranking genotypes for P efficiency at early growth stage. In wheat germplasm tested in the present study, several wheat genotypes are available showing both very high P efficiency and very high shoot content and concentration of P suggesting that P acquisition ability should be most important mechanism for high P efficiency in such genotypes. On the other hand, there are also genotypes in the germplasm having more or less same P concentration or P content in shoot but differing substantially in P efficiency, indicating importance of P utilization at cellular level in P efficiency. All these results suggest that P efficiency mechanisms can be different from one genotype to other within a given plant species.  相似文献   

18.
Richardson  A.E.  Hadobas  P.A.  Hayes  J.E.  O'Hara  C.P.  Simpson  R.J. 《Plant and Soil》2001,229(1):47-56
A range of pasture grass (Danthonia richardsonii and Phalaris aquatica) and legume (Medicago polymorpha, M. sativa, Trifolium repens and T. subterraneum) species showed limited capacity to obtain phosphorus (P) from inositol hexaphosphate (IHP), when grown in either sterile agar (pH 5.0 or 5.5) or sand-vermiculite media (pH 5.0). The total P content of shoots from IHP-supplied plants grown in agar was between 20% and 34% of that for seedlings supplied with an equivalent amount of P as inorganic phosphate (Pi), while in sand-vermiculite, the total P content of IHP-grown plants was between 5 and 10% of control plants. The poor ability of plants to utilize P from IHP resulted in significantly lower tissue P concentrations and, in general, reduced plant dry weight accumulation. In contrast, the P nutrition of plants supplied with IHP was significantly improved by inoculating media with either a cultured population of total soil micro-organisms or with a specific isolate of Pseudomonas sp., selected for its ability to release phosphate from IHP (strain CCAR59; Richardson and Hadobas, 1997 Can. J. Micro. 43, 509-516). In agar and sand-vermiculite media, respectively, the P content of IHP-grown plants increased with inoculation by up to 3.9- and 6.8-fold, such that the dry weight and P content of the plant material were equivalent to those observed for control plants supplied with Pi. However, the response to inoculation was dependent on the growth medium and the source of micro-organisms used. In sand-vermiculite, the cultured population of soil micro-organisms was effective when IHP was supplied at an equivalent level of Pi required for maximum plant growth. By comparison, inoculation of plants with the Pseudomonas strain was only effective at very high levels of IHP supply (×36), whereas in agar a response to inoculation occurred at all levels of IHP. The ability of pasture plants to acquire P from phytate was, therefore, influenced by the availability of IHP substrate, which was further affected by the presence of soil micro-organisms. Our results show that in addition to having an effect on the sorption characteristics of the growth media, soil micro-organisms also provided a source of phytase for the dephosphorylation of phytate for subsequent utilization of Pi by plants.  相似文献   

19.
低磷石灰性土壤施磷和小麦秸秆后土壤微生物量磷的变化   总被引:4,自引:0,他引:4  
通过室内培养试验,向低磷的石灰性土壤加入磷(0、25、50、100 mg P·kg-1,KH2PO4)和小麦秸秆(5 g C·kg-1),25 ℃下培养90 d,研究在施肥和秸秆还田条件下土壤微生物量磷及微生物含磷量的变化特点,及其与土壤有效磷之间的关系.结果表明:土壤微生物量磷、微生物含磷量随加入无机磷量的提高而增加,最高分别为71.37和105.34 mg·kg-1;除非加入足够的无机磷(如100 mg·kg-1),否则同时加入秸秆会降低土壤微生物量磷和微生物含磷量,这种效果在培养初期更加明显.土壤微生物量磷和微生物含磷量与土壤有效磷之间存在显著的正相关关系(相关系数R2分别为0.26和0.40,n=49).加入的无机磷可迅速转化为微生物量磷,表观贡献率最高可达71%,秸秆的加入可使表观贡献率进一步提高.  相似文献   

20.
用N~(15)示踪方法研究氨基酸的肥效作用   总被引:15,自引:1,他引:14  
以N15标记的氨基酸为试验材料,证明外源氨基酸分子可以被稻苗直接吸收,并进一步证明氨基酸施肥后稻苗植株健壮,干重增加,是氨基酸分子进入植物体内的结果,这与我们以往所作的氨基酸植物肥效试验结果完全吻合。  相似文献   

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